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Geometry design and performance optimization of a terrestrial radioisotope thermoelectric generator based on finite element analysis

机译:基于有限元分析的地面放射性电位热电发电机的几何设计与性能优化

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Radioisotope thermoelectric generator (RTG) has been widely regarded as a promising battery for space missions. To broaden RTG's application on earth, a terrestrial radioisotope thermoelectric generator (tRTG) was demonstrated in this paper. By employing the finite element analysis, an octagonal cylinder-shaped substituted electric heater and a fin-shaped radiator were manufactured, the heater was designed to have a higher surface temperature and better temperature uniformity meanwhile the fin-shaped radiator could dissipate heat at its optimal heat-sinking capacity. Then, the effects of temperature, electric connection on the output performance of the tRTG were studied experimentally. Lastly, the finite element analysis was carried out to optimize the geometry of thermoelectric converters within a certain area, as a result, the tRTG possessed an enhanced output power of 10.5 W which increased by 26.5%. Throughout this paper, the geometry design and performance optimization of tRTG were presented and discussed. (C) 2020 Elsevier Ltd. All rights reserved.
机译:放射性同位素热电发电机(RTG)已被广泛认为是空间任务的有希望的电池。为了扩大RTG在地球上的应用,本文证明了一个地面放射性同位素热电发电机(TRTG)。通过采用有限元分析,制造了八边形圆柱形取代的电加热器和翅片形散热器,使加热器设计成具有更高的表面温度,更好的温度均匀性同时,鳍状散热器可以在最佳状态下消散热量散热能力。然后,通过实验研究了温度的影响,电连接对TRTG的输出性能进行了研究。最后,进行了有限元分析以优化一定区域内的热电转换器的几何形状,结果是TRTG具有10.5W的增强输出功率,增加了26.5%。在本文中,提出和讨论了TRTG的几何设计和性能优化。 (c)2020 elestvier有限公司保留所有权利。

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