Analytical studies were conducted to investigate in detail the heat balance characteristics of the nuclear light bulb engine. Distributions of energy deposition to all engine components from the fission process, conduction and convection, and thermal radiation were considered. Where uncertainties in basic data or heat transfer characteristics were encountered, ranges of heat loads were calculated and reference values were selected. The influence of these heat loads on engine performance, space radiator requirements, and cooling sequence and cooling circuit designs was determined. The analyses resulted in revisions to the previously reported reference engine characteristics, principally in the heat loads to some engine components and in the ...
Nuclear light bulb engine by which thermal radiation is transfered from gaseous nuclear fuel to seed...
Effect of fuel opacity on temperature distribution in gaseous nuclear rocket engin
The role of heating from nuclear radiation in design of the NERVA engine is treated. Some components...
Analytical model of nuclear light bulb engine radiant heat transfer and engine performance, dynamics...
Computerized simulation of control systems for nuclear light bulb engine during start-up and at nomi...
Investigations of various phases of gaseous nuclear rocket technology have been conducted. The princ...
Simulating thermal environment, transparent walls, and propellant heating in nuclear light bulb engi...
High intensity RF radiant energy source to simulate thermal environment in nuclear light bulb engin
The nuclear light bulb engine is a closed cycle concept. The nuclear light bulb concept provides con...
Steady state power, chamber pressure, and radiation efficiencies for rf induction heater simulation ...
Analytical studies of in-reactor tests of nuclear light bulb unit cell using Pewee, nuclear furnace,...
Deep Space Network for two-way communications with unmanned spacecraft at planetary distances - Vol....
Uranium 233 critical mass requirements, neutron kinetic behavior, and neutron and gamma ray heating ...
Initial radio frequency gas heating experiments to simulate thermal environment in nuclear light bul...
Simulated-fuel containment in RF heated and unheated two-component vortexes for application to nucle...
Nuclear light bulb engine by which thermal radiation is transfered from gaseous nuclear fuel to seed...
Effect of fuel opacity on temperature distribution in gaseous nuclear rocket engin
The role of heating from nuclear radiation in design of the NERVA engine is treated. Some components...
Analytical model of nuclear light bulb engine radiant heat transfer and engine performance, dynamics...
Computerized simulation of control systems for nuclear light bulb engine during start-up and at nomi...
Investigations of various phases of gaseous nuclear rocket technology have been conducted. The princ...
Simulating thermal environment, transparent walls, and propellant heating in nuclear light bulb engi...
High intensity RF radiant energy source to simulate thermal environment in nuclear light bulb engin
The nuclear light bulb engine is a closed cycle concept. The nuclear light bulb concept provides con...
Steady state power, chamber pressure, and radiation efficiencies for rf induction heater simulation ...
Analytical studies of in-reactor tests of nuclear light bulb unit cell using Pewee, nuclear furnace,...
Deep Space Network for two-way communications with unmanned spacecraft at planetary distances - Vol....
Uranium 233 critical mass requirements, neutron kinetic behavior, and neutron and gamma ray heating ...
Initial radio frequency gas heating experiments to simulate thermal environment in nuclear light bul...
Simulated-fuel containment in RF heated and unheated two-component vortexes for application to nucle...
Nuclear light bulb engine by which thermal radiation is transfered from gaseous nuclear fuel to seed...
Effect of fuel opacity on temperature distribution in gaseous nuclear rocket engin
The role of heating from nuclear radiation in design of the NERVA engine is treated. Some components...