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首页> 外文期刊>Fusion Science and Technology >HEAT TRANSFER ISSUES IN FINITE ELEMENT ANALYSIS OF BOUNDING ACCIDENTS IN PPCS MODELS
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HEAT TRANSFER ISSUES IN FINITE ELEMENT ANALYSIS OF BOUNDING ACCIDENTS IN PPCS MODELS

机译:PPCS模型中约束事故的有限元分析中的传热问题

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Modelling of temperature excursions in structures of conceptual power plants during hypothetical worst-case accidents has been performed within the European Power Plant Conceptual Study (PPCS). A new, 3D finite elements (FE) based tool, coupling the different calculations to the same tokamak geometry, has been extensively used to conduct the neutron transport, activation and thermal analyses for all PPCS plant models. During a total loss of cooling, the usual assumption for the bounding accident, passive removal of the decay heat from activated materials depends on conduction and radiation heat exchange between components. This paper presents and discusses results obtained during the PPCS bounding accident thermal analyses, examining the following issues: (a) radiation heat exchange between the inner surfaces of the tokamak, (b) the presence of air within the cryostat volume, and the heat flow arising from the circulation pattern provided by temperature differences between various parts, and (c) the thermal conductivity of pebble beds, and its degradation due to exposure to neutron irradiation, affecting the heat transfer capability and thermal response of a blanket based on these components.
机译:在欧洲电厂概念研究(PPCS)中,对假设的最坏情况下的事故中概念电厂的结构中的温度偏移进行了建模。一种新的基于3D有限元(FE)的工具将不同的计算结果耦合到相同的托卡马克几何形状,已被广泛用于对所有PPCS工厂模型进行中子传输,活化和热分析。在完全失去冷却的过程中(通常是边界事故的假设),从活化材料中被动去除衰变热取决于组件之间的传导和辐射热交换。本文介绍并讨论了在PPCS边界事故热分析过程中获得的结果,研究了以下问题:(a)托卡马克内表面之间的辐射热交换,(b)低温恒温器内空气的存在以及热流由各个部分之间的温差所提供的循环模式引起的,以及(c)卵石床的热导率,以及由于暴露于中子辐射而引起的降解,影响了基于这些成分的毯子的传热能力和热响应。

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