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首页> 外文期刊>Cryogenics >Modelling of the fin type heat exchanger for the HTS current leads of W7-X and JT-60SA
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Modelling of the fin type heat exchanger for the HTS current leads of W7-X and JT-60SA

机译:W7-X和JT-60SA的HTS电流引线的翅片式热交换器的建模

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摘要

The Forschungszentrum Karlsruhe has taken over the responsibility for the design, construction and testing of the high temperature superconductor (HTS) current leads for two fusion experiments, i.e. the stellarator Wendelstein 7-X (W7-X) and the satellite tokamak JT-60SA. One important task for the design of the HTS current lead is the heat exchanger (HEX). In the current leads for W7-X and JT-60SA the HEX consists of the central conductor with meander flow fins to achieve a cross flow HEX. A design optimisation requires the knowledge of the heat transfer characteristics of the HEX. Therefore, 3D CFD simulations were performed to compute local Nusselt and Reynolds numbers. From the CFD results a 1D system code description and heat transfer correlations have been deduced. This paper describes the 3D-CFD and 1D system code as well as the results of the numerical calculations. The results were vali-dated using experimental results of HEX mock-ups. The model was extended to the HEX covering the temperature range between 60 K and room temperature leading to a single Nusselt-Reynolds number correlation. Finally the parameters for optimised HTS current leads for W7-X and JT-60SA are presented.
机译:卡尔斯鲁厄(Forschungszentrum)卡尔斯鲁厄(Forschungszentrum Karlsruhe)接管了高温超导体(HTS)电流引线的设计,建造和测试工作,用于两个融合实验,即恒星型Wendelstein 7-X(W7-X)和托卡马克卫星JT-60SA。设计HTS电流引线的一项重要任务是热交换器(HEX)。在W7-X和JT-60SA的电流引线中,HEX由中央导体和蜿蜒的散热片组成,以实现横流HEX。设计优化需要了解HEX的传热特性。因此,进行了3​​D CFD仿真以计算局部Nusselt和Reynolds数。从CFD结果可以推导出一维系统代码描述和热传递相关性。本文介绍了3D-CFD和1D系统代码以及数值计算的结果。使用十六进制模型的实验结果对结果进行了验证。该模型扩展到十六进制,涵盖了60 K和室温之间的温度范围,从而导致单个Nusselt-Reynolds数相关。最后,给出了用于W7-X和JT-60SA的优化HTS电流引线的参数。

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