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Rapid Thermal-Hydraulic Analysis and Design Optimization of ITER Upper ELM Coils

机译:ITER上ELM线圈的热工水力快速分析和设计优化

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ITER edge localized mode (ELM) coils are important components of the in-vessel coils (IVCs) and they are designed for mitigating or suppressing ELMs. The coils located on the vacuum vessel (VV) and behind the blanket are subjected to high temperature due to the nuclear heat from the plasma, the Ohmic heat induced by the working current and the thermal radiation from the environment. The water serves as coolant to remove the heat deposited into the coils. Based on the results of nuclear analysis, the thermal-hydraulic analysis is performed for the preliminary design of upper ELM coils using a rapid evaluation method based on 1D treatment. The thermal-hydraulic design and operating parameters including the water flow velocity are optimized. It is found that the rapid evaluation method based on 1D treatment is feasible and reliable. According to the rapid analysis method, the thermal hydraulic parameters of two water flow schemes are computed and proved similar to each other, providing an effective basis for the coil design. Finally, considering jointly the pressure drop requirement and the cooling capacity, the flow velocity is optimized to 5 m/s.
机译:ITER边缘局部模式(ELM)线圈是车载线圈(IVC)的重要组成部分,它们设计用于缓解或抑制ELM。位于真空容器(VV)上和毯子后面的线圈由于来自等离子体的核热,工作电流感应的欧姆热以及来自环境的热辐射而经受高温。水用作冷却剂以除去沉积到线圈中的热量。基于核分析的结果,使用基于一维处理的快速评估方法,对上部ELM线圈的初步设计进行了热工水力分析。优化了热工液压设计和运行参数,包括水流速。发现基于一维处理的快速评估方法是可行和可靠的。根据快速分析方法,计算了两种水流方案的热工水力参数,并证明它们彼此相似,为线圈设计提供了有效的依据。最后,结合压力降要求和冷却能力,将流速优化为5 m / s。

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