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Heat transfer characteristics of the first wall with graphite sheet interlayer

机译:石墨薄板夹层的第一壁的传热特性

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Aiming at a design study of the first wall structure for next fusion devices and cost-down, the heat transfer characteristics of the first wall structure with CFC tiles bolted to a heat sink were investigated with a variety of graphite sheets and fixing-bolt torque conditions. The heat load tests of the mock-up were performed with the heat fluxes of 1 and 3 MW/m~2 on JAEA electron beam irradiation system. The experimental results showed that the first wall structure with 0.1-mm thickness x 3 PGSs (Pyrolytic Graphite Sheet; Panasonic Co., Ltd.) had the highest heat transfer performance. Furthermore, the first wall structure with the PGSs withstood the heat fluxes of 1 MW/m2 x 100 s and 3 MW/m~2 x 20 s. The maximum surface temperatures of the CFC tile were 500℃, 800℃, respectively. These results indicated that the bolted tile structure with the graphite sheets can be utilized as the first wall at the long pulse operation with the heat flux of several MW/m~2.
机译:针对下一台聚变设备的第一壁结构的设计研究和降低成本的目的,研究了用多种石墨板和固定螺栓扭矩条件将CFC瓦固定在散热器上的第一壁结构的传热特性。 。在JAEA电子束辐照系统上,以1和3 MW / m〜2的热通量进行模型的热负荷测试。实验结果表明,厚度为0.1mm x 3个PGS的第一壁结构(热解石墨板;松下有限公司)具有最高的传热性能。此外,具有PGS的第一壁结构经受住了1MW / m2×100s和3MW / m〜2×20s的热通量。 CFC瓷砖的最高表面温度分别为500℃,800℃。这些结果表明,带有石墨片的螺栓瓦结构可以在长脉冲操作下以几兆瓦/米2的热通量用作第一壁。

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