The advanced thermionic converter with microwave power as an auxiliary ionization source

C.N. Manikopoulos , M. Hatziprocopiou , H.S. Chiu , D.T. Shaw
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Abstract

In the search for auxillary sources of ionization for the advanced thermionic converter plasma, as required for terrestial applications, the use of externally applied microwave power is considered. The present work is part of the advanced model thermionic converter development research currently performed at the laboratory for Power and Environmental Studies at SUNY/Buffalo. Microwave power in the frequency range 1–3 GHz is used to externally pump a thermionic converter and the results are compared to the theoretical model proposed by H. Lam [1] in describing the thermionic converter plasma. The electron temperature of the plasma is found to be raised considerably by effective microwave heating which results in the disappearance of the double sheath ordinarily erected in front of the emitter. The experimental data agree satisfactorily with theory in the low current region.

以微波功率作为辅助电离源的先进热离子变换器
在为地面应用所需的先进热离子转换等离子体寻找辅助电离源时,考虑使用外源微波功率。目前的工作是纽约州立大学布法罗分校电力与环境研究实验室正在进行的先进模型热离子转换器开发研究的一部分。利用频率范围为1 - 3 GHz的微波功率对外泵浦热离子变换器,并将结果与H. Lam[1]在描述热离子变换器等离子体时提出的理论模型进行了比较。发现有效的微波加热使等离子体的电子温度大大提高,从而使通常竖立在发射器前面的双护套消失。在低电流区域,实验数据与理论吻合较好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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