A streamlined Arianespace to build Ariane 6?

The competition heats up: The merged Airbus/Safran rocket division has surprised the European Space Agency with a proposed new design for Ariane 6.

The Airbus-Safran proposal, if carried to its logical end, would mean a single company building Ariane vehicles, with fewer subcontractors and much less government oversight. It would likely mean the end of the CNES launcher division as industry takes more control of Ariane design and operations.

In other words, the contractors who build the rockets for ESA want more power over that construction. They want less government oversight, and more ownership of the rocket they build.

Sounds like what’s happening in the U.S., doesn’t it? Giving ownership to the rocket builders means they not only have more flexibility and thus can be more efficient, it makes it easier for them to innovate in both construction and sales.

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Rosetta measures its comet

As Rosetta approaches Comet 67P/Churyumov-Gerisimenko, it has measured the amount of water evaporating of the comet as it slowly comes to life as it approaches the Sun.

ESA’s Rosetta spacecraft has found that comet 67P/Churyumov–Gerasimenko is releasing the equivalent of two small glasses of water into space every second, even at a cold 583 million kilometres from the Sun. The first observations of water vapour streaming from the comet were made by the Microwave Instrument for Rosetta Orbiter, or MIRO, on 6 June, when the spacecraft was about 350 000 kilometres from the comet. Since the initial detection, water vapour has been found every time MIRO has been pointed towards the comet.

That rate of evaporation will increase with time.

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Another launch success for India

The competition heats up: Using its Polar Satellite Launch Vehicle rocket (PSLV) India successfully launched a French Earth-observation satellite on Monday.

The PSLV continues to be a very reliable commercial rocket for India’s government. That this launch was also witnessed by India’s new prime minister Narendri Modi — who also endorsed his country’s space effort in a public tweet — suggests that India’s space effort has a very bright future.

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Update on the LDSD partly successful test flight

Another eleven news stories were published today on the LDSD test flight (go here to find them all), but only two gave an honest and informative appraisal of the parachute failure and the program’s future. This CBS report clarified the results well with these two quotes:

The Low-Density Supersonic Decelerator then fell toward impact in the Pacific Ocean northwest of Hawaii. The carrier balloon apparently came apart after the LDSD’s release and it was not immediately clear what recovery crews standing by in the landing zone might be able to retrieve.

and this:

Two more LDSD vehicles are being built for “flights of record” next summer.

Another report from Space Insider also provided this key information, something I would have expected every journalist in the world to have considered essential to their report.

Sadly, not one of the other news stories saw fit to mention that the test vehicle might have been destroyed because of the failure of the chute, nor did any of them bother to report that two more such test vehicles are under construction, allowing program to continue anyway.

That so many news stories were published on this test flight indicates the interest that exists in it. Too bad most reporters writing these stories were only interested in providing us propaganda and pro-NASA cheer-leading.

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First test flight of Angara is officially postponed

It’s official: The first flight of Angara has been postponed for at least a week or more.

“The rocket will be removed from the launchpad and transferred to a technical stand for comprehensive analysis,” RIA quoted the Khrunichev center as saying, adding the new launch time would only be decided after the checks.

Though no information was released that describes the cause of the scrub, that they are going to give the rocket a major look-over suggests that at least one of the problems reported by Anthony Zak at Russianspaceweb are likely true. To quote him again:

According to a veteran of Baikonur Cosmodrome and the Russian space historian Vladimir Antipov, the scrub at that moment could indicate a failure in the pneumatic and hydraulic system activating the rocket’s propulsion system. A screenshot of the launch countdown clock, which had surfaced on the Internet, indicated a scrub at T-1 minute 19.7 seconds. It then transpired that the loss of pressure in a flexible gas line of the propulsion system caused the delay.

It could take as long as a week to fix the problem, industry sources said on the Novosti Kosmonavtiki web forum. GKNPTs Khrunichev, the Angara’s manufacturer then posted a one-line press-release saying that the date of the next launch attempt would be announced later.

According to other sources, a valve on the oxidizer line failed, which could require to return the rocket to the assembly building, to cut out the device and weld in the new valve. Due to a built-in nature of the valve, the return of the rocket to the manufacturing plant in Moscow could also be required, likely postponing the mission for weeks.

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A flawed first flight for NASA’s saucer for testing Mars landing techniques.

NASA’s Low-Density Supersonic Decelerator (LDSD), the saucer shaped system for testing new landing techniques on Mars, did its first flight today with mixed results.

A saucer-shaped NASA vehicle testing new technology for Mars landings rocketed high over the Pacific on Saturday and deployed a novel inflatable braking system, but its massive parachute failed to fully unfurl as it descended to a splashdown. Control room cheers that greeted successful steps in the complex test rapidly died as the parachute appeared to emerge tangled. “Please inform the recovery director we have bad chute,” a mission official ordered.

I have found two other stories on this test flight, one from nasaspaceflight and the second from reuters. Both the Huffington Post story above and these two fail entirely to tell us whether the test vehicle was damaged when its parachute failed to open and it hit the water. Worse, all three articles seem to ignore this significant detail in describing enthusiastically NASA’s future plans for the LDSD.

As a reader, I instead think: NASA’s future plans are not the story now. The story is whether this program can even continue.

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An contract extension from NASA for SpaceX and Sierra Nevada

NASA has given SpaceX and Sierra Nevada six additional months, until March 2015, to complete their last contractual milestones for building their manned spacecraft.

An amendment signed by William Gerstenmaier, NASA’s associate administrator for human exploration and operations, on May 16 gives SpaceX until March 31, 2015, to complete the 14th and final milestone under its $440 million CCiCap agreement — a pad abort test of its Dragon capsule. The test originally was planned for April 2014.

On May 19, Gerstenmaier signed a similar amendment to Sierra Nevada’s $212.5 million CCiCap award to extend work associated with flight tests of the company’s Dream Chaser engineering test article until March 31, 2015.

NASA’s third Commercial Crew partner, Boeing, is on track to complete all its milestones, worth a combined $460 million, by the end of August,

The significance of this extension is that it reveals something about the dates for both SpaceX and Sierra Nevada’s next flight tests. The previously date for the pad abort test for Dragon had most recently been set for this summer. They are obviously not meeting that schedule and need more time. Sierra Nevada meanwhile wants to fly its Dream Chaser test vehicle some more, but apparently needs time to get it flight ready after it sustained damage during landing on its one and only flight test.

In addition, this extension suggests something about NASA’s assessment of the efforts of all three companies. The agency is supposed to down select to two companies by the end of the summer. The extension suggests that they are hoping to keep all three companies funded so that they all build their spacecraft.

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Communications to be lost with the Stereo spacecraft

Communications with the two solar-observing Stereo spacecraft will be cut off for more than a year, far longer than originally expected, as their orbits move them behind the Sun.

Unexpectedly high temperatures in the high gain antenna feed horns on both STEREO spacecraft will require corrective action in the coming months that will severely limit science operations. The high temperatures are being caused by the small angle between Earth and the Sun as seen from each spacecraft. In other words, pointing the antenna at Earth is putting too much solar heat on the antenna feed horn. To bring down the feed horn temperature, and preserve the spacecraft for years to come, the antennas will be pointed off at an angle from both Earth and the Sun, so that less heat will fall on the feed horns. Communication will still be possible using one of the antenna side lobes, but the telemetry rate will be extremely low. What instrument operations can be supported while the antennas are off-pointed is still being studied.

The spacecrafts’ orbit allows them to observe the back side of the Sun not visible from Earth. Though engineers had expected to lose communications for a period of time when the Sun moved between the spacecraft and the Earth, the blacked out time period has turned out to be much longer than planned. The shutdown will begin later this year with communications not resuming until January 2016.

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