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Conceptual design of the enhanced coolant purification systems for the European HCLL and HCPB test blanket modules

机译:欧洲HCLL和HCPB测试毯模块的增强型冷却液净化系统的概念设计

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The Coolant Purification Systems (CPSs) is one of the most relevant ancillary systems of European Helium Cooled Lead Lithium (HCLL) and Helium Cooled Pebble Bed (HCPB) Test Blanket Modules (TBMs) which are currently in the preliminary design phase in view of their installation and operation in ITER.The CPS implements mainly two functions: the extraction and concentration of the tritium permeated from the TBM modules into the primary cooling circuit and the chemistry control of helium primary coolant.During the HCLL and HCPB-TBSs (Test Blanket Systems) Conceptual Design Review (CDR) in 2015 it was recognized the need of reducing the tritium permeation into the Port Cell #16 of ITER. To achieve this and, then, to lower the tritium partial pressure in the Helium Cooling Systems in normal operation, the helium flow-rate treated by each CPS has been increased of almost one order of magnitude.In 2017, to satisfy the CDR outcomes and the new design requirements requested by Fusion for Energy (F4E, the European Domestic Agency for ITER), ENEA performed a preliminary design of the "enhanced" CPSs.This paper presents the current design of the "enhanced" CPSs, focusing on design requirements, assumptions, selection of technologies and preliminary components sizing.
机译:冷却液净化系统(CPS)是欧洲氦冷却铅锂(HCLL)和氦冷却卵石床(HCPB)测试毯模块(TBM)最相关的辅助系统之一,鉴于它们的应用,它们目前处于初步设计阶段在ITER中进行安装和操作.CPS主要实现两个功能:从TBM模块渗透到初级冷却回路中的and的提取和浓缩以及氦初级冷却剂的化学控制。在HCLL和HCPB-TBS期间(测试毯系统) )在2015年进行的概念设计审查(CDR),人们认识到需要减少into渗透到ITER的16号港口小室中。为了实现这一目标,然后降低正常运行中氦气冷却系统中的partial分压,每个CPS处理的氦气流量几乎增加了一个数量级.2017年,为了满足CDR结果并根据Fusion for Energy(F4E,欧洲国内ITER机构)要求的新设计要求,ENEA对“增强型” CPS进行了初步设计。本文介绍了“增强型” CPS的当前设计,重点是设计要求,假设,技术选择和初步组件的大小。

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