Roscosmos announces two commercial tourist flights to ISS

Capitalism in space: Roscosmos, the government corporation that controls of all of Russia’s space industry, announced today that it will be flying two different commercial tourist flights to ISS, both occurring before the end of this year.

The first will take place in October.

Roscosmos [is] sending an actress and a director to the ISS in October with the aim of making the first feature film in space. The film, whose working title is “Challenge,” is being co-produced by the flamboyant head of Roscosmos, Dmitry Rogozin, and state-run network Channel One.

The second will take place in December, and will fly Japanese billionaire Yusaku Maezawa (the man who has already purchased a Moon mission on SpaceX’s Starship) and his assistant Yozo Hirano in a Soyuz capsule to ISS for twelve days.

Let’s review the upcoming tourist flights now scheduled:
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Senate committee mandates NASA award 2nd lunar lander contract

More crap from Congress: A Senate committee has approved a new NASA authorization that requires the agency to award a second lunar lander contract — in addition to the one given to SpaceX — even though that authorization gives NASA no additional money to pay for that second contract.

This provision was inserted by senator Maria Cantwell (D-Washington). Washington state also happens to be the state where one of the rejected companies, Jeff Bezos’ Blue Origin, is located. I wonder how much cash Bezos’ has deposited in Cantwell’s bank account.

This provision not only does not give NASA any cash to build two lunar landers, what NASA dubs the Human Landing System (HLS), it forces NASA to violate other laws.
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Company offers luxurious 3-day astronaut training vacations

Capitalism in space: For those considering spending millions to buy an orbital tourist flight from SpaceX, a new company, Orbite, is now offering for only $29,000 a three day high-end astronaut training vacation that will include a short zero-gravity flight on an airplane.

[CEO Jason] Andrews and Orbite’s other co-founder, French-born tech entrepreneur Nicolas Gaume, have set the schedule for astronaut orientation courses that’ll include virtual-reality simulations, a zero-G flight and a high-G flight — all designed to provide a taste of space without tying the participant down to a particular program.

The first session will take place Aug. 23-27 at La Co(o)rniche, a five-star boutique hotel on France’s Atlantic coast that’s owned by Gaume’s family. Three other sessions will be offered at the Four Seasons Resort in Orlando, Fla., starting on Nov. 11, Nov. 25 and Dec. 2. Each session is limited to 10 participants.

Zero Gravity Corp. and Europe’s Air Zero G by Novespace will fly the participants on airplanes that can provide measured doses of weightlessness, about 30 seconds at a time. Other subcontractors will put them in the cockpits of planes such as P-51 Mustangs or Extra 330LX’s, which can deliver multiple G’s of acceleration.

In essence these training sessions are nothing more than a dressed up expensive vacation, though surely unique.
None of this training will qualify someone to fly in space, but it will give potential orbital and suborbital customers a taste of what to expect, which should help them decide if they want to cough up the bigger bucks necessary for the real deal.

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More delays for Webb telescope?

An issue with the fairing release on the last two Ariane 5 launches has not only paused use of that rocket since August 2020, it might cause another delay in the planned October 31, 2021 launch of the James Webb Space Telescope.

In a statement to SpaceNews, Arianespace acknowledged that “post-flight analyses conducted on two recent Ariane 5 launches have indicated the occurrence of a less than fully nominal separation of the fairing, however with no adverse impact on the Ariane 5 flights in question.”

The company did not elaborate on the problem, but industry sources familiar with the issue said that, on both the August 2020 launch and the previous Ariane launch in February 2020, the separation of the faring induced vibrations into the payload stack well above acceptable limits. Neither incident damaged any of the payloads, but raised concerns about the effect on future missions, including JWST.

Moreover, Arianespace has two Ariane 5 launches on its schedule that are supposed to launch before Webb. If those are delayed it puts a further squeeze on the Webb launch date.

Meanwhile, the final checkouts of the Webb telescope have been proceeding, including a successful test of the unfolding of the telescope’s segmented mirror.

After a more than decade of delays and budget overruns — raising this telescope’s budget from 1/2 billion to $10 billion — it appears that Webb’s final schedule delay might occur not because of the telescope but because of the rocket.

In addition, the issue at Arianespace appears to be seriously impacting that company’s ’21 launch schedule, having failed to launch any Ariane 5 rockets so far this year.

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Rocket Lab launch on May 15 will attempt a second ocean recovery of 1st stage

Capitalism in space: Rocket Lab’s next planned launch on May 15th will attempt a repeat of the ocean recovery of their Electron rocket’s 1st stage, as they did after a November 2020 launch.

The goal of such work is to help transition the two-stage Electron from an expendable vehicle, as it was originally designed, to a rocket with a reusable first stage. And inspection of the recovered booster from “Return to Sender” suggests that this vision is no pipe dream. “We are more kind of bullish on this than ever before,” Rocket Lab founder and CEO Peter Beck said during a teleconference with reporters on Tuesday (May 11). “We reentered on a very aggressive corridor, we had no upgraded heat shield, and we still got [the booster] back in remarkable condition.”

Indeed, some parts of that rocket will fly again; the propellant pressurization system from the “Return to Sender” first stage has been incorporated into the “Running Out of Toes” Electron [launching May 15th], Beck said. [emphasis mine]

The highlighted words are quite remarkable. As far as I know, SpaceX never reused any part of a Falcon 9 first stage that was recovered in the ocean.

Rocket Lab also hopes to reduce any damage further by using new equipment on their ship for getting the stage out of the water. In addition, they have added heat shielding to the stage that should also reduce damage during its fall back to Earth.

Finally, on the next flight or so they will test something they are calling a “decelerator,” designed to slow the stage down during that fall. They are not saying what this decelerator is, which suggests it is some form of new engineering.

If all goes right, they hope to make the first snatch by helicopter of a first stage before it hits the ocean sometime next year.

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Martian glacial run-off?

Mosaic of glacial runoff
For original images click here and here.

Today’s cool image provides us a glimpse at the carved canyons created when the mid-latitude glaciers on Mars were active in the past and slowly flowing downhill into the section of the northern lowland plains dubbed Acidalia Planitia.

The photo to the right is a mosaic of two images taken by the context camera on Mars Reconnaissance Orbiter and rotated, cropped, and reduced to post here. The mosaic shows a region at the very edge of Acidalia Planitia at latitude 43 degrees north.

Below is a close-up of the area in the white box, taken by MRO’s high resolution camera on February 28, 2021, as well as a global map marking the location of this image at the very edge of the glacier country found in the chaos terrain of Deuteronilus Mensae.
» Read more

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SpaceX to refly Starship prototype #15 next?

Capitalism in space: SpaceX has rolled Starship prototype #15 to the launchpad in an apparent bid to immediately send it on its second flight, only two weeks after its first successfully 30,000 foot flight.

While SpaceX has yet to actually install Starship SN15 on Mount B, the prototype has been attached to a crane and said installation is imminent – possibly just waiting for winds to die down. As of publishing, SpaceX has removed SN15’s six ‘used’ landing legs but hasn’t replaced them – a necessary step before the Starship can fly again.

…It’s worth noting that even after SpaceX reinstalls Starship SN15 on a launch mount, there’s no guarantee that the prototype will fly again. Before any reflight, SpaceX will almost certainly put the rocket through at least one additional tank proof test and static fire its Raptor engines. Issues or damage that escaped initial post-flight inspections could easily arise during that process and it’s more likely than not that one or more of SN15’s three Raptors will be removed for detailed inspection or replaced outright.

If this prototype does fly next, the next question will be how high and how far. My guess would be that they will fly it to a much higher altitude to further refine the spacecraft’s flight capabilities on return. It makes no sense to simply repeat the last flight. Now is the time to push the design again, even if it means the loss of the prototype.

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NASA: Commercial demand exceeds supply at ISS

Capitalism in space: According to NASA officials, the number of private commercial tourist flights being proposed exceeds the availability of docking ports at ISS.

“We are seeing a lot of interest in private astronaut missions, even outside of Axiom,” said Angela Hart, manager of commercial low Earth orbit development at NASA’s Johnson Space Center. “At this point, the demand exceeds what we actually believe the opportunities on station will be.”

Opportunities for private astronaut missions are limited by what NASA calls the “traffic model” for the ISS, or the schedule of vehicles arriving and departing the station. Commercial crew missions are limited to two docking ports on the station, one of which is occupied by the vehicle that transported the current long-duration crew on the station. The other is used by commercial crew vehicles during crew handovers, cargo Dragon missions and private astronaut missions.

That restricts the opportunities for private astronaut missions. “About two is about all you fit in there with the rest of the traffic,” Dana Weigel, deputy manager of the ISS program at JSC, said.

The solution should be obvious to all. Private launch companies that wish to use ISS have to launch either their own docking ports, or their own modules with docking ports. This is Axiom’s plan, with its own module scheduled to arrive sometime in ’24. A secondary solution would be for private companies to launch their own space stations, independent of ISS. This would not only sidestep the problem of the bottleneck at ISS, it would free such a company from the charges NASA imposes for using ISS.

Meanwhile, it appears that Axiom is countering those new NASA’s charges for its ISS flights. From the article:

Thanks to an exchange of services between NASA and Axiom, it will actually be NASA paying Axiom for the Ax-1 mission. While Axiom is acquiring services such as crew supplies and on-orbit resources, NASA will be purchasing “cold stowage” space on the Crew Dragon spacecraft to return cargo to Earth at the end of the mission. NASA will pay Axiom $1.69 million for the mission, although Hart noted there will be other charges to Axiom for training and launch services, some of which are still being negotiated.

Suffredini said that, on later missions, Axiom will seek to reduce its reliance on NASA services. “We have a goal that, by after our third flight, we will provide all of those kinds of capabilities” that it is currently purchasing from NASA.

I wonder if that third flight will occur after the launch of Axiom’s module.

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A crater with wings!

A crater with wings!
Click for full image.

Cool image time! The photo to the right, cropped and reduced to post here, was taken on April 5, 2021 by the high resolution camera on Mars Reconnaissance Orbiter (MRO), and shows a particularly unusual crater in the southern mid-latitudes on the eastern edge of Hellas Basin.

This region east of Hellas is where scientists have spotted many features that suggest buried glaciers. The terraced material inside this crater, as well as the splattered material surrounding it on three sides, are examples of such glacial material. You can also see similar glacial features, though less pronounced, inside the crater to the north.

The global map of Mars below marks the general location of this crater by a blue cross.
» Read more

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The atomic hydrogen in Mars’ atmosphere

Atomic hydrogen in Mars' atmosphere, as seen by Al-Amal

The two photos to the right, cropped and reduced to post here, were taken by the ultraviolet spectrometer on the UAE Mars orbiter Al-Amal (“Hope” in English) on April 24 and April 25.

During the 10 hours 34 minutes between the images, the Hope probe moved from being over the planet near noon and viewing the entire dayside (top) to being over the planet at dusk and seeing both the day and night side (bottom). These images will be used to reconstruct the 3D distribution of hydrogen and learn more about its production through the process of splitting water molecules by sunlight and its eventual escape to space.

This data will eventually allow scientists to more precisely measure the total water loss to space that Mars’ experiences annually, which will also allow them to determine approximately how much water the planet has lost over the eons.

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A look at Ingenuity’s legs

Link here. This update, written by Bob Balaram, the helicopter’s chief engineer at JPL and Jeremy Tyler, senior aero/mechanical engineer at AeroVironment, outlines the engineering that went into building the helicopter’s legs in order to make sure they could withstand the somewhat hard landings required in the Martian environment.

To withstand these firm landings, Ingenuity is equipped with a cushy suspension system, [with a] distinctive open hoop structure at each corner of the fuselage where the landing legs attach. The lower half of this hoop is a titanium spring that can bend as much as 17 degrees to provide 3.5 inches of motion in the suspension, while the upper half is a soft non-alloyed aluminum flexure that serves as the damper or “shock absorber.” By plastically deforming and fatiguing as it absorbs energy, this flexure acts much like the crumple zone structure of a car chassis. However, unlike a car or the crumple-cushioned landing gear of the Apollo moon landers, Ingenuity’s titanium springs rebound after each impact to pull these aluminum dampers back into shape for the next landing.

The aluminum damper gets a little bit weaker with each cycle as cracks and creases develop. While it would eventually break after a few hundred hard landings, with only a few flights scheduled for this demonstration, that’s a problem we could only dream of having.

This is most likely the failure point that will end Ingenuity’s life, though at the present it is a bit in the future.

Also, the post reveals that JPL subcontracted much of the development of Ingenuity to this company.

AeroVironment designed and developed Ingenuity’s airframe and major subsystems, including its rotor, rotor blades, and hub and control mechanism hardware. The Simi Valley, California-based company also developed and built high-efficiency, lightweight propulsion motors, power electronics, landing gear, load-bearing structures and thermal enclosures for NASA/JPL’s avionics, sensors and software systems.

Good ol’ American capitalism does it again.

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Virgin Galactic reveals issue with WhiteKnightTwo

Capitalism in space: On the same day that Virgin Galactic unveiled a $130 million loss in its first quarter report, it also announced that it might have to delay the next flight of its Unity suborbital spacecraft because of an undisclosed “wear-and-tear issue” on its carrier airplane.

From the second link:

[Mike Moses, president of space missions and safety], in response to later questions from analysts, did not disclose the specific component of the aircraft that was at the heart of the issue, but described it as a “family of items that relate to fatigue and long-term stress” of the airplane. It was not an issue with the number of flights of VMS Eve, which first flew in 2008 and has made fewer than 300 flights since.

Engineers are currently examining the plane to determine if additional maintenance is needed now to correct that problem, with an update expected next week. Virgin Galactic had planned to perform work on the plane this fall during a downtime that would also include work on VSS Unity, but Moses said engineers are now looking at whether some of that work needs to be moved up.

If maintenance is needed now, it would delay the schedule of flight tests for SpaceShipTwo, but Moses said it was “a little too early” to know how long that would be.

They had previously announced that the next flight would be in May. They will decide in the next week whether to delay it.

Meanwhile, the company’s stock price continues to tumble, dropping from a high of about $62 earlier this year to a low of about $14 today. And I would say that the price is still over-priced. The path to profit for Virgin Galactic has become extremely narrow, with few options and not much margin, especially with Blue Origin now only two months away from its first commercial suborbital tourist flight.

Richard Branson started Virgin Galactic shortly after the SpaceShipOne won the Ansari X-Prize in 2004, promising hundreds of commercial passenger flights per year in only a few years. Seventeen years later no such flights have ever occurred. Worse, not only will Blue Origin likely do the first commercial suborbital flight first, SpaceX and Axiom are likely to complete the first orbital tourism flights before Virgin Galactic.

No harm to Branson however. He has sold off most of his stock in the company, and did it when its price was still high.

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