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CFD analysis of the natural circulation of helium in the DEMO cryostat during a leak accident

机译:泄漏事故期间氦气氦气自然循环的CFD分析

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After the ingress of helium into the DEMO cryostat the natural convection of the leaked helium is established inside the cryostat, driven by the temperature difference between the cold magnets and warm structures (vacuum vessel and cryostat). The cryostat is a large thin-walled vacuum vessel whose thermal contraction is constrained by its supports to the bioshield. The design of these supports depends on the temperature distribution on the inner side of cryostat walls. The loss of liquid helium from the superconducting coils into the cryostat is studied at both normal and baking conditions of the vacuum vessel. The studied helium leak accident considers the temperature of the magnet coils preserved at 59 K to represent the most severe case. Assuming a quasi steady-state condition to establish the natural convection of helium in the DEMO cryostat, a CFD code was used to determine the temperatures and the heat transfer coefficient on the cryostat inner wall.
机译:在将氦的进入Demo Cryostat之后,在低温恒温器内建立泄漏氦气的自然对流,由冷磁体和温暖结构(真空容器和低温恒温器)之间的温差驱动。低温恒温器是一个大的薄壁真空容器,其热收缩被其支撑件对生物浮雕约束。这些支撑件的设计取决于低温恒温器壁的内侧的温度分布。在真空容器的正常和烘烤条件下研究了从超导线圈进入低温恒温器的液氦的损失。研究的氦泄漏事故考虑了保留在59 k的磁体线圈的温度,以表示最严重的情况。假设准稳态条件建立了在演示低温仪中建立氦的自然对流,使用CFD码来确定低温恒温器内壁上的温度和传热系数。

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