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THERMODYNAMIC PERFORMANCE OF 5MW SPACE NUCLEAR POWER SYSTEM BASED ON LIQUID METAL RANKINE CYCLE

机译:基于液态金属核循环的5MW空间核动力系统的热力学性能

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In this paper, the losses of energy and exergy of 5WM Rankine space nuclear power system were analyzed and compared through thermodynamic analysis. The power system includes a liquid metal Rankine power conversion system coupled with a lithium cooled fast reactor. Meanwhile, a reheat process is contained to enhance the efficiency of the system. The aim of this paper is to evaluate the sites with largest losses of energy and exergy upon the thermodynamic analysis of the system. Hence, this study focus on the positions and loss types of the efficient energy in such a liquid metal Rankine space nuclear power system. In addition, the effects of varied space environment state on this analysis was presented through investigating the influences of ambient temperature on the energy losses and efficiencies in every parts. At last, the characteristics of four Rankine space nuclear power systems with different liquid metals were studied.
机译:本文对5WM兰金空间核动力系统的能量和火用损失进行了分析,并通过热力学分析进行了比较。该动力系统包括与锂冷却的快堆耦合的液态金属朗肯动力转换系统。同时,包含了重新加热过程以提高系统效率。本文的目的是根据系统的热力学分析来评估能量和火用损失最大的位置。因此,本研究着眼于这种液态金属兰金空间核动力系统中有效能量的位置和损失类型。此外,通过研究环境温度对各个部分的能量损失和效率的影响,提出了空间环境状态变化对该分析的影响。最后,研究了四种液态金属不同的兰金空间核动力系统的特性。

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