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Modeling a thermionic energy converter using finite-difference time-domain particle-in-cell simulations

机译:使用有限差分时域粒子仿真模拟热离子能量转换器

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A thermionic energy converter (TEC) is a static device that converts heat directly into electricity by boiling electrons from a hot emitter surface across a small inter electrode gap to a cooler collector surface. The main challenge in TECs is overcoming the space charge limit, which limits the amount of current that can transmit across a gap of a given voltage and width. In this preliminary work, it is found that the OOPD1 simulation results is in good agreement with analytical results. We have verified the feasibility of studying and developing a TEC using a bounded finite-difference time-domain particle-in-cell plasma simulation code, OOPD1 developed by PTSG, UC Berkeley.
机译:热离子能量转换器(TEC)是一种静态装置,其通过从散热器表面沸腾到冷却器集电体的较小电极间隙中的电子将热量转换为电力。 TECS中的主要挑战克服了空间电荷限制,这限制了可以在给定电压和宽度的间隙上传输的电流量。在这项初步工作中,发现OOPD1仿真结果与分析结果吻合良好。我们已经验证了使用有限的有限差分时域粒子细胞仿真仿真代码,由PTSG,UC Berkeley开发的oopd1进行学习和开发TEC的可行性。

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