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Experimental validation of a self-calibrating cryogenic mass flowmeter

机译:自校准低温质量流量计的实验验证

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The Karlsruhe Institute of Technology (KIT) and the WEKA AG jointly develop a commercial flowmeter for application in helium cryostats. The flowmeter functions according to a new thermal measurement principle that eliminates all systematic uncertainties and enables self-calibration during real operation. Ideally, the resulting uncertainty of the measured flow rate is only dependent on signal noises, which are typically very small with regard to the measured value. Under real operating conditions, cryoplant-dependent flow rate fluctuations induce an additional uncertainty, which follows from the sensitivity of the method. This paper presents experimental results with helium at temperatures between 30 and 70 K and flow rates in the range of 4 to 12 g/s. The experiments were carried out in a control cryostat of the 2kW helium refrigerator of the TOSKA test facility at KIT. Inside the cryostat, the new flowmeter was installed in series with a Venturi tube that was used for reference measurements. The measurement results demonstrate the self-calibration capability during real cryoplant operation. The influences of temperature and flow rate fluctuations on the self-calibration uncertainty are discussed.
机译:Karlsruhe技术研究所(KIT)和Weka AG共同开发了一种商业流量计,用于氦低温恒温器。流量计根据新的热测量原理函数,消除了所有系统的不确定性,并在实际操作期间启用自校准。理想地,所得到的测量流速的产生不确定性仅取决于信号噪声,这通常在测量值方面通常非常小。在实际操作条件下,冷冻胶质依赖性流速波动诱导额外的不确定性,从方法的敏感性遵循。本文在30至70 k的温度下呈现氦气,流速范围为4至12g / s。实验是在KIT的TOSKA测试设施的2KW氦冰箱的控制低温恒温器中进行。在低温恒温器内,新的流量计与Venturi管串联安装,用于参考测量。测量结果证明了在真实冷冻植物操作期间的自校准能力。讨论了温度和流速波动对自校准不确定性的影响。

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