
doi: 10.2172/5912503
Calculations of the core specific power for conceptual space-based liquid-metal-cooled reactors, based on heat transfer considerations, are presented for three different fuel types: (1) pin-type fuel; (2) cermet fuel; and (3) thermionic fuel. The calculations are based on simple models and are intended to provide preliminary comparative results. The specific power is of interest because it is a measure of the core mass required to produce a given amount of power. Potential problems concerning zero-g critical heat flux and loss-of-coolant accidents are also discussed because these concerns may limit the core specific power. Insufficient experimental data exists to accurately determine the critical heat flux of liquid-metal-cooled reactors in space; however, preliminary calculations indicate that it may be a concern. Results also indicate that the specific power of the pin-type fuels can be increased significantly if the gap between the fuel and the clad is eliminated. Cermet reactors offer the highest specific power because of the excellent thermal conductivity of the core matrix material. However, it may not be possible to take fuel advantage of this characteristic when loss-of-coolant accidents are considered in the final core design. The specific power of the thermionic fuels is dependent mainly on the emitter temperature. more » The small diameter thermionic fuels have specific powers comparable to those of pin-type fuels. 11 refs., 12 figs, 2 tabs. « less
Thermionic Fuel Elements, Design, Loss Of Coolant, Pellets, Auxiliary, 21 Specific Nuclear Reactors And Associated Plants, 530, Reactor Accidents, Nesdps Office Of Nuclear Energy Space And Defense Power Systems, Power Distribution, Fuel Elements, Reactor Components, Calculation Methods, Mobile Reactors, Fuel Pins, Reactors Nesdps Office Of Nuclear Energy Space And Defense Power Systems 210600* -- Power Reactors, Space Power Reactors, Heat Transfer, 620, Power Reactors, Energy Transfer, Mobile Package, Fuel Pellets, Power, Accidents, & Transportable, Liquid Metal Cooled Reactors
Thermionic Fuel Elements, Design, Loss Of Coolant, Pellets, Auxiliary, 21 Specific Nuclear Reactors And Associated Plants, 530, Reactor Accidents, Nesdps Office Of Nuclear Energy Space And Defense Power Systems, Power Distribution, Fuel Elements, Reactor Components, Calculation Methods, Mobile Reactors, Fuel Pins, Reactors Nesdps Office Of Nuclear Energy Space And Defense Power Systems 210600* -- Power Reactors, Space Power Reactors, Heat Transfer, 620, Power Reactors, Energy Transfer, Mobile Package, Fuel Pellets, Power, Accidents, & Transportable, Liquid Metal Cooled Reactors
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