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Results of high heat flux tests and structural analysis of the new solid tungsten divertor tile for ASDEX Upgrade

机译:用于ASDEX升级的新型固态钨分流砖的高热通量测试结果和结构分析

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Tungsten as plasma-facing material for fusion devices is currently the most favorable candidate. In general solid tungsten is used for shielding the plasma chamber interior against the high heat generated from the plasma. For the purposes of implementation at ASDEX Upgrade and as a contribution to ITER the thermal performance of tungsten tiles has been extensively tested in the high heat flux test facility GLADIS during the development phase and beyond. These tests have been performed on full scale tungsten tile prototypes including their clamping and cooling structure. Simulating the adiabatically thermal loading due to plasma operation in ASDEX Upgrade, the tungsten tiles have been subjected to a thermal load with central heat flux of 10-24 MW/m(2) and absorbed energy between 370 and 680 kJ. This loading results in maximum surface temperatures between 1300 degrees C and 2800 degrees C. The tests in GLADIS have been accompanied by intensive numerical investigations using FEA methods. For this purpose a multiple nonlinear finite element model has been set up. This paper discusses the main results of the high heat flux final tests and their numerical simulation. Moreover, first results from the operation in the ASDEX Upgrade experiment are presented. (C) 2015 Elsevier B.V. All rights reserved.
机译:钨作为面向聚变设备的面向等离子体的材料是目前最有利的候选材料。通常,固态钨用于屏蔽等离子体腔室内部免受等离子体产生的高热量。出于在ASDEX升级中实施的目的,并且作为对ITER的贡献,在开发阶段及以后的阶段,钨砖的热性能已在高热通量测试设备GLADIS中进行了广泛的测试。这些测试已在全尺寸的钨瓦原型上执行,包括其夹紧和冷却结构。在ASDEX升级版中,模拟了由于等离子运行而产生的绝热热负荷,钨瓦受到的热负荷为10-24 MW / m(2)的中心热通量,并且吸收的能量在370至680 kJ之间。这种载荷导致最高表面温度在1300摄氏度和2800摄氏度之间。GLADIS中的测试伴随着使用FEA方法进行的大量数值研究。为此,建立了一个多元非线性有限元模型。本文讨论了高热通量最终测试的主要结果及其数值模拟。此外,还介绍了ASDEX升级实验中的操作结果。 (C)2015 Elsevier B.V.保留所有权利。

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