Showing posts with label satellites. Show all posts
Showing posts with label satellites. Show all posts

November 12 - First Salvage Operation in Space!

  Posted on November 12, 2021


This is an update of my post published on November 12, 2010:




On this date in 1984, U. S. astronauts Joseph Allen, Dale Gardner, and Anna Fisher were able to successfully salvage a satellite that had not reached its proper orbit.

During the fourteenth flight of the Space Shuttle program, STS-51A, two satellites were deployed (one Canadian and one American). Then astronauts Allen and Gardner performed an EVA (Extra-Vehicular Activity) space walk to retrieve an Indonesian satellite, Palapa B-2. The satellite had been deployed by a Space Shuttle mission earlier that year but had not reached geostationary orbit because its kick motor had malfunctioned.


This photo shows the "cradles" for the Palapa B-2 and the Westar 6 satellites.










Allen inserted a device known as a “Stinger” into one of the motor nozzles, and the rotation of the satellite was slowed down to 1 RPM. At this point Fisher tried to use the Shuttle's robotic arm to grapple the satellite. The attempt failed. Allen succeeded where the robot had failed and, with the help of Gardner and Fisher via the robotic arm, was able to maneuver the satellite into the cradle.

The photo below shows Allen manhandling the satellite. Remember, no gravity means no weight--but the mass of the satellite means that there is still plenty of inertia. It's hard to get big things moving, and it's hard to get them to stop moving, too!


The next day the shuttle crew salvaged another satellite, Westar 6, that had the same deployment date and the same kick motor malfunction. This salvage effort went more smoothly and quickly, although Gardner used the same muscle power technique to capture the satellite.


The picture above shows Dale Gardner cracking a joke during his space walk, holding up a “For Sale” sign in front of the salvaged goods. Indeed, Westar 6 was sold to China for relaunch, and Palapa B-2 was also later relaunched on behalf of Indonesia.


What is a geostationary orbit? And what about a geosynchronous orbit?

A geosynchronous orbit is an orbit that matches the Earth's rotation, so that it always returns to the exact same spot in the sky at exactly the same time in the day.

A geostationary orbit is a geosynchronous orbit that is circular and positioned above the equator. This kind of orbit insures that the satellite is always in one fixed location above the Earth's surface. Communications satellites are often placed in geostationary orbits so that the antennas that communicate with them do not have to move.



A geostationary orbit is sometimes called a Clarke orbit because author Arthur C. Clarke first proposed the notion of using such an orbit for communications satellites. If you have satellite TV, your television probably communicates with a geostationary satellite.


Funny photos in space?

Gardner isn't the only astronaut to joke around from on high. NASA astronaut Garrett Reisman filmed an interview with comedian Stephen Colbert from the International Space Station,  Alan Shepard hit some golf balls on the moon and joked that they went miles and miles and miles (but it really might have gone about a mile!), and astronauts routinely have fun in zero-G.
















September 29 - Anniversary of the Launch of Canada's First Satellite

Posted on September 29, 2021


This post is an updated version of my post published on September 29, 2010:




With the launching of Alouette I, on this date in 1962, Canada became the third nation to build a satellite that was successfully put into Earth orbit. 


(You might already know that the Soviet Union and U.S. were the first two space-faring nations.)



Alouette was launched by NASA in the U.S., but it was constructed in Canada, by Canadians.



It was designed to study the ionsphere, a region in the upper atmosphere—the region that many future satellites would be located. After the planned ten years of operation, the satellite was deliberately shut off. However, the satellite remains in orbit - it was calculated that it could remain in orbit for a THOUSAND YEARS! - and it is remotely possible that it could be turned on again someday.


By now there are a few thousand operational satellites in Earth orbit, from more than 50 countries—plus thousands of unused satellites (like Alouette I) and satellite parts. It seems to me that space is getting just a bit too crowded! Even if the volume of orbiting space is hugely greater than the amount of human-made stuff we have sent up there, a collision could be disastrous. The problem of space junk will have to be dealt with eventually.




SAT Facts


Satellites are used for observation for military and civilian (which just means everything that is NOT military) reasons. Look at a satellite image of your own house using Google Maps.  Or download Google Earth.



 

Satellites are (of course!) used for communication—that's why we have cell phones and satellite TV!




They're used for navigation and location devices such as GPS. If you have an I-Phone or a GPS, you can do geocaching, which is like a really cool scavenger hunt.



 

Satellites are used for study and prediction of weather and for other scientific research. I love looking at photos and more photos from the Hubble space telescope!




And of course some satellites are meant for humans! The largest satellite now in use is the International Space Station.