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Arduino-Based Novel Hardware Design for Liquid Helium Level Measurement:

机译:基于Arduino的液氦液位测量新型硬件设计:

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Liquid helium (LHe) is used as a cryogen in a variety of applications involving superconductivity and is routinely monitored for conducting low-temperature experiments. Thermoacoustic oscillations, which are inevitably present inside closed LHe containers, are utilized for level detection by sensing the vibrations at the warm end of a thin capillary tube inserted into the Dewar. The position of the capillary tube at which a sudden change occurs in these oscillations is manually sensed to identify the liquid level. The present work proposes a novel hardware design to identify the thermoacoustic oscillations in a reliable way using an accelerometer driven by an Arduino microcontroller. Further, an automated approach has been devised to quantify the rate of change of these helium oscillations to measure the LHe level. The proposed method has been tested during several trials on a 120 L and 100 L capacity Dewar using the proposed hardware, and the mean error in measuring the LHe level was calculated to be less than 1 cm in comparison with the gold standard niobium-titanium level sensor. The results encourage the use of the proposed method to evolve as a cost-effective alternative to the widely used superconducting level sensors in measuring LHe level.
机译:液态氦(LHe)在涉及超导性的各种应用中用作冷冻剂,并定期进行低温实验监测。封闭的LHe容器内不可避免地会出现热声振荡,通过检测插入杜瓦瓶中的细毛细管的热端的振动来进行液位检测。手动感测在这些振荡中发生突然变化的毛细管的位置以识别液位。本工作提出了一种新颖的硬件设计,以使用由Arduino微控制器驱动的加速度计以可靠的方式识别热声振荡。此外,已设计出一种自动方法来量化这些氦气振荡的变化率以测量LHe水平。在使用所建议的硬件对120 L和100 L容量的杜瓦瓶进行的多次试验中,对所提出的方法进行了测试,与金标准铌钛水平相比,LHE含量的平均测量误差小于1 cm。传感器。结果鼓励了所提出的方法的发展,成为测量LHe液位时广泛使用的超导液位传感器的一种经济有效的替代方案。

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