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Thermal, electromagnetic and structural analysis of gas baffles for the TCV divertor upgrade

机译:TCV分流器升级用气体挡板的热,电磁和结构分析

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As part of an ongoing divertor upgrade of the TCV tokamak it is planned to add gas baffles to form a divertor chamber of variable closure. The baffles promise to increase the compression of neutral particles in the divertor and, thereby, extend the research on the TCV divertor towards more reactor relevant, highly dissipative divertor regimes. It is foreseen to construct the baffles entirely of polycrystalline graphite that was used for the existing TCV protection files. The thermal considerations of the baffle design are based on the heat loads expected during normal operation, where even an extremely large increase in the power carrying plasma channel towards the baffle over the entire 2 seconds duration of a TCV discharge gives no cause for concern. An electromagnetic analysis considers halo currents flowing through the baffles, which can occur during disruptions, as a worst-case scenario. It is found that a halo current of 250 kA results in an average vertical force in the baffles of up to 950 kN/m(3). The fixture of the baffle files to the vacuum vessel is designed for a maximum tensile stress of 31 MPa and maximum compressive stress of 60 MPa that remains a factor of two below their respective material limits. The obtained results of the thermal, electromagnetic and structural analysis thus validate the proposed baffle design.
机译:作为TCV tokamak正在进行的分流器升级的一部分,计划增加气体挡板以形成可变关闭的分流器室。挡板有望增加分流器中中性颗粒的压缩,从而将TCV分流器的研究扩展到更多与反应堆相关的,高度耗散的分流器状态。可以预见,将完全由用于现有TCV保护文件的多晶石墨制成挡板。挡板设计的散热考虑是基于正常运行期间预期的热负荷,在这种情况下,在TCV放电的整个2秒钟内,朝向挡板的载流等离子体通道的极大增加,也无需担心。电磁分析将流过折流板的光晕电流视为最坏的情况,该电流可能会在中断期间发生。发现250 kA的光晕电流在挡板中产生的平均垂直力高达950 kN / m(3)。挡板锉固定在真空容器上的固定装置设计为最大拉应力为31 MPa,最大压应力为60 MPa,仍比其各自的材料极限低2倍。由此获得的热,电磁和结构分析结果验证了所提出的挡板设计。

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