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Reactor Lithium Heat Pipes for HP-STMCs Space Reactor Power System

机译:用于HP-STMCS空间电抗器电力系统的反应堆锂热管

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Design and performance analysis of the nuclear reactor's lithium heat pipes for a 110-kW_e Heat Pipes-Segmented Thermoelectric Module Converters (HP-STMCs) Space Reactor Power system (SRPS) are presented. The evaporator length of the heat pipes is the same as the active core height (0.45 m) and the C-C finned condenser is of the same length as the STMC panels (1.5 m). The C-C finned condenser section is radiatively coupled to the collector shoes of the STMCs placed on both sides. The lengths of the adiabatic section, the values of the power throughput and the evaporator wall temperature depend on the radial location of the heat pipe in the reactor core and the number and dimensions of the potassium heat pipes in the heat rejection radiator. The reactor heat pipes have a total length that varies from 7.57 to 7.73 m, and a 0.2 mm thick Mo-14%Re wick with an average pore radius of 12 μm. The wick is separated from the Mo-14%Re wall by a 0.5 mm annulus filled with liquid lithium, to raise the prevailing capillary limit. The nominal evaporator (or reactor) temperature varies from 1513 to 1591 K and the thermal power of the reactor is 1.6 MW, which averages 12.7 kW for each of the 126 reactor heat pipes. The power throughput per heat pipe increase to a nominal 15.24 kW at the location of the peak power in the core and to 20.31 kW when an adjacent heat pipe fails. The prevailing capillary limit of the reactor heat pipes is 28.3 kW, providing a design margin ≥28%.
机译:设计与一个110 kW_e热管分段的热电模块变流器(HP-STMCs​​)空间反应堆功率系统(SRPS)核反应堆的锂的热管的性能分析被呈现。热管的蒸发器长度是一样的活性核心高度(0.45米)和C-C翅片冷凝器是相同长度的STMC面板(1.5米)的。的C-C翅片冷凝部辐射地耦合到放置在两侧的STMCs​​的集电极鞋。绝热段的长度,功率吞吐量和蒸发器壁温度的值依赖于热管的反应器中的芯中的径向位置,并在排热散热器钾热管的数量和尺寸。将反应器的热管有变化从7.57到7.73米的总长度,和一个0.2mm厚的Mo-14%的Re为12微米的平均孔半径灯芯。油绳从钼 - 14%的Re壁由0.5mm的环形填充有液体锂分离,提高通行毛细管限制。标称蒸发器(或反应器)温度变化1513年至1591年K和反应器的热功率为1.6兆瓦,其中平均12.7千瓦用于每个反应器126个的热管。功率吞吐量每热管提高到标称15.24千瓦在芯中的峰值功率的位置和到20.31千瓦当相邻的热管失败。将反应器热管的通行毛细管限为28.3千瓦,提供一个设计余量≥28%。

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