Nuclear thermal propulsion uses nuclear energy to directly heat a propellant (such as liquid hydrogen) to generate thrust for space transportation. In the 1960 s, the early Rover/Nuclear Engine for Rocket Propulsion Application (NERVA) program showed very encouraging test results for space nuclear propulsion but, in recent years, fuel research has been dismal. With NASA s renewed interest in long-term space exploration, fuel researchers are now revisiting the RoverMERVA findings, which indicated several problems with such fuels (such as erosion, chemical reaction of the fuel with propellant, fuel cracking, and cladding issues) that must be addressed. It is also well known that the higher the temperature reached by a propellant, the larger t...
= 9 6 < ? < 0 t and fabrication method on irradiation stability, thermal conductivity, and hot hardn...
Nuclear thermal propulsion (NTP) has the potential to expand the limits of human space exploration b...
At the operation condlrlonsof interut!n nuclear thamal p’opulslonmaaom carbide mmerials have kn know...
Abstract Nuclear thermal propulsion uses nuclear energy to directly heat a propellant (such as liqui...
Deep space exploration, especially that of Mars, is on the horizon as the next big challenge for spa...
Deep space exploration, especially that of Mars, is on the horizon as the next big challenge for spa...
For decades humans have had visions of traveling to Mars. With a traditional chemical rocket, the tr...
For decades humans have had visions of traveling to Mars. With a traditional chemical rocket, the tr...
An innovative reactor core design based on advanced, mixed carbide fuels was analyzed for nuclear sp...
Corrosion (mass loss) of carbide nuclear fuels due to their exposure to hot hydrogen in nuclear ther...
The success of the development of nuclear thermal propulsion devices and thermionic space nuclear po...
Processing techniques are being developed to fabricate refractory metal and ceramic cermet materials...
Nuclear thermal propulsion (NTP) is an in-space propulsion technology capable of high specific impul...
Nuclear thermal rocket propulsion has been proposed as a highly efficient technology for space vehic...
In an effort to further refine potential point of departure nuclear thermal rocket engine designs, f...
= 9 6 < ? < 0 t and fabrication method on irradiation stability, thermal conductivity, and hot hardn...
Nuclear thermal propulsion (NTP) has the potential to expand the limits of human space exploration b...
At the operation condlrlonsof interut!n nuclear thamal p’opulslonmaaom carbide mmerials have kn know...
Abstract Nuclear thermal propulsion uses nuclear energy to directly heat a propellant (such as liqui...
Deep space exploration, especially that of Mars, is on the horizon as the next big challenge for spa...
Deep space exploration, especially that of Mars, is on the horizon as the next big challenge for spa...
For decades humans have had visions of traveling to Mars. With a traditional chemical rocket, the tr...
For decades humans have had visions of traveling to Mars. With a traditional chemical rocket, the tr...
An innovative reactor core design based on advanced, mixed carbide fuels was analyzed for nuclear sp...
Corrosion (mass loss) of carbide nuclear fuels due to their exposure to hot hydrogen in nuclear ther...
The success of the development of nuclear thermal propulsion devices and thermionic space nuclear po...
Processing techniques are being developed to fabricate refractory metal and ceramic cermet materials...
Nuclear thermal propulsion (NTP) is an in-space propulsion technology capable of high specific impul...
Nuclear thermal rocket propulsion has been proposed as a highly efficient technology for space vehic...
In an effort to further refine potential point of departure nuclear thermal rocket engine designs, f...
= 9 6 < ? < 0 t and fabrication method on irradiation stability, thermal conductivity, and hot hardn...
Nuclear thermal propulsion (NTP) has the potential to expand the limits of human space exploration b...
At the operation condlrlonsof interut!n nuclear thamal p’opulslonmaaom carbide mmerials have kn know...