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Simulation of cryogenic He spills as basis for planning of experimental campaign in the EVITA facility

机译:模拟低温He泄漏作为EVITA设施中的实验活动计划的基础

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摘要

Code validation activities have been promoted inside the European fusion development agreement (EFDA) to test the capability of codes in simulating accident phenomena in fusion facilities and, specifically, in the International thermonuclear experimental reactor (ITER). This work includes a comparison between three different computer codes (CONSEN, MAGS and MELCOR) and one analytical model (ITER Model) in simulating cryogenic helium releases into the vacuum vessel (W) which contains hot structures. The scope was the evaluation of the transient pressure inside the W. The results will be used to design a vent duct (equivalent diameter, length and roughness) to allow pressure relief for the protection of the VV, which has a maximum design pressure of 200 kPa. The model geometry is a simplified scheme preserving the main features of the ITER design. Based on the results of the simulations, a matrix of experiments was developed to validate the calculated results and to design the vent duct for the ITER W. The experiments are planned to be performed in the EVITA test facility, located in the CEA Cadarache research centre (France).
机译:欧洲核聚变开发协议(EFDA)内已促进了代码验证活动,以测试代码模拟聚变设施中,特别是国际热核实验堆(ITER)中事故现象的能力。这项工作包括比较三种不同的计算机代码(CONSEN,MAGS和MELCOR)和一种分析模型(ITER模型),以模拟向包含热结构的真空容器(W)中释放低温氦气。范围是对W内部瞬态压力的评估。结果将用于设计通风管(等效直径,长度和粗糙度),以释放压力以保护VV,最大设计压力为200千帕模型的几何形状是保留ITER设计主要特征的简化方案。根据仿真结果,开发了一个实验矩阵来验证计算结果并设计ITER W的通风管。该实验计划在位于CEA Cadarache研究中心的EVITA测试设施中进行。 (法国)。

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