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Numerical simulation of draining and drying procedure for the ITER Generic Equatorial Port Plug cooling system

机译:ITER通用赤道口塞冷却系统排水和干燥过程的数值模拟

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For effective vacuum leak testing all cooling circuits serving the ITER vessel and in-vessel components shall be drained and dried so that after this procedure taking less than 100 h the purge gas passing through a component has water content less than 100 ppm. This process is four-stage, with the first stage using a short blast of compressed nitrogen to blow most of water in the coolant channels out of the circuit. This process is hindered by volumes which trap water due to gravity. To remove the trapped water, it is necessary, first, to heat up the structure by hot and compressed nitrogen, and then water is evaporated by depressurized nitrogen. The cooling system of the ITER Diagnostic Equatorial Port Plugs is of a complicated hydraulic configuration. The system branching might make difficult removal of water from the piping in the scheduled draining mode. The authors have proposed the KORSAR computation code to simulate draining of the GEPP cooling circuit. The numerical simulation performed has made it possible to describe the process dynamics during draining of the entire GEPP cooling circuit and to define the process time, amount and location of residual water and evolution of two-phase flow regime. (C) 2016 Elsevier B.V. All rights reserved.
机译:为了进行有效的真空泄漏测试,应排放并干燥用于ITER容器和容器中组件的所有冷却回路,以便在此过程后不到100小时的时间内,通过组件的吹扫气体的水含量小于100 ppm。此过程分为四个阶段,第一阶段使用一小段压缩氮气喷射将冷却剂通道中的大部分水吹出回路。该过程受由于重力而积水的体积的阻碍。为了除去残留的水,首先必须通过热的压缩氮气加热结构,然后通过减压的氮气蒸发水。 ITER诊断赤道仪端口插头的冷却系统具有复杂的液压配置。在计划的排水模式下,系统分支可能会难以从管道中除去水。作者提出了KORSAR计算代码,以模拟GEPP冷却回路的排放。进行的数值模拟使得描述整个GEPP冷却回路排空过程中的过程动态,并定义过程时间,残留水的量和位置以及两相流态的演变成为可能。 (C)2016 Elsevier B.V.保留所有权利。

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