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Transient Analysis on Helium Coolant Tube Break Accident of Dual-functional Lithium Lead Test Blanket Module

机译:双功能锂铅试验毯模块氦气冷却管断裂事故的瞬态分析

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Dual-functional Lithium Lead Test Blanket Module (DFLL-TBM) was proposed by China for testing in the International Thermonuclear Experimental Reactor (ITER).When an in-TBM helium coolant tube breaks, high pressure helium will discharge into the Pb-Li breeding zones. The pressure shock in the TBM will threaten the structural integrity and safety of ITER. Simulation and analysis on helium coolant tube break accident of DFLL-TBM was performed, and two cases with different break sizes were considered. Computational results indicate that intense pressure waves spread quickly from the break to the surrounding structures and the variation of pressure in the TBM breeding box is drastic especially when the pressure wave propagation encounters large resistance such as at the bending corner of the flow channel, the inlet and outlet of Pb-Li, etc. The maximum pressure in the TBM breeding box which is even higher than the operating pressure of helium also occurs in these zones. Although the pressure shock lasts for a very short time, its effect on the structural integrity of DFLL-TBM needs to be paid attention to.
机译:中国提出了在国际热核实验堆(ITER)中进行测试的双功能锂铅试验毯模块(DFLL-TBM),当TBM内氦冷却剂管破裂时,高压氦会排放到Pb-Li品种中区域。 TBM中的压力冲击将威胁ITER的结构完整性和安全性。对DFLL-TBM氦冷却液管断裂事故进行了仿真分析,并考虑了两种断裂尺寸不同的情况。计算结果表明,强烈的压力波从断裂处迅速扩散到周围结构,并且TBM繁殖箱中的压力变化剧烈,尤其是当压力波传播遇到较大阻力时,例如在流道的弯曲角,入口处。在这些区域中,TBM繁殖箱中的最高压力甚至比氦气的工作压力还要高。尽管压力冲击会持续很短的时间,但它对DFLL-TBM的结构完整性的影响仍需引起注意。

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