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Ex-Vessel Loss of Coolant Accident Analysis of ITER Divertor Cooling System Using Modified RELAP/SCADAPSIM/Mod 4.0

机译:使用改进的RELAP / SCADAPSIM / MOD 4.0,EX-船舶冷却剂事故分析的冷却液事故分析

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The initial design of ITER incorporated the use of carbon fiber composites in high heat flux regions and tungsten was used for low heat flux regions. The current design includes tungsten for both these regions. The present work includes thermal hydraulic modeling and analysis of ex-vessel loss of coolant accident (LOCA) for the divertor (DIV) cooling system. The purpose of this study is to show that the new concept of full tungsten divertor is able to withstand in the accident scenarios. The code used in this study is RELAP/SCA-DAPSIM/MOD 4.0. A parametric study is also carried out with different in-vessel break sizes and ex-vessel break locations. The analysis discusses a number of safety concerns that may result from the accident scenarios. These concerns include vacuum vessel (VV) pressurization, divertor temperature profile, passive decay heat removal capability of structure, and pressurization of tokamak cooling water system. The results show that the pressures and temperatures are kept below design limits prescribed by ITER organization.
机译:ITER的初始设计掺入了高热通量区域中的碳纤维复合材料,并且钨用于低热通量区域。目前的设计包括两个区域的钨。本作本作包括热液压建模和分析转栓(DIV)冷却系统的冷却液事故(LOCA)的船舶损失。本研究的目的是表明,全钨方位器的新概念能够承受事故情景。本研究中使用的代码是RETAP / SCA-DAPSIM / MOD 4.0。参数研究也用不同的血管断裂尺寸和前血管断开位置进行。分析讨论了事故情景可能导致的许多安全问题。这些担忧包括真空容器(VV)加压,转移率温度曲线,结构的无源衰减除去能力,以及托卡马克冷却水系统的加压。结果表明,迭代组织规定的压力和温度保存下方。

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