Showing posts with label Lunar Landing. Show all posts
Showing posts with label Lunar Landing. Show all posts

Friday, August 31, 2012

Neil Armstrong Loved Charts



I am, and ever will be, a white-socks, pocket-protector, nerdy engineer, born under the second law of thermodynamics, steeped in steam tables, in love with free-body diagrams, transformed by Laplace and propelled by compressible flow.

Neil Armstrong

Neil Armstrong loved charts. RIP.

 

Sunday, August 26, 2012

Neil Armstrong Tribute - YouTube



Neil Armstrong, the first man to walk on a world that was not Earth, has died. Getting his pilot's license before his driver's license probably didn't hurt when it came to becoming one of the world's most famous men - certainly the world's most famous space man.

A remarkable man who was able to accomplish many great things, his legacy is far larger than himself - he became a symbol of our greatest accomplishments and it is very sad to now be in a world without him.

Sad Loss of the most famous US Astronaut in History - Neil Armstrong

"I am, and ever will be, a nerdy engineer," Neil Armstrong once said, trying to downplay any suggestion that he was some sort of modern icon or superman. 

After making history in 1969 as the first person to walk on the moon, he spent much of the rest of his career out of the limelight and leading a quiet, modest life.

But his achievements were never, and will never, be forgotten. 

On hearing the news of Armstrong's death, President Obama said: "He was a hero not just of his time, but of all time."

Let us all celebrate the life of one of history's most acclaimed yet unassuming pioneers.

A footprint left by Neil Armstrong on the surface of the moon on 20 July 1969. 

The Apollo 11 astronauts - Neil Armstrong, Michael Collins and Edwin E. Aldrin, Jr - were launched to the moon by a Saturn V rocket on 16 July in Houston, Texas.

A photograph of Neil Armstrong taken by Buzz Aldrin on their way back from the moon.

Monday, June 4, 2012

Fashioning Apollo: How the Spacesuit was Developed, Against the Odds

"On July 12, 1969, only 21 layers of fabric, most gossamer-thin, stood between Neil Armstrong and Buzz Aldrin and the lethal desolation of a lunar vacuum."

So begins UC Berkeley architecture professor Nicholas de Monchaux’s Spacesuit: Fashioning Apollo — a fascinating voyage into the sartorial history of space flight through the parallel history of one of its key technologies: the spacesuit.

Blending material science, iconic photography, and intriguing trivia (did you know that the Apollo mission’s computer-backup system was crafted into a binary pattern that was then physically woven into ropes?), the book itself is cleverly constructed as a series of layers corresponding to the 21 layers of the Apollo spacesuit.

Monday, January 23, 2012

NASA, ESA, Roscosmos: Agencies Aim at Building Lunar Station

Moon colonies may exist for the next generation if officials with international space agencies have their way, according to reports.

Russian Space Agency Roscosmos officials said they are currently negotiating with NASA and the European Space Agency to build a visitors site on the moon.

"We don't want the man to just step on the Moon," Roscosmos Chief Vladimir Popovkin said Thursday during a radio interview, according to RIA Novosti, the Russian newswire.

"Today, we know enough about it, we know that there is water in its polar areas," he said, adding "we are now discussing how to begin [the Moon's] exploration with NASA and the European Space Agency."

The lunar base isn't the only option - another idea officials are floating would include a station that would orbit around the moon.

The colony would need an advanced manned transportation system, one that is currently under development, the Roscosmos chief said.

Beyond a possible moon station, Popovkin said Russian officials also plan to send two unmanned missions to the Moon by 2020, the Luna Glob and the Luna Resource.

The Global Exploration Roadmap, published in September by the International Space Exploration Coordination Group, outlined a timeline for lunar exploration.

The timeline doesn't give a direct estimate of when a lunar colony may become a reality, but the document, formed in conjunction with 14 international space agencies, estimates that it won't be until 20 years or more.

One of the greatest challenges with exploring or even colonizing the moon is: "Expenses associated with extended surface activities," according to the document.

U.S. and Russian space agencies have talked about developing a permanent lunar outposting since the 1950s, according to RIA Novosti.

Friday, August 26, 2011

Moon Express Gets Thumbs-Up from NASA for Developing New Lunar Landing Technology

Moon Express, a Google Lunar X PRIZE contender, announced that it has successfully demonstrated a critical component of its lunar landing technology to NASA under its Innovative Lunar Demonstration Data (ILDD) Program contract.

The Moon Express Mini-Radar System promises to radically reduce the cost and mass of the company's commercial lunar landing system.

NASA has reviewed and accepted the Moon Express Mini-Radar data package, satisfying the requirements of the $500K First Task Order under the company's $10M commercial lunar data contract.

Silicon Valley-based Moon Express was one of only three U.S. companies awarded the first Task Order under NASA's ILDD program. Under the task order, NASA agreed to purchase data resulting from the successful test and demonstration of the company's state-of-the-art Mini-Radar sensor, a critical component of its lunar landing system.

Radar provides autonomous landing spacecraft with crucial ranging information to the surface and has been one of the most challenging and high risk elements of all lander systems.

Radar systems have also been historically very expensive in terms of dollars, mass and energy. As part of its risk reduction engineering activities, Moon Express initiated a program to continue the development, test and space qualification of an innovative, low cost, low mass, low energy radar concept invented by Stellar Exploration that showed great promise through progressive developments under NASA Small Business Innovation and Research (SBIR) programs.

The Moon Express investment significantly advanced the radar technology toward spaceflight readiness.

The testing and space validation of the Mini-Radar involved multiple units subjected to a series of laboratory and field testing.

These included multiple dynamic tests on the Lunar Lander Test Vehicle, developed in partnership with NASA, and long range tests on the Zeppelin 'Eureka', owned and operated by Airship Ventures, which took the Mini-Radar on flight tests down the California coast and at the Oshkosh Airshow.

Additional environmental testing in thermal-vacuum and vibration chambers proved the ruggedness of the Mini-Radar design for spaceflight.

Wednesday, August 3, 2011

Did the Earth Have Two Moons?

A paper just published in the journal Nature speculates that our home planet may have just one lonely moon now, but long ago, like Mars and Sylvia, we had two.

"Whether it's right or not, I don't know," says Maria Zuber, a planetary scientist at MIT who wrote an opinion piece accompanying the new study. "But I think it's very plausible."

The idea, cooked up by astronomers Martin Jutzi and Erik Asphaug, of the University of California at Santa Cruz, started out as an attempt to explain why our moon has so asymmetrical a surface.

The part that faces us is relatively smooth, with vast expanses of ancient lava forming flat, dark, low-lying plains that earlier astronomers mistook for oceans but when space probes first circled the moon in the early 1960s, scientists learned that the far side is mostly covered with rugged mountains and craters.

Nobody has ever been able to explain with certainty why the moon should be so lopsided: maybe it had to do with some kind of massive impact that violently rearranged the surface, much like what happened to the asteroid Vesta.

Maybe it was a slightly off-center core that caused the crust to be thinner on the Earth-facing half of the moon, which made that hemisphere more susceptible to lava bleeds.

But then Jutzi and Asphaug began thinking. "It looked to us a little bit as though the highlands on the far side accreted" — which is to say, they were added on top of the pre-existing surface.

The astronomers thought a bit more, and realized that this idea was consistent with scientists' beliefs about how the moon formed in the first place. Thanks to the analysis of moon rocks that were brought back by the Apollo missions, planetary scientists are pretty sure that our satellite was born billions of years ago when a Mars-size planetoid smashed into the young Earth.

The impact blasted off a cloud of debris from both of the objects and sent it spinning into space, where it eventually congealed into the moon. There could have been other, smaller pieces as well, says Zuber, but their orbits would have been unstable, causing them either to be flung away or to fall into Earth or the moon pretty much immediately.

Except, that is, if they happened to end up at a Trojan point — a place in the same orbit as the moon, but either well ahead of or well behind it, that's gravitationally stable — or relatively so anyway. Just last week, astronomers announced the discovery of a Trojan asteroid leading the planet Earth around the sun. There's no reason a Trojan moon couldn't lead or follow our moon around the Earth.

After a few tens of millions of years, Moon Jr. would become unstable, almost certainly falling into Moon Sr. But Jutzi and Asphaug's computer simulations of how that would play out showed that the short-lived satellite would have fallen surprisingly gently, at only a few miles per second, making more of a splat than a bang.

At a more typical impact speed, which would be at least 10 times faster, says Zuber, "you'd make a big hole and fling off ejecta" — in short form, a massive crater.

In this case, you'd form just a pile of extra stuff on one side, as though you slapped a handful of mud onto a basketball. And if the minimoon were about 750 miles (1,200 km) across, with about a third as much mass as its big brother, it could account for most of the extra material we now see on the far side.

The scenario could also explain why the near side is paved over with so much lava. At the time of impact, the moon would have cooled from its original molten state to form a thin crust, with an ocean of magma underneath.

All the extra mass added to the far side could have squeezed most of the subsurface magma around to the side that faces us, providing an ample supply of molten rock for later eruptions. "Every once in a while I read a paper I really enjoy," says Zuber.

"This is a genuinely new idea. That's what really struck me."

A new theory in science isn't worth much, however, unless you can test it somehow. The best way would be to look for the mineralogical signature of such an event in rocks brought back from the far side of the moon.

Unfortunately, no such mission is in the works anytime soon. But the Lunar Reconnaissance Orbiter, or LRO, which is circling the moon even now, has detectors that can get at least a sense of the minerals below.

And in September, another moon probe will be on its way, with Zuber as principal investigator. It's called GRAIL, for Gravity Recovery and Interior Laboratory.

Actually, it's a pair of probes that will orbit in tandem; changes in the distance between them will measure the local lunar gravity with extraordinary precision.

That will give Zuber and her team a detailed look at the moon's geological (or technically, selenological) structure and history, and when combined with LRO's data, could make or break Jutzi and Asphaug's idea.

Monday, February 22, 2010

China Aiming for Lunar Landing in 10 Years

China aims to land its first astronauts on the moon within a decade at the dawn of a new era of manned space exploration -- a race it now leads thanks to the US decision to drop its lunar programme.

US President Barack Obama earlier this month said he planned to drop the costly Constellation space programme, a budget move that would kill off future moon exploration if it is approved by Congress.

In contrast, China has a fast-growing human spaceflight project that has notched one success after another, including a spacewalk by astronauts in 2008, with plans for a manned lunar mission by around 2020.

The turnaround is viewed as yet another example of the Asian power's rising profile and technical prowess.

"Overall, China is behind the US in technology and in actual presence in space -- the US operates dozens of satellites, the Chinese only a few," said James Lewis, of the US-based Centre for Strategic and International Studies.

"The real concern is the trend: China's capacities are increasing while the US, despite spending billions of dollars, appears to be stuck in a rut."

The Americans have achieved the only manned lunar missions, making six trips from 1969 to 1972.