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Superyacht Adastra

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The Muilti-Award Winning Adastra is for Sale. Read more .....

Adastra Trimaran - "On Board with Anto Marden"

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superyacht adastra by john shuttleworth yacht designs

‘adastra’ by john shuttleworth yacht designs

 all images courtesy orion shuttleworth

‘adastra’ is a 42.5m power trimaran which was conceived for a couple (anto and elaine marden) for long range cruising. the yacht uses a trimaran shape that allows it to have multiple hulls. this is the second largest of its kind and can be controlled from a distance with an iPad. the superyacht’s aerodynamics and hydrodynamics were carefully considered by john shuttleworth yacht designs who have drafted a streamlined exterior body whose three hulls are slender in form. their shape ensures smooth and faster travel, allowing the vessel to move comfortably over water at hi-speeds, as is evidenced by its performance–fuel consumption at 10.5 knots is as low as 17 litres per hour when carrying 10% fuel and water; at cruising load (20 tonnes fuel and water) she uses only 25 litres per hour so that on delivery trips;her range is 10,000 miles starting with 30,000 litres of fuel; at 17 knots she has a 4,000 mile range.

an intense structural analysis of all of the major components of ‘adastra’ were taken to achieve the lightest weight possible required  to establish its low-fuel consumption. structurally this has been realized through a deck and superstructure made from carbon fibre, with a nomex honey comb core. the hull is a sandwich composition of glass and kevlar foam, while the interior is oak framework with cabinetry completed by honeycomb panels. in addition, all aspects of the boat have been custom built accordingly to further reduce the overall volume as seen for example in the carbon fibre hatches. the luxury boat’s surface is a composition of seamless, unbroken surfaces, this outer skin forming part of the framework that absorbs torsional loads.

a 16m long beam results in an expansive main deck offering panoramic views with a lounge area, dining table and navigation station. a forward facing door through the saloon window allows for easy access to the sun bed located on the foredeck. the afterdeck has additional seating as well as a bar, and space for a 4.9 metre tender with a garage directly below which can house a 3.1 metre tender, and whose door has been designed to fold out and function as a large diving platform.

the deck is constructed with carbon fiber with a nomex honeycomb core and the huss is a kevlar/glass combination. the interior is a beautiful lightweight oak design mixed with honeycomb panels. all of this keeps the weight down so the yacht can travel faster and longer. the yacht launched in april 2012.

side viewimage courtesy of orion shuttleworth

the exterior skin forms a structure that absorbs torsional loadsimage courtesy of orion shuttleworth

rear viewimage courtesy of orion shuttleworth

specifications:

LOA: 42.5 m beam: 16 m hull draft: 1.12 m (1.6m to tip of rudder) main engine: 1x caterpillar c18 -1150 hp @ 2300 rpm outrigger engines: 2x yanmar 110hp @ 3200 rpm generators: 2 x 36 kw custom in the outriggers linked to 110 hp yanmar engines, and 1x 26 kw northern lights in main engine room owner and guest capacity: 9 crew: 5-6 tenders: 4.9m stored on the aft deck and a 3.1m stored in the garage freshwater capacity: 2x 800 gph fresh water makers – 2,700 litres water displacement light: fully equipped and full stores and crew, no fuel and no water – 52 tonnes displacement cruising max: (normal operational load) 15,000 litres fuel – 67.6 tonnes fuel capacity max: 30,000 litres fuel (only for occasional long ocean passages) speed max: 23.2 knots fuel consumption at 10.5 knots measured – 25 litres/hour with 20 tonnes fuel and water; measured 17 litres/hr with 3 tonnes fuel and water; range at 10.5 knots 10,000 miles fuel consumption at 13 knots measured – 60 litres/hour with 20 tonnes fuel and watermeasured 40 litres/hr with 3 tonnes fuel and water fuel consumption at 17 knots measured – 130 litres/hour with 20 tonnes fuel and water; measured 100 litres/hr with 3 tonnes fuel and water;range at 17 knots 4,000 miles. exterior styling: john shuttleworth yacht designs ltd. and orion shuttleworth design ltd. naval architecture: john shuttleworth yacht designs ltd. structural design: john shuttleworth yacht designs ltd. & applied structural analysis ltd. interior design: jepsen designs, hong kong builder: mcconaghy boats, zhuhai, china

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The Trimaran Adastra Superyacht by John Shuttleworth [17 pics]

by twistedsifter

The Adastra is the result of more than five years of design and planning. The stunning 42.5 meter (139.4 ft) trimaran is currently being built in China for Hong Kong Clients, Anto and Elaine Marden. Designed and engineered by the world-renowned John Shuttleworth Yacht Designs, the Adastra is a beautiful machine and I can’t wait to see the finished product.

THE ADASTRA BY JOHN SHUTTLEWORTH YACHT DESIGNS

  “Adastra” is the result of more than 5 years of design and discussion with the owners, to build a yacht that meets the needs of a very experienced ocean voyaging couple and their family, and to provide the level of comfort and style that would be expected in a yacht of this class and size. No effort has been spared in the challenge to produce a beautiful yacht that will have low fuel consumption and yet provide excellent sea keeping qualities and luxurious accommodation.

“Adastra” takes the power trimaran concept further than has ever been attempted before, previous vessels like “Earthrace” and “Cable and Wireless” were stripped out record breaking machines. The challenge of turning this concept into a viable luxury yacht has led us to further research and to develop new thinking on stability and comfort at sea for this type of craft. Extensive tank testing and radio controlled model tests in waves have been carried out to analyze stability and performance. Outrigger height has been optimized for ease of motion at sea, and a new outrigger shape has been developed to increase stability in waves.

John Shuttleworth Yacht Designs has undertaken a state of the art structural analysis of all the major components in the yacht in order to achieve the light weight required for very low fuel consumption. All this has resulted in the exceptional vessel that is nearing completion in China.

A trimaran is a multihulled boat consisting of a main hull (vaka) and two smaller outrigger hulls (amas), attached to the main hull with lateral struts (akas). The design and names for the trimaran components are derived from the original proa constructed by native Pacific Islanders. [Source: Wikipedia ]

  Adastra’s 16 metre beam creates a spacious saloon area on the main deck which offers superb views through a panoramic window and accommodates a lounge area, dining table, and navigation station. A forward facing door through the saloon window gives easy access to a large sunbed on the foredeck. The aft deck has a sofa and bar area to port and a dining area to starboard, further aft of this there is space for a 4.9 metre tender and directly below is a garage which can store a 3.1 metre tender.

The garage door has been designed to fold out and create a large dive platform. Extra space has been created below deck by slightly flaring the central hull just above the waterline. This area has been split into two sections with a full-width master cabin located aft with access from the deck saloon, and two further guest cabins, accommodation for the crew, and the galley located forward of the engine compartment. Adastra offers comfortable accommodation for nine guests and up to six crew members. The main helm station, which has seating for two, is positioned in a raised pilot house situated between the aft deck and the saloon area and forms part of the cross beam structure.

THE ADASTRA Continued…

  The Superstructure is carbon fibre with Nomex honeycomb core, the hull is Glass/Kevlar foam sandwich and the interior is light weight oak cabinetry using honeycomb panels. To help reduce weight, virtually every aspect of the boat is custom built. This includes carbon fibre hatches, portlights, ladders and even hinges, which are all built specifically for the vessel.

A SiMON_ integrated ships monitoring system monitors fuel, security, pump sensors, electrical, lights, etc. The vessel has a fully automated fuel management system which includes an Alfa Laval system for cleaning the fuel.

The anchoring system is unique with 3 anchors all driven by carbon fibre drum winches run by hydraulics. The primary anchor is a custom 130kg Bruce style anchor that deploys out of the starboard wing. The second anchor is 80kg and deploys out of the bow with a carbon fibre arm. The third anchor is 60kg which deploys out of the port wing and will be used as a stern anchor.

  LOA – 42.5 m Beam – 16 m Hull Draft – 1.12 m (1.6m to tip of rudder) Main engine – 1x Caterpillar C18 -1150 hp @ 2300 rpm Outrigger engines – 2x Yanmar 110hp @ 3200 rpm Generators – 2 x 36 kw custom in the outriggers linked to 110 Hp Yanmar engines, and 1x 26 kw Northern lights in Main engine room Owner and Guests – 9 Crew – 5-6 Tenders – 4.9m stored on the aft deck and a 3.1m stored in the garage Freshwater Capacity – 2x 800 gph fresh water makers – 2700 litres water Displacement light – Fully equipped and full stores and crew, no fuel and no water – 49 tonnes Displacement cruising max – (normal operational load) 15000 litres fuel – 64.8 tonnes Displacement ocean passage max – (only for occasional long ocean passages) 32000 litres fuel – 77 tonnes Speed max – 22.5 knots Range at 17 knots – 4000 miles Fuel consumption at 13 knots – 90 litres per hour. Fuel consumption at 17 knots – 120 litres per hour Exterior Styling – John Shuttleworth Yacht Designs Ltd. Naval Architecture – John Shuttleworth Yacht Designs Ltd. Structural Design – John Shuttleworth Yacht Designs Ltd. & Applied Structural Analysis Ltd. Interior Design – Jepsen Designs, Hong Kong Builder – McConaghy Boats, Zhuhai, China

JOHN SHUTTLEWORTH YACHT DESIGNS

  John Shuttleworth Yacht Design, Ltd., is based in West Sussex, England and has gained a reputation for designing fast, strong, and safe boats. Their designs are consistent race winners, and several have broken and still hold some of the toughest long-distance ocean sailing records. Shuttleworth’s design team has developed the “Integrated Structure,” resulting in boats that are lighter, stiffer, and stronger than any previous multihull designs. They are now using this technology to design power multihulls, and sail-assisted power boats, where significant savings in fuel consumption and increased range can be achieved.

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Categories: DESIGN Tags: · boats , opulence

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The Trimaran Adastra Superyacht by John Shuttleworth [17 pics]

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Motor yacht Adastra Feature – by John Shuttleworth Yacht Designs

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Written by Mike Smith

Motor yacht Adastra is a very interesting superyacht which is designed for ultra efficient long range cruising. The striking 42.5m Trimaran Adastra was designed by John Shuttleworth Yacht Designs and is currently being built in China for a Hong Kong yacht owners Anto and Elaine Marden.

Superyacht Adastra profile in silver a 42.5m Power Trimaran - Designed by John Shuttleworth Yacht Design

Superyacht Adastra profile in silver a 42.5m Power Trimaran - Designed by John Shuttleworth Yacht Design

Yacht “Adastra” is the result of more than 5 years of design and discussion with the owners, to build a yacht that meets the needs of a very experienced ocean voyaging couple and their family, and to provide the level of comfort and style that would be expected in a yacht of this class and size. No effort has been spared in the challenge to produce a beautiful yacht that will have low fuel consumption and yet provide excellent sea keeping qualities and luxurious accommodation.

Superyacht Adastra a 42.5m Power Trimaran - Designed by John Shuttleworth Yacht Design

Superyacht Adastra a 42.5m Power Trimaran - Designed by John Shuttleworth Yacht Design

Yacht “Adastra” takes the power trimaran concept further than has ever been attempted before, previous vessels like “Earthrace” and “Cable and Wireless” were stripped out record breaking machines. The challenge of turning this concept into a viable luxury yacht has led us to further research and to develop new thinking on stability and comfort at sea for this type of craft.

Motor yacht Adastra aft in silver a Power Trimaran - as Designed by John Shuttleworth Yacht Design

Motor yacht Adastra aft in silver a Power Trimaran - as Designed by John Shuttleworth Yacht Design

Extensive tank testing and radio controlled model tests in waves have been carried out to analyze stability and performance. Outrigger height has been optimized for ease of motion at sea, and a new outrigger shape has been developed to increase stability in waves. We have undertaken a state of the art structural analysis of all the major components in the yacht in order to achieve the light weight required for very low fuel consumption. All this has resulted in the exceptional vessel that is nearing completion in China.

Superyacht Adastra aft a Power Trimaran - as Designed by John Shuttleworth Yacht Design

Superyacht Adastra aft a Power Trimaran - as Designed by John Shuttleworth Yacht Design

Adastra’s 16 metre beam creates a spacious saloon area on the main deck which offers superb views through a panoramic window and accommodates a lounge area, dining table, and navigation station. A forward facing door through the saloon window gives easy access to a large sunbed on the foredeck. The aft deck has a sofa and bar area to port and a dining area to starboard, further aft of this there is space for a 4.9 metre tender and directly below is a garage which can store a 3.1 metre tender. The garage door has been designed to fold out and create a large dive platform.

Superyacht Adastra cockpit in silver a Power Trimaran - as Designed by John Shuttleworth Yacht Design

Superyacht Adastra cockpit in silver a Power Trimaran - as Designed by John Shuttleworth Yacht Design

Extra space has been created below deck by slightly flaring the central hull just above the waterline. This area has been split into two sections with a full-width master cabin located aft with access from the deck saloon, and two further guest cabins, accommodation for the crew, and the galley located forward of the engine compartment. Adastra offers comfortable accommodation for nine guests and up to six crew members. The main helm station, which has seating for two, is positioned in a raised pilot house situated between the aft deck and the saloon area and forms part of the cross beam structure.

Superyacht Adastra cockpit a 42.5m Power Trimaran - Designed by John Shuttleworth Yacht Design

Superyacht Adastra cockpit a 42.5m Power Trimaran - Designed by John Shuttleworth Yacht Design

The Superstructure is carbon fibre with Nomex honeycomb core, the hull is Glass/Kevlar foam sandwich and the interior is light weight oak cabinetry using honeycomb panels. To help reduce weight, virtually every aspect of the boat is custom built. This includes carbon fibre hatches, portlights, ladders and even hinges, which are all built specifically for the vessel.

Superyacht Adastra a 42.5m Power Trimaran - Interior Saloon and dining © Jepsen Designs Hong Kong

Superyacht Adastra a 42.5m Power Trimaran - Interior Saloon and dining © Jepsen Designs Hong Kong

A SiMON_ integrated ships monitoring system monitors fuel, security, pump sensors, electrical, lights, etc. The vessel has a fully automated fuel management system which includes an Alfa Laval system for cleaning the fuel.

Superyacht Adastra under construction in McConaghy yard Zhuhai China

Superyacht Adastra under construction in McConaghy yard Zhuhai China

The anchoring system is unique with 3 anchors all driven by carbon fibre drum winches run by hydraulics. The primary anchor is a custom 130kg Bruce style anchor that deploys out of the starboard wing. The second anchor is 80kg and deploys out of the bow with a carbon fibre arm. The third anchor is 60kg which deploys out of the port wing and will be used as a stern anchor.

Adastra profile a 42.5m Power Trimaran - Designed by John Shuttleworth Yacht Design

Adastra profile a 42.5m Power Trimaran - Designed by John Shuttleworth Yacht Design

Specification of Motor yacht Adastra:

LOA – 42.5 m Beam – 16 m Hull Draft – 1.12 m (1.6m to tip of rudder) Main engine – 1x Caterpillar C18 -1150 hp @ 2300 rpm Outrigger engines – 2x Yanmar 110hp @ 3200 rpm Generators – 2 x 36 kw custom in the outriggers linked to 110 Hp Yanmar engines, and 1x 26 kw Northern lights in Main engine room Owner and Guests – 9 Crew – 5-6 Tenders – 4.9m stored on the aft deck and a 3.1m stored in the garage Freshwater Capacity – 2x 800 gph fresh water makers – 2700 litres water Displacement light – Fully equipped and full stores and crew, no fuel and no water – 49 tonnes Displacement cruising max – (normal operational load) 15000 litres fuel – 64.8 tonnes Displacement ocean passage max – (only for occasional long ocean passages) 32000 litres fuel – 77 tonnes Speed max – 22.5 knots Range at 17 knots – 4000 miles Fuel consumption at 13 knots – 90 litres per hour. Fuel consumption at 17 knots – 120 litres per hour Exterior Styling – John Shuttleworth Yacht Designs Ltd. Naval Architecture – John Shuttleworth Yacht Designs Ltd. Structural Design – John Shuttleworth Yacht Designs Ltd. & Applied Structural Analysis Ltd. Interior Design – Jepsen Designs, Hong Kong Builder – McConaghy Boats, Zhuhai, China

Please contact John Shuttleworth Yacht Designs Ltd for more:

Springhead Clay Lane Cootham West Sussex RH20 4HL ENGLAND

Tel +44 (0) 7880 796 862

Email John and Orion Shuttleworth: [email protected]

Please contact CharterWorld - the luxury yacht charter specialist - for more on superyacht news item "Motor yacht Adastra Feature - by John Shuttleworth Yacht Designs ".

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Motor Yacht

Adastra is a custom motor yacht launched in 2012 by McConaghy Boats in Zhuhai, China.

50 years delivering complex composite projects to the world's most demanding customers. Our Mission is unequivocal: "Create the best composite shop on the planet and bring the overwhelming advantages of composites to a wide-range of applications with cost effectiveness, high quality, precision, and innovation in materials, design, prototyping, production runs, and custom work."

Adastra measures 42.50 feet in length, with a max draft of 1.59 feet and a beam of 16.00 feet.

Adastra has an aluminium hull with an aluminium superstructure.

Her interior design is by Jepsen Designs.

Adastra also features naval architecture by John Shuttleworth Yacht Designs Ltd..

Performance and Capabilities

Adastra has a top speed of 22.00 knots and a cruising speed of 17.00 knots. She is powered by a triple screw propulsion system.

Adastra has a fuel capacity of 32,000 litres, and a water capacity of 2,700 litres.

Accommodation

Adastra accommodates up to 9 guests in 4 cabins. She also houses room for up to 6 crew members.

  • Yacht Builder McConaghy Boats View profile
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ISDC 2024

Burevestnik: a Russian air-launched anti-satellite system

By bart hendrickx monday, april 27, 2020.

In September 2018, an aircraft photographer noticed something interesting while observing activity at the Gromov Flight Research Institute in Zhukovsky near Moscow, sometimes called the “Russian Edwards Air Force Base.” What caught his attention was a MiG-31BM fighter jet with a large black missile suspended under its belly. While this specific aircraft had been seen before, the rocket was new. The pictures he posted on the Internet baffled observers: it seemed to be too big to be an air-to-air or an air-to-surface missile. It did appear to be the right size for an anti-satellite weapon.

The pictures brought back memories of a Soviet-era ASAT project called Kontakt, which comprised the MiG-31D aircraft and a missile of the MKB Fakel design bureau outfitted with a kinetic kill vehicle. Kontakt was the Soviet response to the American Air-Launched Miniature Vehicle or ASM-135A, which destroyed a US satellite in September 1985 after having been dropped from an F-15 fighter jet. Test flights of the MiG-31D with the missile were reportedly conducted in the late 1980s and early 1990s, but without targeting satellites.

So it looked like the new project could well be a reincarnation of Kontakt, as was speculated in many articles in the weeks following the release of the pictures. Backing up that idea were at least two statements made by Russian officials. In August 2009, the commander-in-chief of the Russian Air Force, Aleksandr Zelin, had declared that the MiG-31 was being upgraded to perform the same space defense tasks as in the Soviet days. About eight years later, in February 2017, a squadron commander of the Russian Aerospace Forces, Yevgeny Polyakov, was quoted as saying by the Russian Ministry of Defense’s Zvezda TV channel that a new missile was being developed for the MiG-31BM “capable of destroying targets in near-space.”

Analysis of publicly accessible online Russian sources now leaves little doubt that the MiG-31BM and the rocket are part of a broader ASAT project called Burevestnik (“Stormy Petrel”). Most likely, the rocket will not carry a kinetic kill vehicle like its Soviet-era predecessor, but will serve as a launch vehicle for small interceptor satellites that can approach and disable enemy satellites.

Burevestnik, a popular name in Russian culture, was also the name given by popular vote to a nuclear-powered cruise missile (9M730) not long after it was unveiled by President Vladimir Putin during his State of the Union address in March 2018. This has no connection whatsoever to the ASAT project.

The Burevestnik satellites

Burevestnik has never been discussed in Russia’s state-controlled media or even in specialized Russian space publications, but details about the project have slowly leaked out in recent years, mainly via openly available tender documentation and contracts on Russia’s government procurement website. These showed that the project began on September 1, 2011, with a government contract awarded to the Design Bureau of Machine Building (NPK KBM), a weapon manufacturer based in Kolomna (about 100 kilometers southeast of Moscow) that seems to be the overall coordinator of the project. At the end of that same month, NPK KBM signed a contract with a Moscow-based organization called the Central Scientific Research Institute of Chemistry and Mechanics (TsNIIKhM or CNIIHM), which in turn subcontracted work on satellites called Burevestnik-M.

Another phase in the project began on December 1, 2015, when NPK KBM received another government contract under which CNIIHM subsequently performed work on satellites named Burevestnik-KA-M. The difference between Burevestnik-M and Burevestnik-KA-M is not known, but a PowerPoint presentation (in Russian) of a Russian solar panel and battery manufacturer (PAO Saturn) that somehow ended up online in May last year clearly identified them as two different satellites. The hush-hush nature of the project as well as the background of some of the contractors involved strongly pointed to an ASAT role, as was discussed in an earlier article here (see “Russia’s secret satellite builder” , The Space Review, May 9, 2019).

The Burevestnik rocket

What has emerged from further research in recent weeks is that the scope of the Burevestnik project is much broader than earlier believed. First, it turned out that another component of the project is a solid-fuel rocket. A rocket by the name Burevestnik first showed up in the annual report of the Russian Academy of Sciences for 2015, where it was said to be one of several rockets for which new types of solid propellant were being developed. No further details on it emerged in the following years.

Analysis of procurement documents now shows that the rocket has the code name “293” and is built by NPO Iskra, a manufacturer of solid-fuel rocket motors in Perm (roughly 1,400 kilometers east of Moscow). Contracts for “293” (some of which also mention the name Burevestnik) refer back to the same September 1, 2011, contract awarded to NPK KBM that is also seen in documents on the Burevestnik satellites, leaving no doubt that the two are part of the same project. NPO Perm was assigned to “293” by NPK KBM on the very same day. Some of the contracts for “293” are based on an earlier government contract dated August 7, 2009, suggesting the roots of the project may go back even further.

Available contracts for the “293” rocket going back to 2013 regularly mention parts called 14D812, 14D813, and 14S47, which presumably are the rocket’s individual stages. 14S47 fits in a series of indexes for upper stages of space launch vehicles, strongly suggesting it performs the same role. Procurement documents placed online by NPO Iskra in recent months also show that the company began working in December 2018 on another rocket called “328”. The parts ordered for this indicate that it is a modified version of the “293” rocket, possibly using the new solid propellants mentioned in the 2015 Academy of Sciences report. Two companies linked to that work in the report are also seen in one of the contracts for the “328” rocket.

The MiG carrier aircraft

A search for the “293” rocket on Russia’s government procurement website subsequently revealed that it is an air-launched rocket to be carried aloft by a modified version of the MiG-31 aircraft. A contract (in Russian) signed by the Russian Aircraft Corporation MiG (RSK MiG) in August last year is for work “to determine the safety of operating Object 08 with Product 293 under the influence of naturally and artificially produced electromagnetic fields.” This work was to be completed in four months and would involve both a mock-up and “live” version of the rocket.

This is unmistakable evidence that “293”, the solid-fuel rocket built by NPO Iskra as part of Burevestnik, is designed to be carried by a MiG aircraft described as Object 08. This almost certainly is the MiG-31BM aircraft with number “81” that was seen carrying the mysterious black rocket in September 2018. One other RSK MiG contract (in Russian) that can be positively linked to Burevestnik refers to the aircraft more specifically as “Object 08/1”, a further indication that it is indeed MiG-31BM nr. 81.

The documentation links this work to a government contract awarded to NPK KBM for Burevestnik on December 1, 2015, and another one subsequently concluded between NPK KBM and RSK MiG on December 17, 2015. Therefore, it is in the same sequence of contracts that initiated work on the Burevestnik-KA-M satellites. However, RSK MiG’s involvement with Burevestnik began earlier than that. According to court documents (in Russian) published online late last year, NPK KBM and RSK MiG signed an initial contract for Burevestnik (described as “Burevestnik-MiG”) as early as January 23, 2012. This was presumably in the same chain of contracts that started work on the Burevestnik-M satellites and the “293” rocket back in 2011.

Burevestnik’s explosive payload

Other recently uncovered procurement documentation may provide conclusive evidence that the Burevestnik satellites are indeed ASAT interceptors. One contract (in Russian) for Burevestnik was signed in June 2017 between an organization called the Krasnoarmeysk Scientific Research Institute of Mechanization (KNIIM) and a company called OOO Expotekhvzryv. KNIIM is an institute in Krasnoarmeysk (a name derived from the Russian word for “Red Army”), which is situated about 60 kilometers northeast of Moscow. It is a leading manufacturer of ammunition and explosives, as can be seen in this profile of the institute.

Expotekhvzryv, based in Moscow, specializes in industrial safety control of “dangerous objects” (the word vzryv in the company’s name means “explosion”). Under the deal with KNIIM, it was to perform what was literally described as “industrial safety control of an experimental container for special products” and complete that work before the end of June 2017. According to the documentation, the work involved detonating the container to study the effects on its surroundings and on the container itself. The contract is clearly related to the Burevestnik-KA-M satellites because the documentation links the work to the December 2015 government contract that initiated that phase of the Burevestnik project and a subsequent one inked between CNIIHM and KNIIM on September 1, 2016.

The most logical interpretation of this information is that KNIIM developed some type of explosive charge for the Burevestnik satellites and that the tests conducted by Expotekhvzryv were needed to ensure that this material is safe for storage and transportation. While KNIIM seems to be the manufacturer of this payload, it should be noted that CNIIHM itself probably also has the necessary expertise in the field. Back in the 1960s and 1970s, a team at CNIIHM led by Kirill N. Shamshev devised two types of explosive charges that were carried by experimental interceptor satellites called IS (“Satellite Destroyer”). These were detonated when the satellites came in the vicinity of specially launched target satellites. According to its former website, CNIIHM has a “Center of Ammunition and Special Chemistry” and this may very well play a role in this work as well.

As is clear from several technical papers and patents, a number of Russian institutes (including CNIIHM) have also done research on non-destructive technology for co-orbital ASATs, mostly involving the use of finely dispersed particles that could presumably disable satellite sensors or cause other damage. Similar technology has also been studied to conceal satellites from potential enemy ASAT interceptors under a program known as Vual (see “Self-defense in space: protecting Russian spacecraft from ASAT attacks” , The Space Review, July 16, 2018). However, there are is no convincing proof that any of this work is connected to Burevestnik.

Possible on-orbit tests

It is perfectly possible that Burevestnik satellites have already been tested in orbit. Between 2013 and 2019, Russia launched six mysterious satellites from the Plesetsk Cosmodrome that showed similar in-orbit behavior and transmitted on identical radio frequencies, indicating they share a common platform. They were called Kosmos-2491, 2499, 2504, 2521, 2535, 2536, and 2543. All were launched as co-passengers with other payloads, the first three on the Rockot launch vehicle (now retired) and the later ones on the Soyuz-2.1v, the lightest rocket in the Soyuz launch vehicle family (without the first-stage strap-on boosters and carrying NK-33 engines inherited from the Soviet-era N-1 moon rocket.) All except the first one performed rendezvous and proximity operations with other objects launched on the same mission, either the rocket’s upper stage or other satellites.

Some of these satellites are likely part of a project called Nivelir, started in the same month as Burevestnik (September 2011) and also managed by CNIIHM. The Nivelir satellites are believed to be intended for on-orbit inspection of other satellites and are known to share at least two design features with the Burevestnik satellites, namely 4LI-20 lithium-ion batteries of PAO Saturn and MSKV84 fuel tanks of NIIMash, which likely feed K50-10.6 hydrazine monopropellant thrusters of OKB Fakel on both types of satellites. Because they seem to use a common bus, it is hard to tell which of the satellites belong to which program.

Two of the satellites (Kosmos-2521 and 2543) were deployed from larger “parent satellites” built by NPO Lavochkin (Kosmos-2519 and 2542). Having the military index 14F150, these are also part of the Nivelir project and themselves seem to be used for space situational awareness. Kosmos-2542 raised concern in US Defense Department circles earlier this year when it made several relatively close passes to the American reconnaissance satellite USA 245 in an apparent attempt to take detailed pictures of the satellite.

While most of the six satellites seem to have performed missions comparable to those of American and Chinese inspection satellites, two experiments conducted during these missions seem to have nothing to do with inspection. In October 2017, Kosmos-2521 itself deployed a small subsatellite (Kosmos-2523) that immediately lowered its perigee by 100 kilometers and has remained inert ever since without ever coming close to another satellite. Speaking to Time magazine last February, Gen. John Raymond, the commander of the U.S. Space Force, likened these satellites to Russian nesting dolls and described the subsatellite as a “high-speed projectile.” Possibly, Kosmos-2523 was another top-secret satellite of CNIIHM identified as Napryazheniye, the purpose of which is unclear.

Another puzzling event occurred last year during the mission of Kosmos-2535 and 2536, launched in July 2019 along with two other satellites (Kosmos-2537 and 2538) that are probably used for calibration of ground-based radars. About two weeks after launch, Kosmos-2535 and 2536 began a lengthy series of close encounters that continued until earlier this year. The first of those, in early August, was actually reported by the Russian Ministry of Defense, which described the two objects as an “inspection satellite” and a “registering satellite.” They were reportedly on a mission to study the effects of “artificial and natural space factors” on satellites and also to test technology to protect satellites and service them in orbit. More specifically, the equipment on the inspector satellite was designed to study the effects on the registering satellite of “space debris, electron and proton radiation of the Earth’s outer natural radiation belt, protons and heavy charged particles, solar and galactic cosmic rays.”

Then, in mid-October, objects labeled as “Kosmos-2535 debris” started gradually appearing in the catalog of space objects maintained by the United States Strategic Command. In all, 24 such objects were registered. The catalog does not disclose when exactly the satellite generated this debris, but orbital analysis has traced most of it back to a close encounter between Kosmos-2535 and 2536 in late September (which would mean the debris could have come from either satellite).

The debris wound up in widely scattered orbits with altitudes ranging from less than 400 to more than 1,000 kilometers, while the two satellites themselves have been circling the Earth in roughly circular orbits slightly over 600 kilometers above the Earth. This means it must have been created by some sort of energetic event. Both of the satellites did continue maneuvering afterwards, meaning that neither was rendered inoperable.

This could lead one to conclude that it was either a failed ASAT test or not an ASAT test at all. However, numerous other scenarios are possible as well, including one where the Russians elected to test an explosive charge without destroying the satellites in order to minimize the amount of debris and not attract undue attention to the mission. It could, for instance, have been ejected in a canister and detonated at a safe distance, with one or both of the satellites observing the event. It is also possible that one or both satellites carried protective material enabling them to survive the event and even sensors to detect possible impacts, like many of the target satellites used in the Soviet IS project. Such scenarios would still be in line with two of the mission objectives given in the official Russian statement on the mission, namely studying the effects of space debris and testing technology to protect satellites in orbit.

Future outlook

If Burevestnik has already been tested in orbit, it was launched as a co-passenger on a conventional ground-based rocket. However, this is likely to change in the future. As is clear from the evidence presented above, the satellites, the “293” rocket, and the MiG-31BM aircraft are part of one and the same project. Most likely, the air-launched “293” rocket will serve as a launch vehicle for future Burevestnik satellites. In Russian terminology, all these components would be described as belonging to the same “space complex,” a word used for the combination of the satellites, the launch vehicle, and all the ground-based infrastructure needed to support them. In some official documents, Burevestnik has been more specifically called “a space security complex,” a fitting term for an ASAT project (it has also been applied in one document to a project called Kalina, a ground-based laser system designed to blind or dazzle optical instruments of satellites). The index for the Burevestnik space complex is 14K168.

The idea that “293” is a satellite launch vehicle is corroborated by the fact that the index for one of its stages (14S47) is similar to that of some upper stages of space launch vehicles. Moreover, plans to use the MiG-31 as a satellite launch platform are not new. They were first put forward by the MiG design bureau in the late 1990s and culminated in a 2005 Russian/Kazakh proposal called Ishim to equip the aircraft with a three-stage solid-fuel rocket capable of placing 160-kilogram satellites into 300-kilometer orbits with a 46-degree inclination. With a maximum speed of Mach 2.8 and a service ceiling of more than 20 kilometers, the MiG-31 is an ideal platform for such missions.

With the Burevestnik satellites probably weighing around 100 kilograms or less, a rocket the size of “293” should be capable of placing them into orbit from a MiG-31, although potential targets would probably be limited to satellites in relatively low orbits, primarily reconnaissance satellites. The use of an air-launched rocket instead of a ground-based launch vehicle offers several advantages for ASAT missions. First, not being tied to a specific launch site, air-launched rockets can use a much broader variety of launch azimuths and, consequently, send satellites into a wide range of orbital inclinations. Second, they can be prepared for launch at short notice (certainly solid-fuel rockets like “293”) and away from the prying eyes of reconnaissance satellites, giving the enemy little warning time. By contrast, the Soyuz-2.1v, the lightest launch vehicle in Russia’s current rocket fleet, is a liquid-fuel launch vehicle that needs two days of launch preparations on a single available pad. In addition to that, the Soyuz-2.1v (with a payload capacity of 2.8 tons to low Earth orbit) would be far oversized for launching a single Burevestnik satellite. Both the “293” rocket and its apparent successor (“328”) could potentially also be used to launch other small military satellites on quick-response missions, a capability that the US military has been seeking for a long time without much success.

All this does raise the question why dedicated infrastructure for Burevestnik is being built at the Plesetsk Cosmodrome. This infrastructure is identified in procurement documents as “Object 7511/4,” As can be inferred from recent procurement documents, a new contract for the construction work was awarded by the Ministry of Defense just last December, clearly showing it is not yet finished. One possible explanation is that Burevestnik flights using the MiG-31BM will be staged from Plesetsk’s airfield (known as “Pero”), benefiting from the cosmodrome’s infrastructure for storage and preparation of rockets and satellites. Another, much more remote possibility is that “293” has a two-stage air-launched version (consisting of the 14D813 and 14S47 stages) that can take off from a multitude of air bases and a three-stage ground-launched version (consisting of the 14D812, 14D813, and 14S47 stages) that will be based at Plesetsk. It is hard to tell whether the rocket seen in the photos taken at Zhukovsky has two or three stages. Similarly, America’s Pegasus air-launched rocket had a ground-based “sister rocket” (Taurus/Minotaur-C), which essentially consisted of a Pegasus mounted on top of the first stage of a Peacekeeper ICBM. However, there are no clear signs that any launch infrastructure for such a rocket is being built at Plesetsk.

Other ground-based infrastructure for Burevestnik, named “Object 7511/3,” is under construction near Pervomayskoye in the Tambov province, about 450 kilometers southeast of Moscow. This is the location of a military base (nr. 14272) primarily used for the long-term storage of rockets awaiting shipment to the launch site.

The control center for Burevestnik missions is likely situated right next to the headquarters of Russia’s space surveillance network in Noginsk-9 (also known as Dubrovo), a small town about 60 kilometers east of Moscow. Noginsk-9 was also home to the control center for the Soviet-era co-orbital ASAT missions. A facility in Noginsk-9 known as “Object 3006M” has been linked in building contracts to both Burevestnik and Nivelir. It will probably be fed with targeting data by a network of space surveillance radars and optical telescopes stationed across Russia. Autonomous satellite navigation equipment known to have been developed for Burevestnik satellites by MKB Kompas should also help guide the satellites to their targets relatively quickly. Even with 1970s technology, the Soviet-era IS interceptor satellites demonstrated the ability to reach their targets on the first orbit after launch.

All the construction work is a sign that Burevestnik is not merely seen as an experimental system, but one that Russia intends to place on operational stand-by. When that will occur is hard to tell. The Burevestnik project has been underway for almost a decade but, like many other Russian space projects, was probably hit hard by the Western-imposed sanctions that complicated the delivery of foreign-built electronic components for the Russian space industry. Despite Russia’s policy of “import substitution,” even highly classified Russian military satellites remain very reliant on Western electronics. This is illustrated by one 2016 contract for the delivery of electronic components for Burevestnik satellites, which listed a total of 457 foreign electronic components versus just 45 Russian-built components.

Still, it does look like one or more Burevestnik satellites have already been tested in space, with more such test flights (using the Soyuz-2.1v) possibly yet to come. As for the “293” rocket, the one seen in the September 2018 photos was presumably a mock-up, but one of the earlier quoted RKS MiG contracts signed in August 2019 strongly suggests that a “live” version is undergoing captive carry tests by now. A CNBC article published in September 2018 quoted “three sources with direct knowledge of a U.S. intelligence report” as saying that the MiG-31BM spotted shortly before was believed to be “a mock-up of an anti-satellite weapon that will be ready for warfare by 2022.”

Other Russian ASAT projects

As large in scope as Burevestnik appears to be, it is only one of several ASAT projects that Russia is currently working on. The most advanced of these is Nudol, a ground-launched direct-ascent ASAT missile built by OKB Novator that is believed to have made at least ten test flights from Plesetsk since 2014, without destroying targets in space. The latest of these took place on April 15, prompting an immediate response from the US Space Command’s Gen. John Raymond, who regards it as “further proof of Russia’s hypocritical advocacy of outer space arms control proposals designed to restrict the capabilities of the United States while clearly having no intention of halting their counterspace weapons programs.” Recently gathered evidence indicates that another, possibly more capable missile may be under development for Nudol at the Moscow-based MIT Corporation.

Other likely ASAT systems under development are ground-based and air-based systems to dazzle or blind satellite optical systems ( Kalina and Sokol-Eshelon ) and ground-based and space-based systems for electronic warfare (Tirada-2S and Ekipazh ). In November 2017, a Russian military official also disclosed the existence of a “mobile anti-satellite complex” called Rudolf, about which nothing is known. Another satellite under development at CNIIHM called Numizmat will probably carry a hard-to-detect ultrawide-band noise radar for proximity operations and may also have an ASAT-related role. An up-to-date overview of Russian ASAT systems is given in the latest edition of the Secure World Foundation’s annual report Global Counterspace Capabilities: An Open-Source Assessment .

The co-existence of several ASAT projects indicates they are designed to fulfill complementary roles, possibly targeting different types of satellites in different types of orbits. Similarly, in the 1980s the Soviet Union worked on a plethora of ASAT systems , each of which had its own well-defined tasks in various possible war scenarios. The collapse of the Soviet Union prevented any of those from reaching operational status, but by all indications Russia now once again has a sustained program to develop a broad range of counterspace capabilities, whatever the motives for that may be.

For more details on Burevestnik and a complete list of sources, see this thread on the NASA Spaceflight Forum , which is updated with new information as it becomes available.

Bart Hendrickx is a longtime observer of the Russian space program.

Note: we are temporarily moderating all comments submitted to deal with a surge in spam.

Humans to Mars

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For the first time Rosatom Fuel Division supplied fresh nuclear fuel to the world’s only floating nuclear cogeneration plant in the Arctic

The fuel was supplied to the northernmost town of Russia along the Northern Sea Route.

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The first in the history of the power plant refueling, that is, the replacement of spent nuclear fuel with fresh one, is planned to begin before 2024. The manufacturer of nuclear fuel for all Russian nuclear icebreakers, as well as the Akademik Lomonosov FNPP, is Machinery Manufacturing Plant, Joint-Stock Company (MSZ JSC), a company of Rosatom Fuel Company TVEL that is based in Elektrostal, Moscow Region.

The FNPP includes two KLT-40S reactors of the icebreaking type. Unlike convenient ground-based large reactors (that require partial replacement of fuel rods once every 12-18 months), in the case of these reactors, the refueling takes place once every few years and includes unloading of the entire reactor core and loading of fresh fuel into the reactor.

The cores of KLT-40 reactors of the Akademik Lomonosov floating power unit have a number of advantages compared to the reference ones: a cassette core was used for the first time in the history of the unit, which made it possible to increase the fuel energy resource to 3-3.5 years between refuelings, and also reduce the fuel component of the electricity cost by one and a half times. The FNPP operating experience formed the basis for the designs of reactors for nuclear icebreakers of the newest series 22220. Three such icebreakers have been launched by now.

For the first time the power units of the Akademik Lomonosov floating nuclear power plant were connected to the grid in December 2019, and put into commercial operation in May 2020. The supply of nuclear fuel from Elektrostal to Pevek and its loading into the second reactor is planned for 2024. The total power of the Akademik Lomonosov FNPP, supplied to the coastal grid of Pevek without thermal energy consumption on shore, is about 76 MW, being about 44 MW in the maximum thermal power supply mode. The FNPP generated 194 million kWh according to the results of 2023. The population of Pevek is just a little more than 4 thousand, while the FNPP has a potential for supplying electricity to a city with a population of up to 100 thousand people. After the FNPP commissioning two goals were achieved. These include first of all the replacement of the retiring capacities of the Bilibino NPP, which has been operating since 1974, as well as the Chaunskaya TPP, which has already been operating for more than 70 years. Secondly, energy is supplied to the main mining companies in western Chukotka in the Chaun-Bilibino energy hub a large ore and metal cluster, including gold mining companies and projects related to the development of the Baimsk ore zone. In September 2023, a 110 kilovolt power transmission line with a length of 490 kilometers was put into operation, connecting the towns of Pevek and Bilibino. The line increased the reliability of energy supply from the FNPP to both Bilibino consumers and mining companies, the largest of which is the Baimsky GOK. The comprehensive development of the Russian Arctic is a national strategic priority. To increase the NSR traffic is of paramount importance for accomplishment of the tasks set in the field of cargo shipping. This logistics corridor is being developed due regular freight voyages, construction of new nuclear-powered icebreakers and modernization of the relevant infrastructure. Rosatom companies are actively involved in this work. Rosatom Fuel Company TVEL (Rosatom Fuel Division) includes companies fabricating nuclear fuel, converting and enriching uranium, manufacturing gas centrifuges, conducting researches and producing designs. As the only nuclear fuel supplier to Russian NPPs, TVEL supplies fuel for a total of 75 power reactors in 15 countries, for research reactors in nine countries, as well as for propulsion reactors of the Russian nuclear fleet. Every sixth power reactor in the world runs on TVEL fuel. Rosatom Fuel Division is the world’s largest producer of enriched uranium and the leader on the global stable isotope market. The Fuel Division is actively developing new businesses in chemistry, metallurgy, energy storage technologies, 3D printing, digital products, and decommissioning of nuclear facilities. TVEL also includes Rosatom integrators for additive technologies and electricity storage systems. Rosenergoatom, Joint-Stock Company is part of Rosatom Electric Power Division and one of the largest companies in the industry acting as an operator of nuclear power plants. It includes, as its branches, 11 operating NPPs, including the FNPP, the Scientific and Technical Center for Emergency Operations at NPPs, Design and Engineering as well as Technological companies. In total, 37 power units with a total installed capacity of over 29.5 GW are in operation at 11 nuclear power plants in Russia. Machinery Manufacturing Plant, Joint-Stock Company (MSZ JSC, Elektrostal) is one of the world’s largest manufacturers of fuel for nuclear power plants. The company produces fuel assemblies for VVER-440, VVER-1000, RBMK-1000, BN-600,800, VK-50, EGP-6; powders and fuel pellets intended for supply to foreign customers. It also produces nuclear fuel for research reactors. The plant belongs to the TVEL Fuel Company of Rosatom.

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Rosatom obtained a license for the first land-based SMR in Russia

On April 21, Rosenergoatom obtained a license issued by Rostekhnadzor to construct the Yakutsk land-based SMR in the Ust-Yansky District of the Republic of Sakha (Yakutia).

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ROSATOM and FEDC agree to cooperate in the construction of Russia's first onshore SNPP

ROSATOM and FEDC have signed a cooperation agreement to build Russia's first onshore SNPP in Yakutia.

john shuttleworth yacht designs

Rosatom develops nuclear fuel for modernized floating power units

Rosatom has completed the development of nuclear fuel for the RITM-200S small modular reactor designed for the upgraded floating power units.

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VIVA Yacht – Incredible $175 Million Superyacht

VIVA yacht is a masterpiece built by the renowned Feadship De Voogt Naval Architects , a Netherlands-based yacht designer, in their Kaag shipyard.

She was built in 2021 and is considered one of the largest motor yachts in the world that can accommodate up to 14 guests in luxurious comfort and 18 crew for excellent service. 

This majestic 308-foot superyacht is considered to be the first in a line of future luxury yachts that also focus on significantly reducing its carbon footprint by running on diesel-electric power.

According to the AIS data , she is currently sailing under the flag of the Cayman Islands.

DJI 0057 1

VIVA yacht interior

The VIVA yacht is a luxury yacht with an emphasis on environmentalism. Her design was penned by Peter Marino featuring “great edifices” of glass, including floor-to-ceiling windows that allow for natural light and ventilation throughout the interior spaces.

Marino’s theme for this superyacht is an open beach house style with a touch of minimalism clearly shown in the design’s abundance of clean lines. 

She boasts of a movie theatre, beauty salon, underwater lights, elevator, beach club, gym, and air conditioning for the guests’ enjoyment.

She features an exterior design by Azure Yacht Design & Naval Architecture with an aluminum superstructure and teak decks for a classic look.

The superyacht’s exterior is created with a modern, minimalistic design in a special pearl-white livery.

The clean lines and abundance of glass draw attention from all who see it as she sails across blue waters.

Her hull is built to be as efficient as possible, reducing the engine power required to sail through the waters.

Additionally, she features the largest tender and the longest hull doors ever seen on a Feadship.

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VIVA Yacht specifications

The VIVA yacht is a stunning 94-meter-long luxury yacht with an incredible 13.6m beam and a volume of 2999 gross tonnage, making it one of the largest yachts in its class.

Her water tanks can store around 71,000 liters of fresh water that the guests can use. 

The yacht is powered by twin MTU engines with a maximum speed of 20 knots, a cruising speed of 12 knots, and a range that extends over 5k nautical miles. She is also equipped with at-anchor stabilizers to provide exceptional comfort levels. 

She is hailed as the most environmentally-friendly luxury vessel of its kind because of her eco-friendly waste treatment plant and heat recovery systems on board. 

She has been installed with an exceptionally advanced hybrid propulsion system to keep the environmental impact at around the same levels as his previous Feadship, despite that being 32 meters shorter in length.

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VIVA yacht price

Her price is $175 million and her annual running cost is at around US$ 17.5 million yearly. She is currently not believed to be for sale nor available for private charter.

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As a private yacht, little is known about her owner who is a billionaire and features his initials on the helicopter register N702FF.

VIVA yacht summary

VIVA yacht is a remarkable masterpiece built by Feadship De Voogt Naval Architects, showcasing luxury and environmental consciousness.

With its sleek design and innovative diesel-electric power system, it stands as one of the largest and most eco-friendly motor yachts in the world.

The interior, designed by Peter Marino, exudes a minimalist beach house style, offering a bright and inviting atmosphere for guests.

On the exterior, VIVA’s modern and minimalistic design, along with its efficient hull, captures attention as it sails across the waters.

With a price tag of $175 million, VIVA sets new standards for luxury and sustainability in the yachting industry, reflecting the owner’s commitment to excellence and environmental responsibility.

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VIVA yacht NOT for charter*

94m  /  308'5 | feadship | 2021.

Owner & Guests

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Special Features:

  • Elevator for convenient access
  • Multi-award winning
  • Comfortable Movie Theatre
  • Inviting pool
  • Lloyds Register ✠ 100A1 SSC Yacht, Mono, G6 ✠ LMC, UMS classification

The multi-award winning 94m/308'5" motor yacht 'Viva' was built by Feadship in the Netherlands at their Kaag shipyard. Her interior is styled by design house Peter Marino and she was delivered to her owner in June 2021. This luxury vessel's exterior design is the work of Azure Yacht Design.

Guest Accommodation

Viva has been designed to comfortably accommodate up to 16 guests in 8 suites. She is also capable of carrying up to 38 crew onboard to ensure a relaxed luxury yacht experience.

Onboard Comfort & Entertainment

Her features include a movie theatre, beauty salon, elevator, underwater lights, beach club, gym and air conditioning.

Range & Performance

Viva is built with a steel hull and aluminium superstructure, with teak decks. Powered by twin diesel-electric MTU (16V 4000 M73L) 16-cylinder 3,916hp engines running at 2050rpm, she comfortably cruises at 12 knots, reaches a maximum speed of 20 knots. Viva features at-anchor stabilizers providing exceptional comfort levels. Her water tanks store around 71,000 Litres of fresh water. She was built to Lloyds Register ✠ 100A1 SSC Yacht, Mono, G6 ✠ LMC, UMS classification society rules.

*Charter Viva Motor Yacht

Motor yacht Viva is currently not believed to be available for private Charter. To view similar yachts for charter , or contact your Yacht Charter Broker for information about renting a luxury charter yacht.

Viva Yacht Owner, Captain or marketing company

'Yacht Charter Fleet' is a free information service, if your yacht is available for charter please contact us with details and photos and we will update our records.

Viva Photos

Viva Yacht

Viva Awards & Nominations

  • The World Superyacht Awards 2022 Best Displacement Motor Yacht of 2,000GT and above Winner
  • The World Superyacht Awards 2022 Motor Yacht of the Year Winner
  • Boat International Design & Innovation Awards 2022 Outstanding Exterior Motor Yacht Design - 60m and above Winner

NOTE to U.S. Customs & Border Protection

Specification

M/Y Viva

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super yacht viva

Specifications

  • Yacht Type: Motor Yacht
  • Yacht Subtype: Displacement
  • Builder: Feadship
  • Naval Architect: Feadship De Voogt Naval Architects
  • Exterior Designer: Azure Yacht Design and Naval Architecture , Studio De Voogt
  • Interior Designer: Peter Marino

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M/Y VIVA 94m Super Yacht by Feadship

  • €200,000,000
  • Property ID

✨ Viva: A Maritime Symphony of Opulence 🚢🌟

Embark on a voyage of luxury aboard the magnificent superyacht Viva, a true masterpiece born from the skilled hands of Feadship in 2021. Let’s delve deeper into the opulent world that this 94m nautical wonder, owned by the illustrious billionaire Frank Fertitta, unfolds.

🌐 Design & Craftsmanship:

  • Crafted by Feadship, a Dutch yacht-building legend 🇳🇱
  • Azure Yacht Design & Naval Architecture’s exterior allure 🎨
  • Interior elegance curated by Peter Marino 🛋️

🚀 Technical Marvels:

  • Powered by cutting-edge MTU engines 🚤
  • Maximum speed of 20 knots for swift journeys 🌊
  • Impressive range of over 5,000 nautical miles ⚓

🛏️ Luxurious Living:

  • Accommodates up to 14 guests in lavish quarters 🛏️
  • A dedicated crew of 18 ensures seamless service 💼

👨‍💼 Ownership & Legacy:

  • Proudly owned by Frank Fertitta, the visionary billionaire 💰
  • Personalized touch with helicopter N702FF, a nod to Fertitta’s initials 🚁

🔱 Feadship Excellence:

  • Founded in 1949, Feadship is synonymous with Dutch yachting excellence 🌐
  • Custom-built luxury ranging from 40m to over 100m 🏆

🌍 Current Status & Locations:

  • Track Viva’s real-time location as it graces different waters 📍
  • Currently anchored in Turkish waters, showcasing the yacht’s global exploration 🌍

🔒 Security & Privacy:

  • Ensured by advanced technology, making Viva a secure haven ⚔️
  • Reflects Fertitta’s commitment to privacy in every ocean crossing 🌊

🔥 Financial Prowess:

  • Viva’s cost price: $175 million, reflecting Frank Fertitta’s dedication to yachting excellence 💸
  • Annual running costs approximately $18 million, ensuring top-notch maintenance 🛠️
  • Frank Fertitta boasts a substantial net worth of $2.8 billion, accumulated through successful business endeavors.

2. Residence:

  • His primary residence is in Las Vegas, a city synonymous with entertainment, luxury, and high-stakes ventures.

3. Private Jet:

  • Frank Fertitta owns a Bombardier Global 7500 private jet with the registration N762F. The Bombardier Global 7500 is known for its long range and luxurious amenities.

4. Superyacht VIVA 94m:

  • The crown jewel of Fertitta’s maritime pursuits is the superyacht Viva, a 94-meter vessel crafted by Feadship in 2021. Viva represents the epitome of luxury and sophistication on the high seas.

5. Source of Wealth:

  • Fertitta’s wealth is derived from various sources, including his involvement in the UFC (Ultimate Fighting Championship) and Station Casinos.

6. UFC (Ultimate Fighting Championship):

  • Fertitta is a key figure in the world of mixed martial arts, having been involved in the UFC. The UFC is a premier organization in the sport, contributing significantly to Fertitta’s wealth.

7. Station Casinos:

  • Fertitta has interests in Station Casinos, a chain of hotel and casinos in the Las Vegas area. His involvement in the gaming and hospitality industry has been a lucrative venture.

🛳️ Feadship Legacy:

  • Feadship’s portfolio includes iconic yachts like Anna, SYMPHONY, and Faith 🏆
  • Continues to be the choice of discerning yacht owners worldwide 🌎

⚓ Unveiling Nautical Luxury: #VivaYacht #LuxuryLifestyle #YachtingElegance #FeadshipExcellence 🌊✨

Embark on a visual journey by swiping through breathtaking images of Viva’s interiors, exteriors, and mesmerizing ocean views. Each photo captures the essence of Viva’s opulence, making it a timeless addition to the world of luxury yachting. 📸✨

M/Y VIVA at the Monaco Yacht Show 2021

2021 The latest yacht to be completed by Feadship, Viva is a state-of-the-art hybrid superyacht that is capable of cruising up to 12 knots under green power. Viva’s hull sides have been finished in a special pearl-white finish for a glistening effect in the sunlight.

Superyacht Viva: A Marvel of Elegance and Efficiency

1. Anchored Elegance:

  • Witness the breathtaking presence of the 94-meter superyacht Viva as she gracefully anchors off the Lerins Islands in the South of France. Her majestic silhouette reflects the epitome of maritime luxury.

2. Feadship Craftsmanship:

  • Crafted with precision and artistry, Viva was built and launched in February 2021 at the esteemed Dutch shipyard Feadship in Kaag, the Netherlands. Feadship’s legacy of excellence is evident in every detail of this extraordinary vessel.

3. Project 817 Unveiled:

  • Formerly known as Project 817, Viva emerges as one of the largest superyachts to be launched by Feadship. This nautical masterpiece is the collaborative design work of Azure Yacht Design and Feadship’s Studio De Voogt.

4. Peter Marino’s Interior Brilliance:

  • The interior of Viva is a testament to the brilliance of Peter Marino’s design studio. Described as a beach house by the builder, the yacht’s interior resonates with the owner’s ‘less is more’ philosophy, showcasing clean lines and uncluttered elegance.

5. Natural Light Abundance:

  • A standout feature of Viva is the curved floor-to-ceiling windows adorning both upper decks. These architectural marvels flood the interior with an abundance of natural light, creating a serene and inviting atmosphere.

6. Hybrid Propulsion Excellence:

  • Viva is equipped with a state-of-the-art hybrid propulsion system, exemplifying efficiency and environmental consciousness. The yacht can cruise on diesel-electric power at a comfortable 12 knots, reaching an impressive 20 knots under diesel propulsion.

7. Owner’s Vision:

  • The owner’s vision permeates every aspect of Viva’s design, emphasizing a harmonious blend of elegance, functionality, and efficiency. The ‘less is more’ philosophy extends beyond aesthetics to the vessel’s operational efficiency.

As Viva graces the waters with her presence, she stands as a symbol of maritime excellence, where craftsmanship, design, and technological innovation converge to create an unparalleled yachting experience. From the Lerins Islands to the open seas, Viva invites admiration for her timeless beauty and forward-thinking design. #SuperyachtViva #FeadshipExcellence #YachtingElegance #AzureYachtDesign #PeterMarinoDesign #HybridPropulsion #LuxuryAtSea #NauticalInnovation #FeadshipCraftsmanship

VIVA Superyacht departing the port of Gibraltar 31/1/2022

IMO: 9798246 Name: VIVA Vessel Type – Generic: Pleasure Craft Vessel Type – Detailed: Houseboat Status: Active MMSI: 319179500 Call Sign: ZGKK9 Flag: Cayman Is [KY] Gross Tonnage: 2999 Summer DWT: 401 t Length Overall x Breadth Extreme: 94 x 14 m Year Built: 2021

  • Property ID: 129516
  • Price: €200,000,000
  • Property Type: FEADSHIP
  • Property Status: Monaco Yacht Show, New Costruction, Sold
  • Yacht Name: VIVA
  • Ship Yard: Feadship
  • Yacht Designer: Azure Yacht Design
  • Naval Design: Exterior
  • IMO: 9798246
  • MSSI: 319179500

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M/Y VIVA 94m Super Yacht by Feadship

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VIVA: The $250 Million Superyacht Of UFC Owner Frank Fertitta III

VIVA: The $250 Million Superyacht Of UFC Owner Frank Fertitta III

Garry Lu

From his current position as CEO of Station Casinos to how he – alongside brother Lorenzo and childhood friend Dana White – transformed the UFC into a multi-billion-dollar promotion , there’s virtually endless information about how Frank Fertitta III made his fortune. How he chooses to spend said fortune, however, is a little more mysterious (at least for the fun stuff). One such indulgence we know the elder Fertitta brother has treated himself to is the ultra-luxurious Feadship-built superyacht known as Viva, which comes with an eye-watering price tag of US$175 million / AU$252 million.

Conceptualised by Azure Yacht Design & Naval Architecture in collaboration with De Voogt Naval Architects, while also showcasing interiors accomplished by Peter Marino, Viva was only completed in the Netherlands last year and delivered shortly thereafter.

VIVA Superyacht Frank Fertitta III

RELATED: Inside Lawrence Stroll’s $282 Million Superyacht ‘Faith’

Back to the matter of Viva, it boasts an overall length of 308 feet / 94 metres with a 13.6-metre beam and gross tonnage of 2,999 – making it the 85th largest superyacht in the entire world; seventh largest ever constructed by Feadship – and can comfortably accommodate 14 guests across seven cabins alongside a capable crew of 18.

Viva has been called the “most environmentally-friendly luxury vessel of its kind” due to it featuring a hybrid propulsion system that allows the boat to cruise using diesel-electric power, as well as a waste treatment plant and heat recovering systems.

VIVA Superyacht Frank Fertitta III

RELATED: Inside Aussie Rich Lister Ian Malouf’s Stunning €35 Million Superyacht Rebuild

  • Formal dining area
  • Beauty salon
  • Helipad w/ helicopter registered as N702FF (believed to have been chosen for Frank’s initials)

Viva has a steel hull and aluminium superstructure.

The annual running cost of this enviable billionaire’s toy? Over US$17.5 million / AU$25 million. 

Viva was last sighted en route to Martha’s Vineyard by way of Nantucket — but you can check it out for yourself via the Superyacht Times’ video below.

NOTE : As interior photos have yet to be released, the shots embedded are just samples.

viva superyacht interior photos

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$175 million superyacht viva moored off nantucket.

Jason Graziadei • Jul 06, 2022

If you’ve arrived or departed from the island by boat over the past few days, you couldn’t have missed the gargantuan visitor lurking just offshore.

The 308-foot superyacht Viva was moored off Nantucket earlier this week, just outside the jetties, as the massive vessel was too large to navigate into the harbor. It departed for Martha's Vineyard Wednesday night.

The $175 million Viva, which was built by Feadship in the Netherlands and completed just last year, features its own helicopter which has been spotted circling around the island this week. It is the 85th largest superyacht in the world, and is believed to be owned by billionaire Frank Fertitta III , the CEO of Station Casinos in Las Vegas and founder of Zuffa LLC, the parent company of the Ultimate Fighting Championship (UFC).

The yacht’s helicopter sports the tail number N702FF, which was believed to have been chosen for Fertitta’s initials.

"That's definitely one of the biggest vessels I've seen around Nantucket in my 20 years here," Harbormaster Sheila Lucey said on Wednesday.

The yacht has been called the “most environmental-friendly luxury vessel of its kind” as it features a hybrid propulsion system that allows the boat to travel at 12 knots under diesel-electric power, as well as a waste treatment plant and heat recovering systems on board. Its annual running costs are reported to be in excess of $17.5 million .

Viva has a steel hull and an aluminum superstructure. Among its many amenities are a cinema, a beauty salon, a gym, and, of course, a helipad on the upper deck.

Following its construction in the Dutch shipyard, the massive yacht had to squeeze through narrow canals to make it out to sea, as documented in these photos shared by CNN last year.

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Opera on Video

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  • DMITRY KORCHAK Playlist 57 great video clips

FULL DMITRY KORCHAK Playlist 57 great video clips

Qries

Information on the Performance

  • Work Title: DMITRY KORCHAK Playlist   
  • Composer: various   
  • Libretto: various     Libretto Text, Libretto Index
  • Venue & Opera Company: various  
  • Recorded: various
  • Type: Staged Opera Live
  • Singers: Dmitry Korchak
  • Conductor: various   
  • Orchestra: various  
  • Stage Director:   
  • Costume Designer:   

Information about the Recording

  • Published by: OoV   
  • Date Published: 2023   
  • Format: Streaming
  • Quality Video: 3 Audio: 3
  • Subtitles: nosubs   
  • Video Recording from: YouTube      FULL VIDEO

ADDITIONAL INFORMATION ON THIS PERFORMANCE

Dmitry Korchak (born February 19, 1979 in Elektrostal/Moscow Oblast) is a Russian tenor and conductor.

Korchak received his musical education at the Moscow Choral Academy. In 2004 he won prizes at the “Francisco Viñas” International Singing Competition in Barcelona and at the Plácido Domingo Operalia International Competition in Los Angeles.

As a singer he has appeared at La Scala in Milan, the Vienna State Opera, the Berlin State Opera Unter den Linden, the Paris Opera Bastille, London’s Covent Garden and New York’s Carnegie Hall. He has collaborated with artists such as Daniel Barenboim, Riccardo Chailly, Plácido Domingo, Lorin Maazel, Zubin Mehta and Kent Nagano.

From 2017 to 2020, Dmitry Korchak was Principal Guest Conductor at the Novosibirsk Academic Opera and Ballet Theater, where he directed his own festival, and Guest Conductor at the Mikhailovsky Theater in Saint Petersburg.

Korchak has made several guest appearances at the Kissinger Sommer, the Salzburg Festival and the Rossini Festival in Pesaro, where he also worked as a conductor. Korchak also worked with the Bavarian Radio Orchestra and the Chicago Symphony Orchestra, among others.

Comment ( 1 )

Thank you for this, he’s brilliant!

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Why were so many metro stations in Moscow renamed?

Okhotny Ryad station in Soviet times and today.

Okhotny Ryad station in Soviet times and today.

The Moscow metro system has 275 stations, and 28 of them have been renamed at some point or other—and several times in some cases. Most of these are the oldest stations, which opened in 1935.

The politics of place names

The first station to change its name was Ulitsa Kominterna (Comintern Street). The Comintern was an international communist organization that ceased to exist in 1943, and after the war Moscow authorities decided to call the street named after it something else. In 1946, the station was renamed Kalininskaya. Then for several days in 1990, the station was called Vozdvizhenka, before eventually settling on Aleksandrovsky Sad, which is what it is called today.

The banner on the entraince reads:

The banner on the entraince reads: "Kalininskaya station." Now it's Alexandrovsky Sad.

Until 1957, Kropotkinskaya station was called Dvorets Sovetov ( Palace of Soviets ). There were plans to build a monumental Stalinist high-rise on the site of the nearby Cathedral of Christ the Saviour , which had been demolished. However, the project never got off the ground, and after Stalin's death the station was named after Kropotkinskaya Street, which passes above it.

Dvorets Sovetov station, 1935. Letters on the entrance:

Dvorets Sovetov station, 1935. Letters on the entrance: "Metro after Kaganovich."

Of course, politics was the main reason for changing station names. Initially, the Moscow Metro itself was named after Lazar Kaganovich, Joseph Stalin’s right-hand man. Kaganovich supervised the construction of the first metro line and was in charge of drawing up a master plan for reconstructing Moscow as the "capital of the proletariat."

In 1955, under Nikita Khrushchev's rule and during the denunciation of Stalin's personality cult, the Moscow Metro was named in honor of Vladimir Lenin.

Kropotkinskaya station, our days. Letters on the entrance:

Kropotkinskaya station, our days. Letters on the entrance: "Metropolitan after Lenin."

New Metro stations that have been opened since the collapse of the Soviet Union simply say "Moscow Metro," although the metro's affiliation with Vladimir Lenin has never officially been dropped.

Zyablikovo station. On the entrance, there are no more signs that the metro is named after Lenin.

Zyablikovo station. On the entrance, there are no more signs that the metro is named after Lenin.

Stations that bore the names of Stalin's associates were also renamed under Khrushchev. Additionally, some stations were named after a neighborhood or street and if these underwent name changes, the stations themselves had to be renamed as well.

Until 1961 the Moscow Metro had a Stalinskaya station that was adorned by a five-meter statue of the supreme leader. It is now called Semyonovskaya station.

Left: Stalinskaya station. Right: Now it's Semyonovskaya.

Left: Stalinskaya station. Right: Now it's Semyonovskaya.

The biggest wholesale renaming of stations took place in 1990, when Moscow’s government decided to get rid of Soviet names. Overnight, 11 metro stations named after revolutionaries were given new names. Shcherbakovskaya became Alekseyevskaya, Gorkovskaya became Tverskaya, Ploshchad Nogina became Kitay-Gorod and Kirovskaya turned into Chistye Prudy. This seriously confused passengers, to put it mildly, and some older Muscovites still call Lubyanka station Dzerzhinskaya for old times' sake.

At the same time, certain stations have held onto their Soviet names. Marksistskaya and Kropotkinskaya, for instance, although there were plans to rename them too at one point.

"I still sometimes mix up Teatralnaya and Tverskaya stations,” one Moscow resident recalls .

 “Both have been renamed and both start with a ‘T.’ Vykhino still grates on the ear and, when in 1991 on the last day of my final year at school, we went to Kitay-Gorod to go on the river cruise boats, my classmates couldn’t believe that a station with that name existed."

The city government submitted a station name change for public discussion for the first time in 2015. The station in question was Voykovskaya, whose name derives from the revolutionary figure Pyotr Voykov. In the end, city residents voted against the name change, evidently not out of any affection for Voykov personally, but mainly because that was the name they were used to.

What stations changed their name most frequently?

Some stations have changed names three times. Apart from the above-mentioned Aleksandrovsky Sad (Ulitsa Kominterna->Kalininskaya->Vozdvizhenka->Aleksandrovsky Sad), a similar fate befell Partizanskaya station in the east of Moscow. Opened in 1944, it initially bore the ridiculously long name Izmaylovsky PKiO im. Stalina (Izmaylovsky Park of Culture and Rest Named After Stalin). In 1947, the station was renamed and simplified for convenience to Izmaylovskaya. Then in 1963 it was renamed yet again—this time to Izmaylovsky Park, having "donated" its previous name to the next station on the line. And in 2005 it was rechristened Partizanskaya to mark the 60th anniversary of victory in World War II. 

Partizanskaya metro station, nowadays.

Partizanskaya metro station, nowadays.

Another interesting story involves Alekseyevskaya metro station. This name was originally proposed for the station, which opened in 1958, since a village with this name had been located here. It was then decided to call the station Shcherbakovskaya in honor of Aleksandr Shcherbakov, a politician who had been an associate of Stalin. Nikita Khrushchev had strained relations with Shcherbakov, however, and when he got word of it literally a few days before the station opening the builders had to hastily change all the signs. It ended up with the concise and politically correct name of Mir (Peace).

The name Shcherbakovskaya was restored in 1966 after Khrushchev's fall from power. It then became Alekseyevskaya in 1990.

Alekseyevskaya metro station.

Alekseyevskaya metro station.

But the station that holds the record for the most name changes is Okhotny Ryad, which opened in 1935 on the site of a cluster of market shops. When the metro system was renamed in honor of Lenin in 1955, this station was renamed after Kaganovich by way of compensation. The name lasted just two years though because in 1957 Kaganovich fell out of favor with Khrushchev, and the previous name was returned. But in 1961 it was rechristened yet again, this time in honor of Prospekt Marksa, which had just been built nearby.

Okhotny Ryad station in 1954 and Prospekt Marksa in 1986.

Okhotny Ryad station in 1954 and Prospekt Marksa in 1986.

In 1990, two historical street names—Teatralny Proyezd and Mokhovaya Street—were revived to replace Prospekt Marksa, and the station once again became Okhotny Ryad.

Okhotny Ryad in 2020.

Okhotny Ryad in 2020.

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super yacht viva

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super yacht viva

Viva boasts impressive specifications that make her a true marvel on the high seas. Powered by top-of-the-line MTU engines, this superyacht achieves a maximum speed of 20 knots and cruises comfortably at 12 knots. With a remarkable range of over 5,000 nautical miles, Viva is designed for long-distance voyages and endless exploration.

Viva is a motor yacht with an overall length of m. The yacht's builder is Feadship from The Netherlands, who launched Viva in 2021. The superyacht has a beam of m and a volume of . GT.. Viva features exterior design by Azure Yacht Design & Naval Architecture and interior design by Peter Marino. Viva has a steel hull and an aluminium superstructure. She is powered by 2 MTU engines, which give ...

VIVA yacht interior. The VIVA yacht is a luxury yacht with an emphasis on environmentalism. Her design was penned by Peter Marino featuring "great edifices" of glass, including floor-to-ceiling windows that allow for natural light and ventilation throughout the interior spaces.. Marino's theme for this superyacht is an open beach house style with a touch of minimalism clearly shown in ...

Special Features: The multi-award winning 94m/308'5" motor yacht 'Viva' was built by Feadship in the Netherlands at their Kaag shipyard. Her interior is styled by design house Peter Marino and she was delivered to her owner in June 2021. This luxury vessel's exterior design is the work of Azure Yacht Design.

Viva is a custom motor yacht launched in 2021 by Feadship, in the Netherlands. Based in the Netherlands and with roots dating back to 1849, Feadship is recognised as the world leader in the field of pure custom superyachts. Viva measures 94.0 metres in length and has a beam of 14 feet. Her exterior design is by Azure Naval Architects.

The 94 metre Feadship superyacht Viva, previously known as Project 817, has been delivered and is now en route to Gibraltar. It comes after the yacht completed sea trials after hitting the water for the first time in February. Viva features exterior design penned by Azure Yacht Design and Studio De Voogt and an interior by Peter Marino ...

"Viva" is a motor yacht with a length of 308-Feet ⚡️ The yacht's builder is Feadship from Netherlands who delivered her Viva in 2021 🌊 Her exterior design ...

Westport • $10,250,000 • 34.14 m • 8 guests. WIDER 210. Wider • €62,400,000 • 64.01 m • 14 guests. VIVA is a 94m superyacht built by Feadship in Netherlands and delivered in 2021. Explore her photos and specifications here.

The latest yacht to be completed by Feadship, Viva is a state-of-the-art hybrid superyacht that is capable of cruising up to 12 knots under green power. Viva...

No doubt VIVA's standout feature is her advanced hybrid propulsion system, allowing the yacht to travel at 12 knots comfortably on diesel-electric power. A large battery bank ensures optimum generator loading and a smooth power grid. All-diesel mode allows the 94m to reach a top speed of 20 knots.

Interviews. Feadship's 94-metre Viva has now been spotted returning to her builder in the Netherlands for the first time since her delivery in 2021. Viva, previously known as Project 817, was penned by Azure Yacht Design & Naval Architecture and De Voogt Naval Architects, who is also responsible for her naval architecture.

2021 The latest yacht to be completed by Feadship, Viva is a state-of-the-art hybrid superyacht that is capable of cruising up to 12 knots under green power. Viva's hull sides have been finished in a special pearl-white finish for a glistening effect in the sunlight. Superyacht Viva: A Marvel of Elegance and Efficiency. 1. Anchored Elegance:

SuperYacht VIVAViva, hailed as the most environmental-friendly luxury vessel of its kind and was delivered in June 2021.This 94 meter SuperYacht was built by...

RELATED: Inside Lawrence Stroll's $282 Million Superyacht 'Faith'. Back to the matter of Viva, it boasts an overall length of 308 feet / 94 metres with a 13.6-metre beam and gross tonnage of 2,999 - making it the 85th largest superyacht in the entire world; seventh largest ever constructed by Feadship - and can comfortably accommodate ...

The 308-foot superyacht Viva was moored off Nantucket earlier this week, just outside the jetties, as the massive vessel was too large to navigate into the harbor. It departed for Martha's Vineyard Wednesday night. The $175 million Viva, which was built by Feadship in the Netherlands and completed just last year, features its own helicopter ...

Find anything, super fast. Fastfind $ € m ft Open search. For sale Yacht Search ... Viva Type. Motor Model. Custom Sub Type - Year. 2021 Flag - MCA - Class ... Yacht Builder Feadship View profile . Naval Architect

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Get directions to Yuzhny prospekt, 6к1 and view details like the building's postal code, description, photos, and reviews on each business in the building

The Moscow metro system has 275 stations, and 28 of them have been renamed at some point or other—and several times in some cases. Most of these are the oldest stations, which opened in 1935.

Along with the journey through the Golden Ring of Russia, every travel guide includes a trip to another interesting ring. The ring of Moscow metro stations. We have collected for you the best metro stations of Moscow. Just look for yourself at what amazing art is presented in underground area.

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  1. superyacht adastra by john shuttleworth yacht designs

    john shuttleworth yacht designs

  2. Superyacht Adastra aft a Power Trimaran

    john shuttleworth yacht designs

  3. superyacht adastra by john shuttleworth yacht designs

    john shuttleworth yacht designs

  4. superyacht adastra by john shuttleworth yacht designs

    john shuttleworth yacht designs

  5. Motor yacht Adastra Aft

    john shuttleworth yacht designs

  6. Superyacht Adastra cockpit a 42.5m Power Trimaran

    john shuttleworth yacht designs

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  1. John Shuttleworth

  2. John Shuttleworth 'Yorkshire Tea' ad 2009

  3. John Shuttleworth

  4. Shuttle 31 Lift and Splash

COMMENTS

  1. Shuttleworth Design

    Yacht Designs. Multihulls, Monohulls, Superyachts, Catamarans, Trimarans. Power, Sail. Racing, Cruising. Boat plans. John Shuttleworth, Orion Shuttleworth, Shuttleworth Design is a multi-award winning design consultancy that has been working with an international client base at the forefront of yacht design, engineering and naval architecture for more than 35 years.

  2. Shuttleworth Design

    Shuttleworth Design is a multi-award winning design consultancy that has been working with an international client base at the forefront of yacht design, engineering, and naval architecture for more than 40 years. Established in 1980, Shuttleworth Design was one of the first yacht design companies to develop the idea of "integrated design", a ...

  3. Shuttleworth Design

    Power, multihulls, sail, solar power, catamaran, trimaran, superyacht, designs, Boat plans, Shuttleworth, Tektron, Shuttle 40, Shuttle 37, Shuttle 31, Zazen, Pulsar ...

  4. Shuttleworth Design

    The ultimate ocean explorer. The Shuttleworth 80M is the largest and most advanced in our range of power trimaran designs currently under development. At 14 knots her range will be in excess of 7,500nm, and her top speed of 25 knots can be increased to 30 knots with alternative engine options. She offers unrivalled fuel efficiency for her size.

  5. Superyacht Adastra

    42.5m Ocean Explorer Trimaran. The striking 42.5m trimaran Adastra was launched in China on 11th April 2012. She is the result of meticulous attention to detail and innovative design to create a yacht that meets the needs of a very experienced ocean voyaging couple and their family, and to provide the level of comfort and style expected in a ...

  6. Adastra for Sale design reflections

    To find out more about the sale contact Shuttleworth Design Reflections on the Design and Performance By John and Orion Shuttleworth - 2019. After seven years of cruising and 60,000 miles on the log, this multi-award winning yacht has become established as an iconic design, representing a new vision of style and incredible fuel economy.

  7. Shuttleworth Design

    Reflections on the design of Brittany Ferries G.B. A talk by John Shuttleworth at the Multihull Offshore Cruising and Racing Association A.G.M., January 1982. Various articles have been published about the boat over the last year explaining many of the design features (see Multihulls International Dec 1980) . So rather than go over old ground I ...

  8. superyacht adastra by john shuttleworth yacht designs

    'adastra' by john shuttleworth yacht designs. all images courtesy orion shuttleworth 'adastra' is a 42.5m power trimaran which was conceived for a couple (anto and elaine marden) for long ...

  9. Shuttleworth Design

    Shuttleworth Design Ltd Gurnard Isle of Wight UK Back to top . Company; About Us; Partners; Race Results; Awards; Owners' Comments

  10. Shuttleworth Design debut new 70m and 32m futuristic trimarans

    Shuttleworth Design, creators of the award-winning yacht Adastra, has revealed the first glimpse of its new 70-metre and 32-metre trimarans.. The new designs are released in conjunction with Shuttleworth Design's new website, launching this week, which will profile the new Shuttleworth 70M and 32M trimarans along with an 80-metre also in development.

  11. The Trimaran Adastra Superyacht by John Shuttleworth [17 pics]

    John Shuttleworth Yacht Design, Ltd., is based in West Sussex, England and has gained a reputation for designing fast, strong, and safe boats. Their designs are consistent race winners, and several have broken and still hold some of the toughest long-distance ocean sailing records. Shuttleworth's design team has developed the "Integrated ...

  12. PDF EngineeringAnswers Super Yacht Prepares to Set Sail

    Super Yacht Prepares to Set Sail Majenta PLM, a PLM software solutions provider, was contracted by John Shuttleworth Yacht Designs to provide Siemens NX 7.5 for its cutting-edge yacht design work. From a design angle, NX offered greater design control, speed, productivity, and throughput, with a complete set of flexible shape

  13. Adastra one-off luxury trimaran is in the works

    The 16 by 42.5-meter (52.5 by 139.5-foot) yacht was designed by John Shuttleworth Yacht Designs and is being built by McConaghy Boats, for Hong Kong residents Anto and Elaine Marden.

  14. Futuristic Adastra Superyacht

    Designed by John Shuttleworth Yacht Designs, the Adastra looks more like a spaceship from another planet rather than a normal yacht. Despite the futuristic exterior, the interior is lavish and very contemporary. The Adastra has multiple living quarters and common areas and can hold up to nine passengers and six crew members on one of its decks.

  15. Motor yacht Adastra Feature

    Motor yacht Adastra is a very interesting superyacht which is designed for ultra efficient long range cruising. The striking 42.5m Trimaran Adastra was designed by John Shuttleworth Yacht Designs and is currently being built in China for a Hong Kong yacht owners Anto and Elaine Marden.

  16. Super Yacht Prepares To Set Sail

    Company owner and chief designer John Shuttleworth has a worldwide reputation for designing fast, strong, and safe boats. With a background in engineering and computer-aided design, he first developed his new approach to yacht design in the 1980s, which resulted in boats that were lighter, stiffer, and stronger than any previous multi-hull designs.

  17. Shuttleworth Yacht Designs

    For John Shuttleworth Yacht Designs, using NX for product development was an innovative departure from previous processes. "It was the first time that we worked out all the design features in 3D from the start," says Shuttleworth. "With such a complex hull form, requiring extensive structural analysis, it was essential in order to get the ...

  18. 42.5m Adastra Superyacht

    Adastra also features naval architecture by John Shuttleworth Yacht Designs Ltd.. Performance and Capabilities. Adastra has a top speed of 22.00 knots and a cruising speed of 17.00 knots. She is powered by a triple screw propulsion system. Adastra is a custom motor yacht launched in 2012 by McConaghy Boats in Zhuhai, China.

  19. Burevestnik: a Russian air-launched anti-satellite system

    The index for the Burevestnik space complex is 14K168. The idea that "293" is a satellite launch vehicle is corroborated by the fact that the index for one of its stages (14S47) is similar to that of some upper stages of space launch vehicles. Moreover, plans to use the MiG-31 as a satellite launch platform are not new.

  20. For the first time Rosatom Fuel Division supplied fresh nuclear fuel to

    It includes, as its branches, 11 operating NPPs, including the FNPP, the Scientific and Technical Center for Emergency Operations at NPPs, Design and Engineering as well as Technological companies. In total, 37 power units with a total installed capacity of over 29.5 GW are in operation at 11 nuclear power plants in Russia.

  21. super yacht viva

    Viva boasts impressive specifications that make her a true marvel on the high seas. Powered by top-of-the-line MTU engines, this superyacht achieves a maximum speed of 20 knots and cruises comfortably at 12 knots. With a remarkable range of over 5,000 nautical miles, Viva is designed for long-distance voyages and endless exploration.... Viva is a motor yacht with an overall length of m.

  22. Design-Build Contractors & Firms in Elektrostal'

    Just answer a few questions to get matched with a local Design-Build Firm. Or browse through the list of trusted Design-Build Firms in Elektrostal' on Houzz: See Elektrostal' Design-Build Firms' profiles, dive into their work photos and check out customer reviews. Reach out to the pro(s) you want, then share your vision to get the ball rolling.