India’s manned space program

This short article gives us a short but detailed look at India’s plans for manned space, describing both the first test flight of a engineering version of their manned capsule in a little more than a month and the program’s overall goals.

The test flight:

“The first test trial, that of the crew module, will be undertaken in November last week or December first week on the GSLV MK-III,” [Isro chairman K Radhakrishnan told Deccan Herald.] The crew module will be injected into orbit by the GSLV at a height of 110-120 km in space from where it will fall towards the earth and be recovered from sea. Isro will examine how the crew module and thermal shield around it handle the heat and temperatures during re-entry into the earth’s atmosphere.

Their eventual goal is to put two astronauts in orbit for seven days. To do that they will first have to complete at least four to six test launches of their new GSLV MK-III rocket, which has only completed one successful launch after literally two decades of failures. If successful, the test flight described above will be GSLV’s second successful launch.

Note that because of poor writing the article gives the improper impression that the test flight will be manned. It will not. Also, the article states incorrectly that the space shuttle Columbia broke up during re-entry because “the thermal heat shields could not withstand the heat.” This is false. The heat shield would have worked fine, as it had done on numerous previous launches, except that there were gaping holes in it that were put there by pieces of foam during launch.

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Next Angara test flight in December

The competition heats up: According to one Russian official, the next test flight of Russia’s new Angara rocket will take place before the end of December.

Another Russian news story says that the Angara test program will involve ten flights and that the target cost for the rocket’s most powerful configuration will be around $100 million. Depending on how much payload this configuration can put in orbit, this price makes it very competitive with SpaceX’s Falcon 9 and Falcon Heavy.

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Another failure for Russia’s Proton rocket?

Unconfirmed sources today are suggesting that Tuesday’s Proton launch of a Russian communications satellite placed the satellite in the wrong orbit.

A report appearing on NASASpaceFlight (NSF) has indicated that while the initial phase of the launch of the Russian Ekspress AM-6 telecommunications satellite might have gone off as planned – the later stages of the mission were less than perfect. NSF’s Chris Bergin reported via Twitter that, although the spacecraft had been placed into the wrong orbit – it should be able to be placed into the correct orbit over time. How much time and what the exact cause as to why the satellite may have been placed into an improper orbit – have yet to emerge. In fact, officials within the Russian space industry have stated that the spacecraft is, in actuality, in the correct orbit.

If these sources are correct it will be a very bad problem for Russia’s aerospace industry, now consolidated into a single giant corporation run by the central government. Proton has had numerous failures in the past three years, all caused by serious quality control problems in Russia’s entire space industry. Another failure here will only add weight to this conclusion.

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India begins tests of larger rocket engine

The competition heats up: Indian engineers have successfully completed their first tests of a new more powerful upper stage engine for their biggest launch rocket.

Taking a big step forward in the development of bigger and more powerful locally-built rocket engines, the Liquid Propulsion Systems Centre (LPSC) on Monday successfully conducted the first ‘cold flow test’ on the CE-20 cryogenic engine, which will power the upper stage of the Geosynchronous Satellite Launch Vehicle-Mk III (GSLV-Mk III). “It’s a milestone,” LPSC director Dr K Sivan told ‘Express’ here on Tuesday, confirming that the test had gone as planned at the LPSC facility in Mahendragiri, Tamil Nadu. The first ‘hot test’ – where the engine will be fired for a few seconds- will be performed in three weeks’ time, Sivan said.

In a cold test, the propellants are not ignited. On Monday, the fuel, Liquid Hydrogen (LH2), and the oxidiser, Liquid Oxygen (LOX), were injected into the chambers for the checking of various parameters.

In related news, Mangalyaan has taken another global view of Mars.

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China to launch two payloads to the Moon

The competition heats up: On Thursday China plans to send a capsule on a mission around the Moon and back to Earth to test its heat shield.

The rocket’s upper stage, which will also round the Moon but not return to Earth, will also carry a privately funded cubesat designed to study the radiation levels during the entire journey.

Twenty minutes after launch on October 23, (at 1:59 p.m. U.S. Eastern time), the Long March’s upper stage will separate from the test capsule, and both will continue on a trajectory that takes them around the moon. The capsule will return to re-enter Earth’s atmosphere on October 31. In early discussions with the Chinese, LuxSpace was told that the upper stage [carrying the private cubesat] would re-enter the atmosphere as well, but it’s now expected to enter a wide, looping orbit around Earth. The main battery is only designed to last 10 days, although it may go longer.

Radio receivers on Earth will be able to tune in to 4M’s signal shortly after separation, and will be able to follow it as it rounds the moon, coming as close as 7,500 miles to the surface. The payload also includes a radiation sensor that will take measurements throughout the journey into Earth-moon space. Anyone with the proper equipment will be able to receive the compressed radiation data and decode it.

Though this private mission is definitely breaking new ground by sending a small payload to lunar space for very little money, the article is incorrect when it states that this is the first privately funded Moon mission. In 1997-1998 HGS 1, a Hughes commercial communications satellite that was placed in an incorrect orbit by a Russian rocket, was sent on a wide elliptical orbit to fly past the Moon twice and thus use this sling shot effect to get the satellite into a usable orbit.

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Virgin Galactic outlines near term test flight schedule

The competition heats up: In a newspaper interview, the CEO of Virgin Galactic has outlined the company’s flight plans for SpaceShipTwo in the coming months, leading hopefully to its first commercial flights.

“We expect to get to space altitude in a short number of flights, assuming the rocket performs as expected,” Whitesides told the Journal. “Scaled made it to space in four flights with SpaceShipOne. I believe it will be a little more than that for us, but not dramatically so.”

Once SpaceShipTwo successfully reaches space, Scaled Composites will turn over the rocket to Virgin Galactic for its commercial operations based in New Mexico. Virgin has already taken control of the mothership, which it flew to Spaceport America for some initial test operations in September. “Once we take control of SpaceShipTwo, we expect to do some more testing here in New Mexico, but that will primarily be efficiency testing rather than technology testing,” Whitesides said. “It will give pilots an opportunity to train at this airfield after Mojave to practice things like coming in on final approach.”

As much as I have expressed strong skepticism in recent months of Virgin Galactic’s promises, I truly hope this happens, and soon.

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Sierra Nevada fights back

The company that wants to build Dream Chaser has filed a lawsuit to prevent NASA from proceeding with its contracts with Boeing and SpaceX.

When Sierra Nevada had first protested the contract awards, NASA had first suspended work, then decided to allow work to go forward. This lawsuit is to prevent that from happening until after Sierra Nevada’s protest is resolved.

Here’s what I think is happening: Sierra Nevada has said it is going to submit a bid to NASA for the agency’s second round of cargo flights to ISS, proposing Dream Chaser as one of those unmanned freighters. By playing hard ball now with the manned contact awards, the company is creating leverage with NASA. Though no one can say this publicly, I am sure they are making it clear privately that if they get picked for the cargo contract, they will drop both their lawsuit and protest.

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Another succesful rocket launch for India

The competition heats up: India today successfully launched the third of seven home-built GPS satellites.

The head of ISRO, India’s NASA, also noted after the launch that the next test flight of their much larger GSLV rocket should occur within the next six weeks. If things go as expected, that flight will also include a test flight of an engineering prototype of an India-built manned capsule.

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Update on Bigelow’s ISS module

This article is a nice overview of Bigelow’s planned inflatable module for ISS, due to launch next year, and includes some good images.

I found this paragraph especially intriguing:

Earlier this year, Bigelow announced how much it’ll cost you to spend some time inside the BA 330 when it launches. Expect to pay $25 million for a sixty day lease of one-third of the station — if you can get yourself there and back. Should you need a ride, round-trip taxi service between SpaceX and your local launching pad will run you an additional $26.5 million.

That’s a total cost of just over $50 million for a sixty day stay in space.

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Why NASA picked Boeing over Sierra Nevada

A NASA internal document obtained by Aviation Week outlines the agency’s reasons for rejecting Sierra Nevada and its Dream Chaser spacecraft in its commercial manned space program.

Although the document praises Sierra’s “strong management approach to ensure the technical work and schedule are accomplished,” it cautions that the company’s Dream Chaser had “the longest schedule for completing certification.” The letter also states that “it also has the most work to accomplish which is likely to further extend its schedule beyond 2017, and is most likely to reach certification and begin service missions later than the other ‘Offerors’.”

Discussing costs, Gerstenmaier says that “although SNC’s [Sierra Nevada] price is lower than Boeing’s price, its technical and management approaches and its past performance are not as high and I see considerably more schedule risk with its proposal. Both SNC and SpaceX had high past performance, and very good technical and management approaches, but SNC’s price is significantly higher than SpaceX’s price.”

The document essentially was written, and probably leaked to the press now, to justify the political decision to give the contracts to Boeing and SpaceX. Thus, it waxes very enthusiastic about Boeing, since giving Boeing the contract, with the highest price and the least metal cut, needs some justification.

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Orbiting X-37B to land on Tuesday

After twenty-two months in orbit, on its second space mission, the Air Force plans to bring the X-37B back to Earth this coming Tuesday.

The exact time and date will depend on weather and technical factors, the Air Force said in a statement released on Friday. The X-37B space plane, also known as the Orbital Test Vehicle, blasted off for its second mission aboard an unmanned Atlas 5 rocket from Cape Canaveral Air Force Station in Florida on Dec. 11, 2012. The 29-foot-long (9-meter) robotic spaceship, which resembles a miniature space shuttle, is an experimental vehicle that first flew in April 2010. It returned after eight months. A second vehicle blasted off in March 2011 and stayed in orbit for 15 months.

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Yutu is slowly dying

China’s lunar rover Yutu, unable to move since its first few weeks on the moon, is slowly dying.

The rover is currently in good condition and works normally, but its control problem persists, said Yu Dengyun, deputy chief designer of China’s lunar probe mission. “Yutu has gone through freezing lunar nights under abnormal status, and its functions are gradually degrading,” Yu told Xinhua at an exclusive interview. He said that the moon rover and the lander of the Chang’e-3 lunar mission have completed their tasks very well. The rover’s designed lifetime is just three months, but it has survived for over nine.

As China’s first planetary rover mission, the limited roving success of Yutu is well balanced by its ability to continue functioning on the lunar survey for so long. The engineering data obtained from this mission will serve Chinese engineers well as they plan future missions.

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SpaceShipTwo poised for powered test flights

Virgin Galactic officials outline the status of SpaceShipTwo, suggesting that powered flight tests are finally about to begin.

Providing a rare glimpse of progress on a second spacecraft under assembly at sister organization, The Spaceship Co., Virgin Galactic Vice President of Operations Mike Moses says, “we are ready for space.” A former NASA launch integration manager for the space shuttle, Moses adds that SS2 “has been in modification, getting retrofitted ready to resume powered flights.” He notes that “those are going to start imminently—literally very imminently.”

Commenting on the extensive gap between now and the last rocket flight in January, Moses says, “It might seem a long time since our last powered flight-testing and that maybe nothing has been happening, but [ground testing] has been happening.” Tests have largely focused on ground-firings of a hybrid rocket motor fueled with polyamide-based plastic in place of the hydroxyl-terminated polybutadiene, a form of rubber used for the first series of powered tests. Although this fuel had been used successfully in SpaceShipOne, the vehicle developer Scaled Composites and Virgin Galactic encountered fuel-burn stability and power issues as they tried to scale the Sierra Nevada Corp.-provided hybrid motor up to the size required by the larger SS2.

It appears my guess was right and that the last two glide tests were to retrofit SpaceShipTwo for the new fuel and engine. This has now been accomplished, and they are preparing to begin powered flight tests.

The article also describes work on a second SpaceShipTwo, which when completed will give Virgin Galactic the beginnings of a fleet of ships.

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