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A Study of the Critical Nozzle for Flow Rate Measurement of High-Pressure Hydrogen Gas

A Study of the Critical Nozzle for Flow Rate Measurement of High-Pressure Hydrogen Gas
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摘要 The mass flow rate measurement using a critical nozzle shows the validity of the inviscid theory, indicating that the discharge coefficient increases and approaches unity as the Reynolds number increases under the ideal gas law However, when the critical nozzle measures the mass flow rate of a real gas such as hydrogen at a pressure of hundreds bar, the discharge coefficient exceeds unity, and the real gas effects should be taken into account. The present study aims at investigating the flow features of the critical nozzle using high-pressured hydrogen gas. The axisymmetric, compressible Navier-Stokes computation is employed to simulate the critical nozzle flow, and a fully implicit finite volume method is used to discretize the governing equation system. The real gas effects are simulated to consider the intermolecular forces, which account for the possibility of liquefying hydrogen gas. The computational results are compared with past experimental data. It has been found that the coefficient of discharge for real gas can be corrected properly below unity adopting the real gas assumption.
出处 《Journal of Thermal Science》 SCIE EI CAS CSCD 2007年第1期28-32,共5页 热科学学报(英文版)
关键词 critical nozzle compressible flow hydrogen gas ideal gas law real gas effect 高压氢气 临界喷嘴 流速测量 可压缩流
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