As part of the 22.033/22.33 Nuclear Systems Design project, this group designed a 100 kW[subscript e] Martian/Lunar surface reactor system to work for 5 EFPY in support of extraterrestrial human exploration efforts. The reactor design was optimized over the following criteria: small mass and size, controllability, launchability/accident safety, and high reliability. The Martian Surface Reactor was comprised of four main systems: the core, power conversion system, radiator and shielding. The core produces 1.2 MW[subscript th] and operates in a fast spectrum. Li heat pipes cool the core and couple to the power conversion system. The heat pipes compliment the chosen pintype fuel geometry arranged in a tri-cusp configuration. The reacto...
The hardware selections available for fabrication of a nuclear electric propulsion stage for planeta...
The design of MARS (Multipurpose Advanced “inherently” Safe Reactor) plant started in 1983 at the De...
Design features and performance characteristics of thermionic reactor systems for space application
In the space exploration field there is a general consensus that nuclear reactor powered systems wil...
To perform more advanced studies on the surface of the moon or Mars, a rover must provide long-term ...
To perform more advanced studies on the surface of the moon or Mars, a rover must provide long-term ...
When humans go to Mars, we should take vehicles such as “rovers ” or helicopters, powered by compact...
Abstract- A team from JPL and the DOE has recently completed a study to investigate the utility of a...
A preliminary feasibility study of the potential application of small nuclear reactor space power sy...
Power limitation represents a major issue within space applications aimed to human settlements on s...
A key decision facing Mars mission designers is how to power a crewed surface field station. Unlike ...
Multiyear civilian manned missions to explore the surface of Mars are thought by NASA to be possible...
Graduation date: 2006As human exploration of space continues, eventually sights will be set on estab...
This work develops original conceptual designs for compact nuclear fission reactor engines to power ...
The Design Reference Mission for NASA's human mission to Mars indicates the desire for in-situ prope...
The hardware selections available for fabrication of a nuclear electric propulsion stage for planeta...
The design of MARS (Multipurpose Advanced “inherently” Safe Reactor) plant started in 1983 at the De...
Design features and performance characteristics of thermionic reactor systems for space application
In the space exploration field there is a general consensus that nuclear reactor powered systems wil...
To perform more advanced studies on the surface of the moon or Mars, a rover must provide long-term ...
To perform more advanced studies on the surface of the moon or Mars, a rover must provide long-term ...
When humans go to Mars, we should take vehicles such as “rovers ” or helicopters, powered by compact...
Abstract- A team from JPL and the DOE has recently completed a study to investigate the utility of a...
A preliminary feasibility study of the potential application of small nuclear reactor space power sy...
Power limitation represents a major issue within space applications aimed to human settlements on s...
A key decision facing Mars mission designers is how to power a crewed surface field station. Unlike ...
Multiyear civilian manned missions to explore the surface of Mars are thought by NASA to be possible...
Graduation date: 2006As human exploration of space continues, eventually sights will be set on estab...
This work develops original conceptual designs for compact nuclear fission reactor engines to power ...
The Design Reference Mission for NASA's human mission to Mars indicates the desire for in-situ prope...
The hardware selections available for fabrication of a nuclear electric propulsion stage for planeta...
The design of MARS (Multipurpose Advanced “inherently” Safe Reactor) plant started in 1983 at the De...
Design features and performance characteristics of thermionic reactor systems for space application