论文标题

超临界两相层流层混合层的自相似解

Self-similar solution of a supercritical two-phase laminar mixing layer

论文作者

Poblador-Ibanez, Jordi, Davis, Branson, Sirignano, William A.

论文摘要

以前的液体作品突然在超临界压力下接触气体的液体表明,由于热力学相平衡,相位的相位和液态气体界面两侧的扩散层的共存。对分离板近场的液体和气流之间的层流混合层的相关数值研究表明,质量,动量和热扩散层以非常相似的方式在很高的压力下以自相似的方式演变。在本文中,就相似性变量而言,高压,两相的层状混合层方程是重铸。考虑液态烃和气态氧。应用在液态气体界面处的自由式条件和适当的匹配条件。为了求解方程系统,选择了基于Soave-Redlich-kwong状态方程的实体热力学模型。通过直接求解层流混合层方程获得的结果的比较显示了应用于非理想的两相流的相似性方法的有效性。即使气体比液体更热,热量也可能在高压进入液体时发生。最后,提出了广义相关性,以代表不同问题设置的混合层厚度的演变。

Previous works for a liquid suddenly contacting a gas at a supercritical pressure show the coexistence of both phases and the generation of diffusion layers on both sides of the liquid-gas interface due to thermodynamic phase equilibrium. A related numerical study of a laminar mixing layer between the liquid and gas streams in the near field of the splitter plate suggests that mass, momentum and thermal diffusion layers evolve in a self-similar manner at very high pressures. In this paper, the high-pressure, two-phase, laminar mixing-layer equations are recast in terms of a similarity variable. A liquid hydrocarbon and gaseous oxygen are considered. Freestream conditions and proper matching conditions at the liquid-gas interface are applied. To solve the system of equations, a real-fluid thermodynamic model based on the Soave-Redlich-Kwong equation of state is selected. A comparison with results obtained by directly solving the laminar mixing-layer equations shows the validity of the similarity approach applied to non-ideal two-phase flows. Even when the gas is hotter than the liquid, condensation can occur at high pressures while heat conducts into the liquid. Finally, a generalized correlation is proposed to represent the evolution of the mixing layer thickness for different problem setups.

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