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NASA to unveil Orion during ceremony

The new space capsule will provide emergency abort capability, sustain astronauts during space travel, and provide safe reentry from deep space.
By NASA Headquarters, Washington, D.C. Published: July 2, 2012
Orion crew module
The Orion crew module is lowered onto a workstand in the Operations and Checkout Building high bay at NASA's Kennedy Space Center in Florida. Photo credit: NASA/Gianni Woods
The first space-bound Orion capsule has arrived at NASA's Kennedy Space Center in Florida, where technicians will turn it into a fully functioning spacecraft ahead of a test flight slated for 2014.

Orion will be the most advanced spacecraft ever designed. It will provide emergency abort capability, sustain astronauts during space travel, and provide safe reentry from deep space.

The 2014 uncrewed flight, called Exploration Flight Test-1 (EFT-1), will be loaded with a wide variety of instruments to evaluate how the spacecraft behaves during launch, in space, and the through the searing heat of reentry.

Later Orion spacecraft will take astronauts on missions to destinations far beyond Earth, like an asteroid and Mars.

Lori Garver, NASA's deputy administrator, will join a group of officials to welcome the Orion spacecraft Monday, marking its arrival at Kennedy — a major milestone in the construction of the vehicle. The space-bound Orion was welded at NASA's Michoud Assembly Facility in New Orleans, Louisiana, in the same factory that built the external tanks for space shuttle missions.

Assembly at Kennedy will take place in the high bay of the Operations and Checkout Building (O&C). The O&C was refurbished extensively in 2006 and has been outfitted with large fixtures and tools to turn the aluminum shell of Orion into a functioning spacecraft complete with avionics, instrumentation, and heat shield.

In 2014, a Delta IV-Heavy rocket from United Launch Alliance will lift the spacecraft into orbit. Its second stage will remain attached to the capsule and will be fired to raise the Orion's orbit to 3,600 miles (5,800 kilometers), about 15 times higher than the International Space Station. The mission will last only a few hours, long enough to make two orbits before being sent plunging back into the atmosphere to test it as deep-space reentry speeds.

Designed with astronauts in mind, Orion will take crews beyond Earth orbit for the first time since 1972, when Apollo 17 completed the last Moon landing. The Space Launch System (SLS) — a gigantic rocket akin to the Saturn V that launched the Apollo spacecraft — is being developed to launch future Orion missions to deep space. The first launch of the SLS, with Orion atop, is scheduled for 2017.

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5 stars
TAYLOR HUTYRA from TEXAS said:
You are both comparing a capsule meant for landing with a shuttle meant for orbiting and docking to a space ship. They have uniquely different uses and because of the need for a capsule shape to land on mars, the moon, or an asteroid, and the take off again, this greatly limits its shape for reentry. And I don't believe any amount of research will let us "go up without a fireball and come down the same way" within hundreds of years. Especially not down.
1 star
PATRICK RADER from TENNESSEE said:
I have to agree with Mr. McCabe, we are going backward. Landing in water doesn't make since to me. It will be a hard landing and getting to them will be difficult. This doesn't look advanced to me either. Flying to and comming down seem to be practical. What kind of research has been made of going up with out a fire ball and coming down the same way, why can't we come back to earth like a jet liner? We have been studing what up in space and on the ground?
5 stars
ROBERT MCCABE from NORTH CAROLINA said:
"Orion will be the most advanced spacecraft ever designed. It will provide emergency abort capability, sustain astronauts during space travel, and provide safe reentry from deep space."

"It will go up like a cannon ball, and it will come down, like a cannon ball" - The Right Stuff

Hard to see this as being more advanced than the Space Shuttle, which could change course by hundreds of miles after re-entry, and could land on numerous runways.
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