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A homogeneous non-equilibrium two-phase critical flow model

机译:均相非平衡两相临界流模型

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摘要

A non-equilibrium two-phase single-component critical (choked) flow model for cryogenic fluids is developed from first principle thermodynamics. Modern equations-of-state (EOS) based upon the Helmholtz free energy concepts are incorporated into the methodology. Extensive validation of the model is provided with the NASA cryogenic data tabulated for hydrogen, methane, nitrogen, and oxygen critical flow experiments performed with four different nozzles. The model is used to develop a hydrogen critical flow map for stagnation states in the liquid and supercritical regions.
机译:从第一原理热力学出发,开发了一种用于低温流体的非平衡两相单组分临界(窒息)流动模型。基于亥姆霍兹自由能概念的现代状态方程(EOS)被纳入该方法中。通过使用四个不同喷嘴进行的氢气,甲烷,氮气和氧气的临界流量实验制成表格的NASA低温数据,对模型进行了广泛的验证。该模型用于为液态和超临界区的停滞状态建立氢气临界流图。

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