热管空间核反应堆电源综述

Q3 Energy
王傲, 申凤阳, 胡古, 郭键, 安伟健
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引用次数: 1

摘要

【背景】随着太空探索的深入,对能源供应的供电要求也逐渐提高。空间核反应堆电源以其无源、长寿命、高可靠性等优点在深空探测任务中脱颖而出,因此热管核反应堆已成为空间核反应堆领域的研究热点。【目的】对热管空间核反应堆作为电源的研究进展及技术进行评价。[方法]首先对热管反应器早期的概念设计及在Kilopower的应用进行了总结。然后对热管动力系统(HPS)、热管式火星探测堆(HOMER)、安全经济核裂变发动机(safe)和Kilopower进行了详细的研究,重点研究了各反应堆的结构设计、燃料选择、热管布置和功率设计。[结果]本研究为今后热管空间核反应堆动力系统的研究和设计提供了思路和参考。[结论]热管反应器设计具有高度的灵活性和创新性。采用不同的碱金属热管和热电转换方式,直接影响到系统功率和整个系统的质量。可以尝试热管与各种热电转换方法的结合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A survey of heatpipe space nuclear reactor power supply
[Background]With the in-depth exploration of space,the power supply requirements for energy supply are gradually increasing.Space nuclear reactor power supply stands out in the deep space exploration mission due to its advantages of passivity,long life and high reliability,hence heat pipe nuclear reactor has become the focus of research in the field of space nuclear reactor.[Purpose]This study aims to evaluate the progress and technology of heat pipe space nuclear reactor used as power supply.[Method]First of all,the conceptual design of heatpipe reactor in the early stage and its application in Kilopower was summarized.Then the details of heatpipe power system(HPS),the heatpipe-operated mars exploration reactor(HOMER),safe affordable fission engine(SAFE)and Kilopower were investigated with emphasis on the structure design,fuel selection,heatpipe arrangement and power design of each reactor.[Results]This survey provides ideas and references for future research and design of heatpipe space nuclear reactor power system.[Conclusions]The design of heatpipe reactor is highly flexible and innovative.The use of different alkali metal heat pipes and thermoelectric conversion methods has a direct impact on the system power and the quality of the entire system.The combination of heat pipe and various thermoelectric conversion methods can be attempted.
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来源期刊
He Jishu/Nuclear Techniques
He Jishu/Nuclear Techniques Energy-Nuclear Energy and Engineering
CiteScore
1.00
自引率
0.00%
发文量
8576
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