Space - Rope - Earth
Discussion
Read this book.. http://en.wikipedia.org/wiki/The_Fountains_of_Para...
p.s. Climbing rope (11mm) weighs 50-75gm per metre. Going on the heaviest of 75g over 300km you'd need a shuttle payload of 22.5 metric tons.
Max payload of the shuttle is 25060 kg so i'll concede you might actually get it up there surprisingly.
Next problem I guess is gravity acting on the lower section of your 22.5 ton rope pulling the Shuttle towards earth!!
Max payload of the shuttle is 25060 kg so i'll concede you might actually get it up there surprisingly.
Next problem I guess is gravity acting on the lower section of your 22.5 ton rope pulling the Shuttle towards earth!!
There is some interesting possibilities been opened up by the new versions of carbon via nano technology, IMO it's a strong enough idea that someone will work a way around it.
Besides it would make building a project Orion space ship possible in orbit, without the need for a dirty ground launch.
Besides it would make building a project Orion space ship possible in orbit, without the need for a dirty ground launch.
Caruso said:
The shuttle is moving at over 17,000 mph when in orbit, so the rope wouldn't stay in the same place on the surface. To stay in the same place relative to the surface it would have to be >22,000 miles long.
The OP didn't say the rope had to stay in the same place relative to the surface.
Nanotechnology could provide the very high-strength, low-weight fibers that would be needed to build the cable of a "space elevator."
Nanotubes:
* have 100 times the tensile strength of steel, but only 1/6 the weight;
* are 40 times stronger than graphite fibers;
* conduct electricity better than copper;
* can be either conductors or semiconductors (like computer chips), depending on the arrangement of atoms;
* and are excellent conductors of heat.
Currently, the Cambridge team can make about 1 gram of the new carbon material per day, which can stretch to 18 miles in length. Alan Windle, professor of materials science at Cambridge, says that industrial-level production would be required to manufacture NASA's request for 144,000 miles of nanotube. Nevertheless, the web-like nanotube material is promising. . .
"The biggest problem has always been finding a material that is strong enough and lightweight enough to stretch tens of thousands of miles into space," said EuroSpaceward's John Winter. "This isn't going to happen probably for the next decade at least, but in theory this is now possible. The advances in materials for the tether are very exciting."
http://crnano.typepad.com/crnblog/2009/01/space-el...
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