贺圆,周芷伟,席冠玉,等. 1.8 K超流氦系统中常温减压泵机组的控制与调试[J]. 真空与低温,2024,30(3):290−294. DOI: 10.12446/j.issn.1006-7086.2024.03.010
引用本文: 贺圆,周芷伟,席冠玉,等. 1.8 K超流氦系统中常温减压泵机组的控制与调试[J]. 真空与低温,2024,30(3):290−294. DOI: 10.12446/j.issn.1006-7086.2024.03.010
HE Y,ZHOU Z W,XI G Y,et al. Control and debugging of warm compressed pump unit in 1.8 K superfluid helium system[J]. Vacuum and Cryogenics,2024,30(3):290−294. DOI: 10.12446/j.issn.1006-7086.2024.03.010
Citation: HE Y,ZHOU Z W,XI G Y,et al. Control and debugging of warm compressed pump unit in 1.8 K superfluid helium system[J]. Vacuum and Cryogenics,2024,30(3):290−294. DOI: 10.12446/j.issn.1006-7086.2024.03.010

1.8 K超流氦系统中常温减压泵机组的控制与调试

Control and Debugging of Warm Compressed Pump Unit in 1.8 K Superfluid Helium System

  • 摘要: 核聚变领域和高能物理等领域内的大型科学装置的迅猛发展,促进了1.8 K/2 K超流氦系统的进步和广泛应用。作为获取超流氦的常用方法,介绍了1.8 K超流氦系统中常温减压泵机组的工艺流程、结构、设计参数、自动控制流程、远程监控的设计以及启动停机过程的性能测试验证。 通过常温减压泵机组的逐步减压控制,快速且稳定地获取了1.8 K超流氦,泵组各实测参数均达到或优于设计参数。

     

    Abstract: The rapid development of large-scale scientific devices in the fields of nuclear fusion and high-energy physics has promoted the progress and widespread application of 1.8 K/2 K superfluid helium systems. The room temperature decompression method is a common method to obtain superfluid helium. The process flow, structure, design parameters, automatic control process, remote monitoring design, start-up and shutdown process and performance test and verification of the warm compressed pump unit in the 1.8 K superfluid helium system were introduced. Through the gradual pressure reduction control of the warm compressed pump unit, 1.8 K superfluid helium was obtained quickly and stably, and all measured parameters of the pump unit reached or exceeded the design parameters.

     

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