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Developing Control of Cryo-Pump Test Cold-Box System: Some Investigations

机译:开发控制冷冻泵测试冷箱系统:一些调查

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Tokamak, a leading contender of practical fusion reactor, is a popular system using powerful superconducting magnets to confine plasma in a toroidal space to conduct controlled thermo-nuclear reactions required for fusion power research. Tokamak uses state-of-the-art superconducting magnet system requiring specialized cryogenic cooling, which is achieved and maintained by a forced-flow of helium at supercritical state. Supercritical helium mass flow rate as high as 2.21 kg/s at the cryogenic temperature of ~ 4.6 K is necessary not only to obtain cryogenic conditions required for these toroidal superconducting magnet system, but also to regulate cryo-conditions against severe thermal shocks and disturbances due to exothermic plasma reactions and other operational variations. In prior work, the largest cryogenic centrifugal pump was developed to meet and obtain such special cryogenic conditions with various normal and off-normal operating modes. However, such special cryo-pump needs to be tested first rigorously in a special, custom-designed cryogenic test set-up before using them in actual Tokamak systems. A dedicated test-system, called Test Cold-Box, is proposed and developed to test such large cryogenic centrifugal pump. The test-system consists of a liquid helium sub-cooler bath, heat-exchangers, control valves, heaters, etc. In our work, a suitable multi-loop control scheme for the Test Cold-Box is also proposed. Classic multi-loop PID control scheme with classic Ziegler-Nichols and modern IMC tuning have been evaluated using ASPEN HYSYS simulation environment. The paper describes this Test Cold-Box system including cryo-pump along with suitable controls, and its operational analysis in ASPEN HYSYS simulation environment.
机译:托卡马克,实用聚变反应堆的主要竞争者,是使用强大的超导磁体以限制等离子体中的环形空间进行聚变功率研究需要受控热核反应的流行的系统。托卡马克使用状态的最先进的超导需要专门的低温冷却,其通过在超临界状态氦的强制流动达到并保持磁体系统。超临界氦质量流率高达2.21公斤/秒〜4.6的极低温K是必要的,不仅以获得用于这些环形超导磁体系统所需的低温条件下,也能调节针对严重的热冲击和干扰,由于低温条件至放热反应等离子体和其他操作变化。在以前的工作中,最大的低温离心泵的开发,以满足和获得各种正常和非正常运行模式这种特殊的低温条件。然而,这种特殊的低温泵需要首先严格的测试特别定制设计的低温测试的建立在实际的托卡马克系统中使用它们。专用测试系统,称为Test冷芯盒,提出并开发测试这样大的低温离心泵。该测试系统包括一个液态氦再冷浴,换热器,控制阀,加热器等。在我们的工作中,为测试冷芯盒合适的多环控制方案还提出。与经典的齐格勒 - 尼科尔斯和现代IMC调谐经典多回路PID控制方案已使用ASPEN HYSYS模拟环境评估。本文描述了该测试冷芯盒系统,包括适当的控制沿低温泵,并在ASPEN HYSYS模拟环境中的运营分析。

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