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Modeling of thermionic converters through self-consistent solution of Vlaslov and Poisson equations

机译:通过Vlaslov和Poisson方程的自洽解对热电子转换器建模

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摘要

In this work, we propose a strategy to model thermionic energy convertors. The model involves self-consistently solving the Poisson and Vlaslov equations. This approach improves on the existing model which describes the operation of thermionic convertors only in the space-charge limited mode of operation. We show that, by applying appropriate boundary conditions, our model can be used to obtain the output characteristics of thermionic convertors in their entire range of operation. Moreover, additional aspects of thermionic convertors such as back-emission and ion emission from the electrodes can be easily incorporated into this model. The model was applied to calculate the behavior of thermionic convertors and the results are shown to match the analytical solutions in the absence of back-emission from the anode using the Child-Langmuir approach.
机译:在这项工作中,我们提出了一种对热电子能量转换器建模的策略。该模型涉及自洽求解Poisson和Vlaslov方程。这种方法对现有模型进行了改进,现有模型仅在空间电荷受限的工作模式下描述了热电子转换器的工作。我们表明,通过应用适当的边界条件,我们的模型可以用于获得热电子转换器在其整个工作范围内的输出特性。此外,热电子转换器的其他方面,例如电极的反发射和离子发射,可以轻松地纳入此模型中。该模型用于计算热电子转换器的性能,并使用Child-Langmuir方法显示了与阳极不存在反向发射的分析溶液相匹配的结果。

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