A preliminary examination of a concept for a Mars and outer solar system exploratory vehicle is presented. Propulsion is provided by utilizing a nuclear thermal reactor to heat a propellant volatile indigenous to the destination world to form a high thrust rocket exhaust. Candidate propellants, whose performance, materials compatibility, and ease of acquisition are examined and include carbon dioxide, water, methane, nitrogen, carbon monoxide, and argon. Ballistics and winged supersonic configurations are discussed. It is shown that the use of this method of propulsion potentially offers high payoff to a manned Mars mission. This is accomplished by sharply reducing the initial mission mass required in low earth orbit, and by providing Mars ...
The high specific impulse (Isp) and engine thrust-to-weight ratio of liquid hydrogen (LH2)-cooled nu...
One proposed solution to slow transport times, constrained consumables, and exorbitant propellant bu...
Nuclear thermal propulsion technology development is underway at NASA and DoE for Space Exploration ...
In the 1960's, Nuclear Thermal Rocket (NTR) engines were developed and ground tested capable of yiel...
A combined Nuclear Thermal Rocket (NTR) flight test and Mars Sample Return mission (MSR) is explored...
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 ...
Many space agencies like NASA, SPACE-X have promised to send humans into the red planet in future. S...
The physics and technology issues and performance potential of various direct thrust fission and fus...
Many space agencies like NASA, SPACE-X have promised to send humans into the red planet in future. S...
Nuclear Thermal Propulsion (NTP) has long been considered as a viable in-space transportation altern...
The feasibility of rebuilding and testing a nuclear thermal rocket (NTR) for the Mars mission was in...
This paper discusses vehicle configuration options using nuclear thermal rocket (NTR) propulsion app...
honors thesisCollege of SciencePhysics and AstronomyClayton WilliamsThe Solar System has multiple d...
The high specific impulse (Isp) and engine thrust-to-weight ratio of liquid hydrogen (LH2)-cooled nu...
One proposed solution to slow transport times, constrained consumables, and exorbitant propellant bu...
Nuclear thermal propulsion technology development is underway at NASA and DoE for Space Exploration ...
In the 1960's, Nuclear Thermal Rocket (NTR) engines were developed and ground tested capable of yiel...
A combined Nuclear Thermal Rocket (NTR) flight test and Mars Sample Return mission (MSR) is explored...
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 ...
Many space agencies like NASA, SPACE-X have promised to send humans into the red planet in future. S...
The physics and technology issues and performance potential of various direct thrust fission and fus...
Many space agencies like NASA, SPACE-X have promised to send humans into the red planet in future. S...
Nuclear Thermal Propulsion (NTP) has long been considered as a viable in-space transportation altern...
The feasibility of rebuilding and testing a nuclear thermal rocket (NTR) for the Mars mission was in...
This paper discusses vehicle configuration options using nuclear thermal rocket (NTR) propulsion app...
honors thesisCollege of SciencePhysics and AstronomyClayton WilliamsThe Solar System has multiple d...
The high specific impulse (Isp) and engine thrust-to-weight ratio of liquid hydrogen (LH2)-cooled nu...
One proposed solution to slow transport times, constrained consumables, and exorbitant propellant bu...
Nuclear thermal propulsion technology development is underway at NASA and DoE for Space Exploration ...