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Conceptual design of cooling systems for the launcher and receiver mirrors of the ITER LFS-CTS diagnostic

机译:ITER LFS-CTS诊断发射器和接收器镜的冷却系统的概念设计

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摘要

A conceptual design of a cooling system for the launcher and receiver mirrors of ITER Low Field Side (LFS) Collective Thomson Scattering (CTS) diagnostic is presented. It is motivated by the fact that these mirrors are subjected to high thermal loads, e.g., neutron fluxes, that lead to maximum temperatures above the required maximum operational temperature of 450 degrees C for the material (SS 316L(N)-IG). Thus, it is necessary to develop a cooling system capable of maintaining the maximum temperatures of the mirrors below 450 degrees C, while complying with the CTS and nuclear fusion requirements. Computer Aided Design (CAD) and Finite Element (FE) models of the mirrors with different cooling channel geometries are developed. Steady state and transient thermal Finite Element Analyses (FEA) considering different mass flow rates are conducted for the assessment of the feasible solutions. The results obtained are conclusive, i.e., the cooling requirements are verified and with one of the proposed configurations it is possible to decrease the maximum temperatures of the SS 316L(N)-IG launcher and receiver mirrors from 2307 degrees C and 1064 degrees C to 381 degrees C and 147 degrees C, respectively, which, corresponds to a maximum temperature decrease of 83% and 86%, respectively. In future works, fatigue and creep analyses shall be implemented for stress and deformation assessment of the mirrors and respective reflective surfaces.
机译:提出了用于ITER低场侧(LFS)集合汤姆森散射(CTS)诊断的发射器和接收器镜的冷却系统的概念设计。这些镜面受到高热负荷(例如中子通量)的影响,这会导致最高温度超过材料(SS 316L(N)-IG)所需的最高工作温度450摄氏度。因此,有必要开发一种能够在满足CTS和核聚变要求的同时将反射镜的最高温度保持在450摄氏度以下的冷却系统。开发了具有不同冷却通道几何形状的反射镜的计算机辅助设计(CAD)和有限元(FE)模型。进行了考虑不同质量流量的稳态和瞬态热有限元分析(FEA),以评估可行的解决方案。获得的结果是结论性的,即,验证了冷却要求,并且使用建议的配置之一,可以将SS 316L(N)-IG发射器和接收镜的最高温度从2307摄氏度和1064摄氏度降低至分别为381摄氏度和147摄氏度,分别对应于最大温度降低83%和86%。在以后的工作中,应进行疲劳和蠕变分析,以评估反射镜和相应反射面的应力和变形。

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