To develop the passively-cooled space reactor concept using the capillary-induced lithium flow, since molten lithium possesses a very favorable surface tension characteristic. In space where the gravitational field is minimal, the gravity-assisted natural convection cooling is not effective nor an option for reactor heat removal, the capillary induced cooling becomes an attractive means of providing reactor cooling
Alkali liquid metal cooled fission reactor concepts are under development for mid-range spaceflight ...
The CAPL shuttle flight experiment will provide microgravity verification of the prototype capillary...
The concept of using nuclear reactor technology in propulsion systems is nearly as old as nuclear re...
Nuclear reactors are an appealing energy technology for space applications because of their ability ...
Neutronic design calculations for lithium 7 cooled nuclear reactor for space application
This investigation aims to discover the utility of atmospheric cooling of residual heat in Martian a...
Criticality calculations for small, cylindrical, lithium cooled reactors for space power system
The water-cooled lithium-lead breeding blanket is in the pre-conceptual design phase. It is a candid...
The water-cooled lithium-lead breeding blanket is in the pre-conceptual design phase. It is a candid...
In this work, a conceptual design for a pre-filled liquid lithium divertor target for the National S...
The concept of using molten metal as a plasma facing material (PFM) has been widely considered, and ...
The Early Flight Fission - Test Facilities (EFF-TF) team has designed and built an actively pumped l...
As fusion devices tend toward higher densities and temperatures, more robust plasma facing component...
The development of lithium magnetoplasmadynamic (MPD) thrusters at JPL is discussed. The following t...
A concept for very high specific impulse (greater than 2000 seconds) direct nuclear propulsion is de...
Alkali liquid metal cooled fission reactor concepts are under development for mid-range spaceflight ...
The CAPL shuttle flight experiment will provide microgravity verification of the prototype capillary...
The concept of using nuclear reactor technology in propulsion systems is nearly as old as nuclear re...
Nuclear reactors are an appealing energy technology for space applications because of their ability ...
Neutronic design calculations for lithium 7 cooled nuclear reactor for space application
This investigation aims to discover the utility of atmospheric cooling of residual heat in Martian a...
Criticality calculations for small, cylindrical, lithium cooled reactors for space power system
The water-cooled lithium-lead breeding blanket is in the pre-conceptual design phase. It is a candid...
The water-cooled lithium-lead breeding blanket is in the pre-conceptual design phase. It is a candid...
In this work, a conceptual design for a pre-filled liquid lithium divertor target for the National S...
The concept of using molten metal as a plasma facing material (PFM) has been widely considered, and ...
The Early Flight Fission - Test Facilities (EFF-TF) team has designed and built an actively pumped l...
As fusion devices tend toward higher densities and temperatures, more robust plasma facing component...
The development of lithium magnetoplasmadynamic (MPD) thrusters at JPL is discussed. The following t...
A concept for very high specific impulse (greater than 2000 seconds) direct nuclear propulsion is de...
Alkali liquid metal cooled fission reactor concepts are under development for mid-range spaceflight ...
The CAPL shuttle flight experiment will provide microgravity verification of the prototype capillary...
The concept of using nuclear reactor technology in propulsion systems is nearly as old as nuclear re...