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Sweeping heat flux loads on divertor targets: Thermal benefits and structural impacts

机译:散流器目标上的热通量负荷过大:热效益和结构影响

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One possibility to mitigate the maximum high heat flux (HHF) load on the target is to sweep the position of the strike-point back and forth periodically in order to spread the peak thermal load over a wider width. The aim of this work is to investigate the thermal and structure-mechanical responses of a water-cooled tungsten mono-block target under cyclic HHF loads which are applied in sweeping modes. The study was performed by means of finite element analysis using an ITER-like target geometry. Extensive parametric simulations were carried out for a wide range of HHF loads and for selected sweeping amplitudes and frequencies, respectively. The simulation shows that the maximum temperature and the maximum heat flux to the coolant can be significantly reduced by sweeping. For the parameters studied in this work (0.5-4 Hz, 5-20 cm), higher sweeping frequency or smaller sweeping amplitude offers advantages in terms of fatigue lifetime of interlayer. Sweeping is suitable for the stationary loading if the sweeping frequency is high enough (e.g. 4Hz) based on the fatigue lifetime prediction of interlayer. (C) 2015 EURATOM. Published by Elsevier B.V. All rights reserved.
机译:减轻目标上的最大高热通量(HHF)负载的一种可能性是,周期性地来回扫描触击点的位置,以便将峰值热负载分布在更宽的宽度上。这项工作的目的是研究循环扫描HHF载荷下水冷钨单块靶的热响应和结构力学响应。该研究是通过使用类似ITER的目标几何体进行有限元分析来进行的。分别针对各种HHF负载以及选定的扫描幅度和频率进行了广泛的参数仿真。仿真表明,通过扫掠可以最大程度地降低最高温度和通往冷却剂的最大热通量。对于这项工作中研究的参数(0.5-4 Hz,5-20 cm),较高的扫描频率或较小的扫描幅度在夹层的疲劳寿命方面具有优势。如果基于中间层的疲劳寿命预测,扫频频率足够高(例如4Hz),则扫频适用于固定负载。 (C)2015年欧元。由Elsevier B.V.发布。保留所有权利。

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