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Liquid hydrogen mass flow through a multiple orifice Joule-Thomson device

机译:液氢质量流经多孔焦耳-汤姆森装置

摘要

Liquid hydrogen mass flow rate, pressure drop, and temperature drop data were obtained for a number of multiple orifice Joule-Thomas devices known as visco jets. The present investigation continues a study to develop an equation for predicting two phase flow of cryogens through these devices. The test apparatus design allowed isenthalpic expansion of the cryogen through the visco jets. The data covered a range of inlet and outlet operating conditions. The mass flow rate range single phase or two phase was 0.015 to 0.98 lbm/hr. The manufacturer's equation was found to overpredict the single phase hydrogen data by 10 percent and the two phase data by as much as 27 percent. Two modifications of the equation resulted in a data correlation that predicts both the single and two phase flow across the visco jet. The first modification was of a theoretical nature, and the second strictly empirical. The former reduced the spread in the two phase data. It was a multiplication factor of 1 - X applied to the manufacturer's equation. The parameter X is the flow quality downstream of the visco jet based on isenthalpic expansion across the device. The latter modification was a 10 percent correction term that correlated 90 percent of the single and two phase data to within +/- 10 percent scatter band.
机译:液态氢的质量流量,压降和温度降数据是通过许多称为粘性喷嘴的多孔焦耳-托马斯装置获得的。本研究继续进行研究,以开发方程式,以预测通过这些设备的冷冻剂的两相流。测试设备的设计允许冷冻剂通过粘胶喷嘴等焓膨胀。数据涵盖了进口和出口操作条件的范围。单相或两相的质量流量范围为0.015至0.98lbm / hr。发现制造商的公式将单相氢气数据高估了10%,将两相氢气数据高估了27%。对方程式的两次修改导致了数据相关性,该数据相关性预测了通过粘性射流的单相和两相流。第一个修改具有理论性质,第二个修改完全基于经验。前者减少了两相数据的传播。它是制造商方程式的1-X乘数。参数X是基于整个设备的等焓膨胀的粘性射流下游的流动质量。后一个修改是10%的校正项,将90%的单相和两相数据与+/- 10%的散射带相关。

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