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A cycle configuration for large-scale helium refrigerator for fusion devices towards complete mitigation of the effects of pulsed heat load

机译:用于融合设备的大型氦制冷机的循环配置,可完全减轻脉冲热负荷的影响

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摘要

Large-scale helium refrigerators in fusion devices work in pulsed heat load condition. The immediate effect of pulsed heat load is mass flow rate fluctuation at the low pressure return stream to the cold-box of the refrigerator. As a result, thermodynamic properties of all the intermediate state points of the cold-box vary widely and may go beyond operating limits. Therefore, for continuous operation, the refrigerators need modification in cycle configuration in order to mitigate the effects of pulsed heat load generated out of the operation of the fusion devices. A number of mitigation techniques exist and none of them is capable of mitigating the mass flow rate fluctuation completely. However, combinations of two or more methods have been found to be effective in mitigation of the effects of pulsed load to the maximum possible extent. In this paper, a cold-end configuration has been proposed that is constituted of combination of different mitigation schemes proposed in previous works. Dynamic simulations are performed to predict the performance of the modified cycle configuration and for validation of the concept towards achievement of complete mitigation. Results of the work have revealed that through the proposed cold-end configuration, almost complete mitigation can be obtained.
机译:聚变设备中的大型氦制冷机在脉冲热负荷条件下工作。脉冲热负荷的直接影响是进入冰箱冷箱的低压回流处的质量流量波动。结果,冷箱的所有中间状态点的热力学性质变化很大,并且可能超出操作极限。因此,对于连续操作,冰箱需要修改循环配置,以便减轻由于融合设备的操作而产生的脉冲热负荷的影响。存在许多缓解技术,但是没有一种能够完全缓解质量流量波动。然而,已经发现两种或更多种方法的组合在最大可能程度上有效地减轻了脉冲负载的影响。本文提出了一种冷端配置,该配置由先前工作中提出的不同缓解方案组成。进行动态仿真以预测修改后的循环配置的性能,并验证该概念以实现完全缓解。工作结果表明,通过建议的冷端配置,几乎可以获得完全缓解。

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