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Integrated analysis of the electromagnetical, thermal, fluid flow fields in a Tokamak

机译:托卡马克中电磁,热,流体流场的综合分析

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During the plasma startup, ramp-down and disruption in a Tokamak device, large eddy current would be induced in the electrical conducting components such as coil cases and vacuum vessels. As a result, it causes the large electromagnetic forces and thermal loads to these components. Integrated analysis of these fields must be conducted to ensure the avoidance of these components from any overheating and any over-stress problems under any circumstances. In this paper, we describe the integrated analysis method which combines the electromagnetic, thermal and fluid analysis as well as parameterized finite element modeling technique. The solution procedure to such an integrated problem by ANSYS Physical model is discussed. As an example, the thermal performance of toroidal field (TF) coil case of EAST device after a major plasma disruption is studied. A major disruption of plasma with current of 1.5 MA in EAST device would result in total Joule heat lead of 212 kJ of which some would be transferred to the coil cable resulting in the coolant temperature rise about 0.4 K.
机译:在Tokamak装置中进行等离子启动,减速和破坏期间,会在诸如线圈盒和真空容器之类的导电组件中感应出大的涡流。结果,它对这些部件造成很大的电磁力和热负荷。必须对这些领域进行综合分析,以确保在任何情况下都避免这些组件过热和出现过应力问题。在本文中,我们描述了将电磁,热和流体分析以及参数化有限元建模技术相结合的综合分析方法。讨论了通过ANSYS物理模型解决此类集成问题的过程。例如,研究了主要等离子体破裂后EAST装置的环形磁场(TF)线圈外壳的热性能。在EAST设备中以1.5 MA的电流对等离子体进行重大破坏将导致212 kJ的总焦耳热导,其中一些会转移到线圈电缆上,从而导致冷却液温度升高约0.4 K.

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