Results of laboratory tests of set thermionic converters and generators
Program development of solar energy thermionic converters and generators
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Program development of solar energy thermionic converters and generators
The objective is to improve thermionic converter performance by means of reduced interelectrode losses, greater emitter capabilities, and lower collector work functions until the converter performance level is suitable for out-of-core space reactors and radioisotope generators. Electrode screening experiments have identified several promising collector materials. Back emission work function measurements of a ZnO collector in a thermionic diode have given values less than 1.3 eV. Diode tests were conducted over the range of temperatures of interest for space power applications. Enhanced mode converter experiments have included triodes operated in both the surface ionization and plasmatron modes. Pulsed triodes were studied as a function of pulse length, pulse potential, inert gas fill pressure, cesium pressure, spacing, emitter temperature and collector temperature. Current amplifications (i.e., mean output current/mean grid current) of several hundred were observed up to output current densities of one amp/sq cm. These data correspond to an equivalent arc drop less than 0.1 eV.
Vapor thermionic converters for nuclear application
Electrical performance of rhenium niobium cylindrical thermionic converter
Low power cylindrical thermionic converter development
Reliability and efficiency improvements for thermionic converters at JPL, giving failures analyses
Design and development of thermionic converters of cylindrical geometry
Out-of-core nuclear thermionic converter system for high power levels
Solar energy thermionic converter life test program and equipment, noting failure due to loss of intraelectrode Cs
Double ended full length external fuel thermionic converter, describing component fabrication, assembly sequence, joining methods, vacuum test procedures and converter load control
Out-of-core nuclear thermionic converter system design feature concerning heat pipes, vapor-cooled radiators, modularity and reliability
Vapor thermionic converters for nuclear application
Large amplitude oscillations in one-dimensional low pressure cesium thermionic converter, explaining potential function variation by temporary DC state concept
Solar-heated thermionic generator design and fabrication evaluation, considering mirror configurations
The possibility of using molecular nitrogen gas additive as an energy storage which in turn produces cesium ionization in advanced thermionic converter is first described theoretically. Experimental data confirmed for the first time such cesium ionization by vibrationally excited molecular nitrogen. Based on these experimental observations, the use of this scheme for the verification of validity of the recent Lam's theory and its application for the development of an advanced flowing thermionic converter are discussed.
Efficiency and steady state performance of cylindrical thermionic converter with rhenium emitter and niobium collector
Electron emitter cooling and plasma heating of thermionic converters noting effects of plasma density, diode spacing, etc
Performance of deposited tungsten as thermionic converter