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Thermal-hydraulic and thermo-mechanical design of plasma facing components for SST-1 tokamak

机译:用于SST-1托卡马克的面向等离子体的组件的热工和热工设计

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摘要

The Plasma Facing Components (PFCs) are one of the major sub-systems of SST-1 tokamak. PFC of SST-1 consisting of divertors, passive stabilizers, baffles and limiters are designed to be compatible for steady state operation. The main consideration in the design of the PFC cooling is the steady state heat removal of up to 1 MW/m~2. The PFC has been designed to withstand the peak heat fluxes and also without significant erosion such that frequent replacement of the armor is not necessary. Design considerations included 2-D steady state and transient tile temperature distribution and resulting thermal loads in PFC during baking, and cooling, coolant parameters necessary to maintain optimum thermal-hydraulic design, and tile fitting mechanism. Finite Element (FE) models using ANSYS have been developed to carry out the heat transfer and stress analyses of the PFC to understand its thermal and mechanical behaviors. The results of the calculation led to a good understanding of the coolant flow behavior and the temperature distribution in the tube wall and the different parts of the PFC. Thermal analysis of the PFC is carried out with the purpose of evaluating the thermal mechanical behavior of PFCs. The detailed thermal-hydraulic and thermo-mechanical designs of PFCs of SST-1 are discussed in this paper.
机译:等离子体面对组件(PFCs)是SST-1托卡马克的主要子系统之一。 SST-1的PFC由分压器,无源稳定器,挡板和限制器组成,旨在兼容稳态运行。 PFC冷却设计中的主要考虑因素是稳态散热量高达1 MW / m〜2。 PFC的设计可承受峰值热通量,并且不会造成严重腐蚀,因此无需频繁更换装甲。设计考虑因素包括二维稳态和瞬态瓷砖温度分布,以及在烘烤和冷却过程中在PFC中产生的热负荷,维持最佳热工液压设计所需的冷却液参数以及瓷砖安装机制。已经开发出使用ANSYS的有限元(FE)模型来进行PFC的传热和应力分析,以了解其热和机械性能。计算结果使人们对冷却剂的流动行为以及管壁和PFC不同部分的温度分布有了很好的了解。进行PFC的热分析是为了评估PFC的热机械性能。本文讨论了SST-1 PFC的详细热工和热工设计。

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