Thermionic converter with current augmented by self induced magnetic field Patent
Thermionic converter for converting heat energy directly into electrical energy
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Thermionic converter for converting heat energy directly into electrical energy
Experiments, evaluating the performance of low-pressure thermionic converters, were conducted with cesium, potassium, and sodium-metal vapors. The results of the investigation are useful in the selection of favorable conditions for the design of thermionic reactor fuel elements, including RF output for special applications.
Heat pipe dynamics analyzed for thermionic converter heat pipe radiator design criteria, discussing working fluid selection
Precision variable parameter test vehicles for parametric studies of plane-parallel cesium vapor thermionic converter performance
Coating stability, collector fabrication, and high temperature brazing for radiator heat rejection devices - high performance thermionic converter
Design evaluation of helical electron bombardment filaments for heating cylindrical thermionic converters
Engineering models and flux analysis for solar energy thermionic converter design
Semiempirical relation for electron cooling modified by plasma heating of thermionic converters, including effects of plasma density, diode spacing and surface potential difference
Cylindrical geometry in-pile and out-of-pile thermionic converters long term life tests, including unfueled and fueled versions
Conceptual design of 150 kWe out of core nuclear thermionic converter system
Out-of-core heat pipe heated and cooled thermionic converter module mechanical design, fabrication and subcomponent performance evaluation
Heat pipe thermionic converter
In-pile life tests of cylindrical thermionic converter rods for Mark 6
Design and fabrication of high efficiency, low power thermionic converters - graphs
Empirical equation for thermionic converter performance as function of electrode emission properties
Performance and life tests of nonfueled and UO2-fueled cylindrical thermionic converter
Description of an external-fuel thermionic converter which utilizes a thoriated-tungsten fuel-emitter body. Performance in out-of-pile tests was comparable to that of an arc-cast tungsten emitter body, with 400-eW output power (about 5 W/sq cm) at 10.8% efficiency. Maximum fuel clad temperature averaged from 1650 to 1700 C during the 300-hour test. This converter has been processed for in-pile testing. The various processing steps, including the installation of six emitter thermocouples, encapsulation in the secondary container, and joining to the fission-gas collection system, are described in detail. In addition to the converter assembly, a doubly contained fission gas collection assembly with radiation-hardened differential pressure transducers was fabricated. The experiment support plate required for the in-pile test, containing electrically insulated instrumentation feedthroughs and coolant line feedthroughs to the vacuum test chamber, was also fabricated.
Thermionic energy converter operation showing anomalous electron and ion currents in plasma mode, discussing heating power and emitter temperature