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Overview of the Current Status of IFMIF-DONES Secondary Heat Removal System Design

机译:IFMIF-DONES二次除热系统设计现状概述

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The present paper summarizes the current status of the Secondary Heat Removal System (SHRS) of the IFMIF-DONES (International Fusion Material Irradiation Facility - Demo Oriented Neutron Source). As part of the Lithium systems (LS) in IFMIF-DONES, SHRS is the responsible sub-system for the removal of the heat which develops in the LS-Test Assembly (TA) during the Li-DT reaction. In this way, it has an important role in maintaining the stable lithium flow by providing controlled temperature at the inlet of TA. In SHRS, a somewhat conventional hot oil system serves as an intermediate heat removal sub-system between the main liquid lithium loop and the water cooling system. The latter serves as the final heat sink. During the preliminary design phase, the concept developed during the IFMIF-EVEDA (Engineering Validation and Engineering Design Activities) phase served as a basis, but its applicability was studied with special regard to the effect of the difference in the transferred heat of IFMIF and IFMIF-DONES on the selection of the thermal layout, from point of view of cost, complexity and safety. The selected thermal layout consists of two intermediate oil loops with three heat exchangers and two different organic oils as heat transfer mediums. Following the definition of the thermal layout, the main units were selected, a conceptual pipeline layout was designed which corresponds to the current building configuration and a preliminary thermal-mechanical assessment was performed in order to assist the design of the supporting structures.
机译:本文总结了IFMIF-DONES(国际聚变材料辐照设施-面向演示的中子源)二次除热系统(SHRS)的现状。作为IFMIF-DONES中锂系统(LS)的一部分,SHRS是用于除去在Li-DT反应期间LS测试组件(TA)中产生的热量的负责任子系统。这样,通过在TA的入口处提供受控的温度,它在维持稳定的锂流量中起着重要的作用。在SHRS中,有些常规的热油系统用作主液态锂回路和水冷却系统之间的中间排热子系统。后者用作最终的散热器。在初步设计阶段,以在IFMIF-EVEDA(工程验证和工程设计活动)阶段开发的概念作为基础,但在研究其适用性时特别考虑了IFMIF和IFMIF的传热差异的影响。 -从成本,复杂性和安全性的角度,选择散热布局。选定的热布局由两个中间的油回路组成,这些回路具有三个热交换器和两种不同的有机油作为传热介质。根据热布局的定义,选择了主要单元,设计了与当前建筑物配置相对应的概念性管道布局,并进行了初步的热机械评估,以协助支撑结构的设计。

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