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Thermo-Hydraulic Modeling Of The ITER Radial Neutron Camera

机译:热水液压建模射门径向中子摄像头

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The ITER Radial Neutron Camera (RNC) is a diagnostic system designed as a multichannel detection system to measure the uncollided neutron flux from the plasma, generated in the tokamak vacuum vessel, providing information on neutron emissivity profile. The RNC consists of array of cylindrical collimators located in two diagnostic structures: the ex-port system and the in-port system. The in-port system, contains the diamond detectors which need a temperature protection. Feasibility study of the efficiency of the cooling system for the In-port Detector Modules of the RNC during baking process was the main goal of thermo-hydraulic numerical modeling. The paper presents the concept of the cooling system layout and the original way of integration of numerical thermo-hydraulic analyses of the in-port detector cassette. Due to the large extent of the detector cassette it is impossible to include all relevant thermal and hydraulic effects in one global model with sufficient level of details. Thus the modelling strategy is based on the concept of three stage modelling from details to global model. The presented paper includes results of numerical calculations made with ANSYS Fluent software in order to provide the final answer, including calculation of heat loads in the detector cassette from adjacent walls during baking and normal operation conditions.
机译:ITER径向中子摄像机(RNC)是设计为多通道检测系统的诊断系统,以测量从托卡马克真空容器中产生的等离子体的覆布中子通量,提供有关中子发射率分布的信息。 RNC由位于两个诊断结构中的圆柱准直器阵列组成:前端口系统和端口系统。在端口的系统中,包含需要温度保护的钻石探测器。在烘焙过程中,RNC内端口检测器模块的冷却系统效率的可行性研究是热水液数值模拟的主要目标。本文介绍了封端式检测器盒的数值热水分析的冷却系统布局的概念和整合的原始方法。由于探测器盒的很大程度上,不可能在一个全球模型中包含所有相关的热和液压效果,具有足够的细节水平。因此,建模策略基于从细节到全球模型的三个阶段建模的概念。本文包括用ANSYS流畅的软件制成的数值计算的结果,以便提供最终答案,包括在烘焙和正常操作条件下从相邻壁的探测器盒中的热负荷计算。

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