Although the harsh space environment imposes many severe challenges to space pioneers, space exploration is a realistic and profitable goal for long-term humanity survival. One of the viable and promising options to overcome the harsh environment of space is nuclear propulsion. Particularly, the Nuclear Thermal Rocket (NTR) is a leading candidate for near-term human missions to Mars and beyond due to its relatively high thrust and efficiency. Traditional NTR designs use typically high power reactors with fast or epithermal neutron spectrums to simplify core design and to maximize thrust. In parallel there are a series of new NTR designs with lower thrust and higher efficiency, designed to enhance mission versatility and safety through the u...
In an effort to further refine potential point of departure nuclear thermal rocket engine designs, f...
A demonstration of a Nuclear Thermal Propulsion (NTP) engine has not been conducted in over 50 years...
A preliminary feasibility study of a high temperature nuclear fission reactor for space applications...
AbstractAlthough the harsh space environment imposes many severe challenges to space pioneers, space...
Conventional propulsion technology (chemical and electric) currently limits the ...
Conventional propulsion technology (chemical and electric) currently limits the ...
Conventional propulsion technology (chemical and electric) currently limits the ...
A study was initiated to investigate propulsion stage and mission architecture options potentially e...
A study was initiated to investigate propulsion stage and mission architecture options potentially e...
Nuclear Thermal Rockets or NTR's have been suggested as a propulsion system option for vehicles trav...
Advancement of U.S. scientific, security, and economic interests through a robust space exploration ...
Space exploration enables humans to not only explore unknown worlds but also to satisfy the curiosit...
Nuclear thermal rocket propulsion has been proposed as a highly efficient technology for space vehic...
Advancement of U.S. scientific, security, and economic interests requires high performance propulsio...
There is a renewed interest in the development of nuclear fission power sources for space applicatio...
In an effort to further refine potential point of departure nuclear thermal rocket engine designs, f...
A demonstration of a Nuclear Thermal Propulsion (NTP) engine has not been conducted in over 50 years...
A preliminary feasibility study of a high temperature nuclear fission reactor for space applications...
AbstractAlthough the harsh space environment imposes many severe challenges to space pioneers, space...
Conventional propulsion technology (chemical and electric) currently limits the ...
Conventional propulsion technology (chemical and electric) currently limits the ...
Conventional propulsion technology (chemical and electric) currently limits the ...
A study was initiated to investigate propulsion stage and mission architecture options potentially e...
A study was initiated to investigate propulsion stage and mission architecture options potentially e...
Nuclear Thermal Rockets or NTR's have been suggested as a propulsion system option for vehicles trav...
Advancement of U.S. scientific, security, and economic interests through a robust space exploration ...
Space exploration enables humans to not only explore unknown worlds but also to satisfy the curiosit...
Nuclear thermal rocket propulsion has been proposed as a highly efficient technology for space vehic...
Advancement of U.S. scientific, security, and economic interests requires high performance propulsio...
There is a renewed interest in the development of nuclear fission power sources for space applicatio...
In an effort to further refine potential point of departure nuclear thermal rocket engine designs, f...
A demonstration of a Nuclear Thermal Propulsion (NTP) engine has not been conducted in over 50 years...
A preliminary feasibility study of a high temperature nuclear fission reactor for space applications...