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Transient thermal hydraulic modeling and analysis of ITER divertor plate system

机译:ITER分流板系统的瞬态热工水力建模与分析

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A mathematical model has been developed/updated to simulate the steady state and transient thermal-hydraulics of the International Thermonuclear Experimental Reactor (ITER) divertor module. The model predicts the thermal response of the armour coating, divertor plate structural materials and coolant channels. The selected heat transfer correlations cover all operating conditions of ITER under both normal and off-normal situations. The model also accounts for the melting, vaporization, and solidification of the armour material. The developed model is to provide a quick benchmark of the HEIGHTS multidimensional comprehensive simulation package. The present model divides the coolant channels into a specified axial regions and the divertor plate into a specified radial zones, then a two-dimensional heat conduction calculation is created to predict the temperature distribution for both steady and transient states. The model is benchmarked against experimental data performed at Sandia National Laboratory for both bare and swirl tape coolant channel mockups. The results show very good agreements with the data for steady and transient states. The model is then used to predict the thermal behavior of the ITER plasma facing and structural materials due to plasma instability event where 60 MJ/m~2 plasma energy is deposited over 500 ms. The results for ITER divertor response is analyzed and compared with HEIGHTS results.
机译:已经开发/更新了数学模型,以模拟国际热核实验堆(ITER)分流器模块的稳态和瞬态热工水力。该模型可预测装甲涂层,分流板结构材料和冷却剂通道的热响应。选定的传热相关性涵盖了正常和异常情况下ITER的所有运行条件。该模型还说明了装甲材料的熔化,汽化和凝固。开发的模型将为HEIGHTS多维综合仿真程序包提供快速基准。本模型将冷却剂通道划分为指定的轴向区域,将分流板划分为指定的径向区域,然后创建二维热传导计算以预测稳态和瞬态的温度分布。该模型以桑迪亚国家实验室针对裸露和涡流带冷却剂通道模型的实验数据为基准。结果表明,与稳态和瞬态数据非常吻合。然后该模型用于预测由于等离子体不稳定性事件而引起的ITER等离子体表面和结构材料的热行为,其中在500 ms内沉积了60 MJ / m〜2等离子体能量。分析了ITER偏滤器响应的结果,并将其与HEIGHTS结果进行了比较。

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