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首页> 外文期刊>Annals of nuclear energy >Thermal-hydraulic analysis of the thermoelectric space reactor power system with a potassium heat pipe radiator
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Thermal-hydraulic analysis of the thermoelectric space reactor power system with a potassium heat pipe radiator

机译:带有钾热管散热器的热电空间反应堆动力系统的热工水力分析

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摘要

The thermoelectric space reactor power system conceptual design incorporates fast reactor, liquid-lithium primary coolant loops that transfer heat to potassium-filled high temperature heat pipes and thermoelectric generators. An integrated system analysis model was developed to study the operating characteristics of the space power system, which consisted of reactor thermal-hydraulic model, neutron kinetics model, thermoelectric energy conversion assembly (ECA) model, heat pipe radiator model etc. One-dimensional thermal-hydraulic model was applied to model the coolant circuit. Quasi two-dimensional analysis models for heat transfer of fuel element, ECA and the heat pipe fin were established. Considering the thermoelectric conversion phenomena, an equivalent electric efficiency model was inserted in the ECA model. Both finite element method and thermal resistance network were applied to simulate the potassium heat pipe system. The normal operation condition and two demonstration accident scenarios (unprotected inadvertent movement of a sliding reflector and loss of heat pipes) were calculated to prove the capabilities of the new system model. (C) 2019 Published by Elsevier Ltd.
机译:热电空间反应堆动力系统的概念设计包括快速反应堆,液-锂主要冷却剂回路,这些回路将热量传递到充满钾的高温热管和热电发电机。开发了一个综合系统分析模型来研究空间动力系统的运行特性,该模型包括反应堆热工水力模型,中子动力学模型,热电能量转换组件(ECA)模型,热管散热器模型等。 -液压模型被应用于建模冷却剂回路。建立了燃料元件,ECA和热管翅片传热的准二维分析模型。考虑到热电转换现象,在ECA模型中插入了等效的电效率模型。采用有限元法和热阻网络法对钾热管系统进行了仿真。计算了正常操作条件和两个示范事故场景(滑动反光镜的无保护意外移动和热管损失),以证明新系统模型的功能。 (C)2019由Elsevier Ltd.发布

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