NASA/SpaceX Red Dragon mission

Автор Valerij, 02.08.2011 17:23:05

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Ну-и-ну

А если подождать до 2022, то можно будет три реддрэгона запустить. Или даже четыре.

Salo

https://ria.ru/science/20170720/1498833877.html
ЦитироватьСМИ: Элон Маск отказался от планов по посадке корабля Dragon на Марс
13:37 20.07.2017

© Flickr / SpaceX

МОСКВА, 20 июл – РИА Новости. Компания SpaceX прекратила разработку системы мягкой посадки для корабля Dragon, что говорит о возможном отказе стартапа Элона Маска от планов по посадке этого челнока на поверхность Марса в 2020 или 2022 году, сообщает интернет-издание SpaceNews.
"Принятие этого решение было крайне тяжелым для нас. С технической точки зрения, Dragon в принципе может осуществить подобную посадку, однако для этого потребуется очень мягкая посадочная площадка, так как мы убрали те ноги, которые раньше выдвигались из теплового экрана челнока", — заявил Маск, отвечая на вопросы журналистов на Конференции по развитию МКС в Вашингтоне.
В сентябре прошлого года Элон Маск, глава космического стартапа SpaceX, рассказал о масштабных планах по колонизации Марса силами его компании, результатом которой будет постройка "города-миллионника" на красной планете к концу текущего столетия.
Первым шагом на пути к реализации этой мечты должен стать запуск космического корабля Red Dragon – беспилотной капсулы, способной достичь Марса, после чего осуществить посадку на его поверхность или вернуться назад на Землю. В соответствие с планами Маска, первая такая капсула должна была быть запущена в 2020 или 2022 году, а пилотируемый полет на Марс должен был состояться в середине следующего десятилетия.
Впоследствии, сроки запуска Red Dragon несколько раз сдвигались вперед и назад, и сейчас SpaceX, по крайней мере формально, придерживается оригинальных планов – первый беспилотный полет Dragon к Марсу должен состояться в 2020 году, а первые "марсонавты" могут отправиться к красной планете в середине 2020 годов.
Как отмечает SpaceNews, первым шагом на пути реализации этой мечты Маска должно было стать создание новой версии челнока Dragon, который сможет не только приземляться на воду, спускаясь на парашютах, но и осуществлять мягкую посадку на твердый грунт, подобно разгонному блоку ракеты Falcon 9.
Решение этой задачи, как отметил Маск, оказалось неожиданно сложной вещью, особенно в контексте обеспечения безопасности экипажа. Вдобавок, последние исследования инженеров и ученых SpaceX показывают, что подобная стратегия посадки на Марс является неоптимальной с энергетической точки зрения, и что следующее поколение челноков и ракет стартапа будет использовать альтернативную систему посадки, расходующую топливо более экономно.
Отказ от создания системы посадки для Red Dragon, в свою очередь, или говорит о полном отказе SpaceX от этой миссии, или о значительной задержке в ее реализации. Это косвенно подтверждается тем, что Маск сейчас разрабатывает "обновленную" концепцию колонизации Марса, представленную в прошлом сентябре на Международном астронавтическом конгрессе в Гвадалахаре.
Эта концепция, как пояснил сам предприниматель, будет сфокусирована на создании универсальных космических кораблей, которые смогут одинаково эффективно решать задачи на орбите Земли и отправляться в полеты к Марсу. Это, как надеется Маск, поможет решить главную проблему колонизации Марса – накопить колоссальный объем средств, необходимых для реализации космических планов предпринимателя.
"Были когда-то и мы рысаками!!!"


tnt22

http://spaceflight101.com/spacex-cuts-plans-for-powered-dragon-landing/
ЦитироватьSpaceX cuts Plans for Powered Dragon Landings, places Focus on Commercial Crew
July 20, 2017

SpaceX decided against the company's previous plan of having their next generation Dragon spacecraft return to Earth via a powered landing to bring back cargo and crews fr om the International Space Station, company chief Elon Musk said on Wednesday at the International Space Station Research and Development Conference in Washington.
Спойлер

SpaceX Artwork of a Dragon Spacecraft touching down on Mars – Credit: SpaceX

Unveiling the design of SpaceX's Dragon 2 spacecraft in May 2014, Musk highlighted the craft's ability to make a pin-point landing atop a flat concrete pad using its powerful SuperDraco engines and four landing legs that would extend from the vehicle's protective heat shield. Initial Dragon 2 flights were planned to stick to the ocean-based splashdown landing technique used by the current generation of Dragon spacecraft, but SpaceX had hoped to inaugurate propulsive landings later in the program and use a similar landing technique for uncrewed Dragon spacecraft attempting a daring touchdown on the surface of Mars.


SuperDraco Engines to be used as Launch Escape Engines & Landing Thrusters – Photo: SpaceX

Elon Musk said on Wednesday that these plans would be abandoned, citing safety concerns & certification issues and questioning the usefulness of the landing scheme for SpaceX's Mars plans. Per the revised design, the four landing legs will be eliminated but Dragon 2 will retain the side-mounted SuperDracos that double as a launch escape system to boost the capsule away from a failing launch vehicle. The cargo version of the Dragon 2 will drop both, the SuperDracos and legs, as no propulsive launch abort capability is needed for cargo missions.

"It would have taken a tremendous amount of effort to qualify that for safety, particularly for crew transport," Musk said about the propulsive landing technique. "There was a time that I thought the Dragon approach, wh ere you've got a base heat shield and side-mounted thrusters, would be the right way to land on Mars. – Now, I'm pretty confident that is not the right way and there's a far better approach."


Dragon 2 Landing on ground-based pad – Image: SpaceX

Musk did not elaborate on the alternative approach, but his remarks seem to imply that SpaceX is abandoning plans of Red Dragon missions that would have seen a Dragon 2 vehicle launch on a Falcon Heavy rocket and land on Mars powered by the SuperDraco thrusters to deliver valuable data on retropropulsion in the tenuous Martian atmosphere and deploy an experiment suite to the surface to explore whether resources present at Mars could be effectively used for human settlement. NASA had expressed interest in the missions and offered technical assistance, communications and tracking support.

Plans for Red Dragon were made public last year for launch as early as 2018, but SpaceX President Gwynne Shotwell said earlier this year that the launch slipped to 2020. Although Musk did not directly address Red Dragon in his remarks, the elimination of Dragon's propulsive landing provisions, particularly the deployable legs, would rule out such missions.


SpaceX Interplanetary Transport System (Booster & Spaceship) – Credit: SpaceX


ITS Descending toward Mars – Image: SpaceX

Concerning SpaceX's Mars plans, Musk confirmed on Wednesday that the company had made significant revisions of their overall Mars architecture that was unveiled last year in a highly publicized presentation at the International Astronautical Congress in Mexico. This plan called for the development of a giant reusable Interplanetary Transport System consisting of a booster rocket, a tanker spacecraft, and a very large crew craft capable of ferrying several dozen passengers and cargo from Earth to the surface of Mars.

"It's evolved quite a bit since the last talk," Musk said of SpaceX's proposed Mars architecture. "The key thing that I've figured out is how to pay for this whole system to go to Mars. It's super expensive." To be financially viable, Musk said, the new system must be useful for Mars missions as well as activity in Earth orbit (i.e. through the deployment of commercial satellite constellations or servicing existing systems). This way, revenue would be generated by the craft's Earth-orbit services which in turn would finance the Mars effort.

"It's a little smaller, still big, but I think this one has got a shot at being real on the economic front," Musk said about SpaceX's upd ated Mars launch vehicle and spacecraft design. He said he might present more details at this year's International Astronautical Congress, held September 25-29 in Adelaide, Australia.

Musk said on Wednesday that primary focus is currently on the company's Dragon 2 spacecraft, progressing toward crewed missions by mid-2018 to begin services as part of NASA's Commercial Crew program to end reliance on Russia's Soyuz craft for the launch of ISS crew members.


Crew Dragon in Flight – Image: SpaceX

SpaceX holds a $2.6 billion contract awarded by NASA in 2014, covering final development work of the upgraded Dragon spacecraft and up to six crew rotation missions to ISS. Boeing holds a similar contract worth $4.2 billion and expects to complete the first crewed flight of their CST-100 Starliner spacecraft in the August 2018 time frame.

Both companies have fallen well behind the original plan of having Commercial Crew up and running by the end of this year. Musk noted much tougher NASA oversight for the crewed spacecraft than for the commercial cargo program. "As soon as people enter the picture, it's really a giant step up in making sure things go right," Musk said. "For sure, the oversight from NASA is much tougher. I thought it was tough for cargo, but it's really intense for crew."

One major precursor to crewed flights of the Dragon will be the debut of the Falcon 9 Block 5 version later this year – featuring another slight performance boost on its Merlin 1D engines as well as modifications enabling easy and quick re-use of the first stage for turnarounds of just 24 hours in between missions.

NASA requires seven flights of the Falcon 9 in a 'frozen design' to certify the vehicle for crew transportation. To date, SpaceX introduced new components and system modifications on a flight-to-flight basis in addition to Falcon 9 evolving through several larger design blocks.


Falcon Heavy at a highly modified Launch Complex 39A – Image: SpaceX

Elon Musk also used Wednesday's interview for a preview of the upcoming debut of the Falcon Heavy rocket, SpaceX's heavy-lift vehicle comprising three cores firing in unison with a second stage sitting atop the central core. Managing expectations for the rocket's first flight, Musk said "there's a lot of risk associated with the Falcon Heavy. There's a real good chance that vehicle does not make it to orbit. I want to make sure and se t expectations accordingly."

Musk explained that development of the Falcon Heavy turned out to be much more complex 'than simply strapping three Falcon 9 cores together.' Challenges arise from harnessing the power of 27 Merlin 1D engines that have to light up in a carefully controlled sequence to avoid excessive thrust-induced forces that could rip the rocket apart while still sitting on the pad. Another design challenge was within the central core of the Falcon Heavy stack, needing a major re-work of its structural air frame compared to a single-core Falcon 9 because of the massively powerful boosters sending their thrust force along with engine-related vibrations into the central core.

The next major watch item for the first Falcon Heavy flight will be the rocket's aerodynamic behavior, especially around the point of Maximum Dynamic Pressure as structural loads and aerodynamics have proven difficult to model, according to Musk, requiring a real-world test flight to obtain firm data. The separation of the twin booster cores is also a major unknown for the inaugural mission as there had been earlier concerns that the lack of separation rockets on the outer cores may pose a risk of contact with the center core during separation.


Image: SpaceX

If that were not enough, SpaceX will employ a pair of previously flown boosters as the two outer cores for the maiden Falcon Heavy voyage and aims to return them to landing pads at Cape Canaveral while the central core will target SpaceX's Drone Ship after dispatching the second stage toward orbit.

Schedule plans call for Launch Complex 39A to enter around two months of outfitting for Falcon Heavy once the Cape's Space Launch Complex 40 can be re-activated after last year's Falcon 9 testing mishap, currently looking at late August/early September for a resumption of launch operations. This would place Falcon Heavy's earliest rollout into November which will be followed by a period of on-pad testing that may include several static fire tests before clearing the rocket for its highly-anticipated mission.

"I encourage people to come down to the Cape to see the first Falcon Heavy mission," Musk said. "It's guaranteed to be exciting."
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Quoоndo

Кто-то мне проиграл пару тысяч долларов))

Quoоndo

Я уже не помню где и когда с кем на форуме спорил насчет Дрэгона марсианского)
Дай бог, чтобы пилотируемые Дрэгоны к МКС в следующем десятилетии регулярно залетали.)

tnt22

https://spaceflightnow.com/2017/08/18/spacex-informed-nasa-of-slowdown-in-its-commercial-mars-program/
ЦитироватьSpaceX informed NASA of slowdown in its commercial Mars program
August 18, 2017 Stephen Clark

Confirming rumors and suspicions that SpaceX is adjusting its plans to begin dispatching robotic landers to Mars, NASA officials said the commercial space company has informed the agency that it has put its Red Dragon program on the back burner.
Спойлер

Artist's concept of a Red Dragon spacecraft on the surface of Mars. Credit: SpaceX

Under the terms of a Space Act Agreement between NASA and SpaceX, the government agreed to provide navigation and communications services for the Red Dragon mission, which originally aimed to deliver an unpiloted lander to Mars in 2018. SpaceX confirmed earlier this year the launch of the experimental lander on a Falcon Heavy rocket had slipped to 2020.

But Elon Musk, SpaceX's founder and chief executive, said last month that the company is redesigning its next-generation Dragon capsule, a craft designed to carry astronauts to the International Space Station, to do away with the capability for propulsive, precision helicopter-like landings as originally envisioned. Returning space crews will instead splash down in the ocean under parachutes.

The Red Dragon is a robotic, unoccupied version of the Crew Dragon capsule. The concept publicized by SpaceX called for it to use side-mounted jet packs to slow down in the Martian atmosphere, then brake for a rocket-assisted touchdown.

But with that capability removed from the Crew Dragon, outsiders raised questions about the Red Dragon initiative. Musk has not specifically addressed the future of Red Dragon, and a SpaceX spokesperson did not respond to questions on the matter.

Jim Green, head of NASA's planetary science division, told Spaceflight Now in an interview that SpaceX has told the agency that it has "put Red Dragon back on the back burner."

"We're available to talk to Elon when he's ready to talk to us ... and we're not pushing him in any way," Green said. "It's really up to him. Through the Space Act Agreement, we'd agreed to navigate to Mars, get him to the top of the atmosphere, and then it was up to him to land. That's a pretty good deal, I think."

NASA officials said last year that the agency expected to spend about $32 million to support the Red Dragon program over a four-year period. That was expected to be around 10 percent of the total cost of the first Red Dragon mission, one NASA official familiar with the agreement said last year.

The Red Dragons would have delivered cargo and experiments to the Martian surface and tested supersonic retro-propulsion in the planet's rarefied atmosphere for the first time. NASA engineers say a rocket-braking mechanism like the Dragon's SuperDraco thrusters is needed to safely land heavy supply ships and crew vehicles on Mars.

The space agency signed up to support the privately-developed Red Dragon project to gather data on supersonic retro-propulsion officials said NASA would be unable to obtain until at least the late 2020s with a government-managed mission.

Musk wrote in a tweet that SpaceX has not abandoned supersonic retro-propulsion at Mars.

"Plan is to do powered landings on Mars for sure, but with a vastly bigger ship," he tweeted last month after the announcement that SpaceX is abandoning propulsive landings on the Crew Dragon.

Musk said his team at SpaceX is refining how the company could send people to Mars, eventually to settle there. He revealed a Mars transportation architecture in a speech at the 67th International Astronautical Congress in Guadalajara, Mexico, last year, but the outline has since changed.

A vision for gigantic interplanetary transporters Musk presented last year has been downsized, he said.

Musk said he will unveil the changes during a presentation in September at this year's International Astronautical Congress in Adelaide, Australia.

Launch opportunities from Earth to Mars come every 26 months or so, when the planets are aligned in their orbits around the sun to allow for a direct interplanetary trip.

"What I've said is, I'm ready," Green said. "When they contact us and say, 'Green, start a solution for going from here to Mars in 20-whatever,' then I'll do that."
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