Showing posts with label Addition. Show all posts
Showing posts with label Addition. Show all posts

Wednesday, February 26, 2014

SpaceX Falcon 9 Rocket Adds Landing Legs

A look at the landing legs SpaceX is mounting on its Falcon 9 rocket for the company's next cargo mission to the International Space Station, which is slated to launch on March 16, 2014.

Credit: Elon Musk /SpaceX

Putting landing legs on the Falcon 9 rocket, which is slated to blast off on March 16, marks another step in SpaceX's quest to develop a fully reusable launch system but current plans don't call for the Falcon 9 to actually touch down on the legs after next month's liftoff, said SpaceX founder and CEO Elon Musk.

Elon Musk
"Mounting landing legs (~60 ft span) to Falcon 9 for next month's Space Station servicing flight," Musk said Sunday (Feb. 23) via Twitter, where he posted a photo of the rocket.

"However, F9 will continue to land in the ocean until we prove precision control from hypersonic thru subsonic regimes."



SpaceX holds a $1.6 billion contract to make 12 robotic supply runs to the space station for NASA using Dragon and the Falcon 9.

The company has already completed two of these flights successfully; the March 16 flight will initiate contracted mission number three.

But the company's ambitions extend far beyond low-Earth orbit. Musk has said that he established SpaceX primarily to help humanity become a multiplanet species, and he hopes the company plays a prominent role in getting a Mars colony up and running.

One key to making such big dreams a reality is developing a fully and rapidly reusable launch system, which Musk has said could lower the cost of spaceflight by a factor of 100.

Toward that end, SpaceX has been testing a reusable rocket prototype called Grasshopper, which has a made a series of higher and more complicated flights over the past year and a half.

Thursday, February 20, 2014

Mars Curiosity Wheel Damage: Adds Reverse driving for wheel protection

This map shows the route driven and route planned for NASA's Curiosity Mars rover from before reaching "Dingo Gap", in upper right, to the mission's next science waypoint, "Kimberley" (formerly referred to as "KMS-9") -- in lower left. 

Credit: NASA/JPL-Caltech/Univ. of Arizona

Terrain that NASA's Curiosity Mars rover is now crossing is as smooth as team members had anticipated based on earlier images from orbit.

On Tuesday, Feb. 18, the rover covered 329 feet (100.3 meters), the mission's first long trek that used reverse driving and its farthest one-day advance of any kind in more than three months.

The reverse drive validated feasibility of a technique developed with testing on Earth to lessen damage to Curiosity's wheels when driving over terrain studded with sharp rocks.

However, Tuesday's drive took the rover over more benign ground.

Jim Erickson
"We wanted to have backwards driving in our validated toolkit because there will be parts of our route that will be more challenging," said Curiosity Project Manager Jim Erickson of NASA's Jet Propulsion Laboratory, Pasadena, Calif.

The rover team used images taken from orbit to reassess possible routes, after detecting in late 2013 that holes in the vehicle's aluminum wheels were accumulating faster than anticipated.

Getting to the chosen route, which appeared to be less hazardous for the wheels, required crossing a 3-foot-tall (1-meter-tall) dune. Curiosity crossed the dune on Feb. 9.

Erickson said, "After we got over the dune, we began driving in terrain that looks like what we expected based on the orbital data."

"There are fewer sharp rocks, many of them are loose, and in most places there's a little bit of sand cushioning the vehicle."

This look back at a dune that NASA's Curiosity Mars rover drove across was taken by the rover's Mast Camera (Mastcam) during the 538th Martian day, or sol, of Curiosity's work on Mars (Feb. 9, 2004). 

Credit: NASA /JPL-Caltech /MSSS

The mission's destinations remain the same: a science waypoint first and then the long-term goal of investigating the lower slopes of Mount Sharp, where water-related minerals have been detected from orbit.

The science waypoint, which may be where Curiosity next uses its sample-collecting drill, is an intersection of different rock layers about two-thirds of a mile (about 1.1 kilometers) ahead on the planned route.

This location, formerly called KMS-9 from when it was one of many waypoint candidates, is now called "Kimberley," for the geological mapping quadrant that contains it.

The mapping quadrant was named for the northwestern Australia region with very old rocks.

While the rover is headed for the Kimberley waypoint and during the time it spends doing science investigations there, the team will use orbital imagery to choose a path for continuing toward the long-term destination.

"We have changed our focus to look at the big picture for getting to the slopes of Mount Sharp, assessing different potential routes and different entry points to the destination area," Erickson said.

"No route will be perfect; we need to figure out the best of the imperfect ones."

Curiosity has driven 937 feet (285.5 meters) since the Feb. 9 dune-crossing, for a total odometry of 3.24 miles (5.21 kilometers) since its August 2012 landing.