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Operation characteristics of the helium refrigerator for the large helical device with a dummy load apparatus

机译:带有假负载装置的大型螺旋装置用氦制冷机的运行特性

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The helium refrigerator/liquefier operation for the Large Helical Device (LHD) with a dummy load apparatus (DLA) has been conducted under four different refrigeration conditions: no heat load mode; precooling mode; steady state mode and extra heat input mode. The stable operation of each mode, which simulates the refrigeration requirements for the LHD, was successfully demonstrated under semi-automatic control of the refrigerator. To establish the sequential control of the system, historical and real time trends of PID controlled electro-pneumatic actuators for valves and its corresponding thermal-hydraulic behavior of helium gas in the refrigeration system ware collected as a data base. According to the operating experiences, the instabilities in the refrigeration system ware observed. These instability mechanisms are considered to be quite complex: they are assumed to be coupled and/or combinations of heat exchangers in the refrigerator with approximately 90 to 100 m long supercritical helium hydraulic paths. To suppress these instabilities, adjustments of PID controlled valves and modifications of pressure control for the compressors were conducted. The paper describes operation characteristics of the helium refrigerator/liquefier with a DLA. The instabilities in the refrigeration system are also discussed.
机译:具有虚拟负载装置(DLA)的大型螺旋装置(LHD)的氦制冷机/液化器操作已在四种不同的制冷条件下进行:无热负载模式;预冷模式;稳态模式和额外热量输入模式。在冰箱的半自动控制下,已成功演示了模拟LHD制冷要求的每种模式的稳定运行。为了建立系统的顺序控制,需要将PID控制的阀门电动气动执行器的历史和实时趋势及其在制冷系统中的氦气的相应热工行为作为数据库进行收集。根据操作经验,观察到制冷系统的不稳定性。这些不稳定性机制被认为是非常复杂的:假定它们是耦合的和/或冰箱中具有约90至100 m长的超临界氦液压路径的热交换器的组合。为了抑制这些不稳定性,对PID控制阀进行了调整,并对压缩机进行了压力控制的修改。本文介绍了带有DLA的氦制冷机/液化器的运行特性。还讨论了制冷系统中的不稳定性。

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