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Thermal and thermal-stress analyses of IFMIF liquid lithium target assembly

机译:IFMIF液态锂靶组件的热和热应力分析

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For International Fusion Material Irradiation Facility (IFMIF) lithium (Li) target system, thermal shielding is important to keep temperature of the target assembly higher enough to avoid solidification of liquid Li. Required thickness of thermal shielding was clarified through thermal analysis of the target assembly. The thickness under vacuum condition could be reduced by using shielding material with low emissivity. Also it was found that the liquid Li should be charged under vacuum condition. Furthermore, thermal deformation is critical issue for maintaining stability of high-speed liquid Li flow along the concave backwall. Thermal-stress analysis of the backwall considering the nuclear heating was performed to evaluate the thermal deformation. The results showed that backwall deformation would be reduced by increasing heat transfer between the backwall and the target assembly.
机译:对于国际聚变材料辐照设施(IFMIF)锂(Li)目标系统,热屏蔽对于保持目标组件的温度足够高以避免液态锂固化至关重要。通过对目标组件进行热分析,明确了所需的热屏蔽厚度。通过使用低辐射率的屏蔽材料可以减小真空条件下的厚度。还发现液体Li应该在真空条件下充电。此外,热变形对于维持高速液体Li沿着凹底壁流动的稳定性至关重要。对考虑了核加热的后壁进行了热应力分析,以评估热变形。结果表明,通过增加后壁与目标组件之间的热传递,可以减少后壁变形。

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