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The admissibility domain of rarefaction shock waves in the near-critical vapour-liquid equilibrium region of pure typical fluids

机译:纯典型流体近临界汽液平衡区域内稀疏冲击波的容许域

摘要

Application of the scaled fundamental equation of state of Balfour et al. (Phys. Lett. A, vol. 65, 1978, pp. 223-225) based upon universal critical exponents, demonstrates that there exists a bounded thermodynamic domain, located within the vapour-liquid equilibrium region and close to the critical point, featuring so-called negative nonlinearity. As a consequence, rarefaction shock waves with phase transition are physically admissible in a limited two-phase region in the close proximity of the liquid-vapour critical point. The boundaries of the admissibility region of rarefaction shock waves are identified from first-principle conservation laws governing compressible flows, complemented with the scaled fundamental equations. The exemplary substances considered here are methane, ethylene and carbon dioxide. Nonetheless, the results are arguably valid in the near-critical state of any common fluid, namely any fluid whose molecular interactions are governed by short-range forces conforming to three-dimensional Ising-like systems, including, e.g. water. Computed results yield experimentally feasible admissible rarefaction shock waves generating a drop in pressure from 1 to 6 bar and pre-shock Mach numbers exceeding 1.5.
机译:基于普遍临界指数的Balfour等人的状态的基本尺度方程的应用(Phys。Lett。A,第65卷,1978年,第223-225页)表明存在一个有界的热力学域,位于蒸气-液体平衡区域并接近临界点,具有所谓的负非线性。结果,在液体蒸气临界点附近的有限的两相区域中,具有相变的稀疏冲击波在物理上是允许的。稀疏冲击波的可容许区域的边界是根据控制可压缩流的第一原理守恒定律确定的,并补充了可缩放的基本方程。这里考虑的示例性物质是甲烷,乙烯和二氧化碳。然而,该结果可以说在任何普通流体的近临界状态下都是有效的,即,其分子相互作用受符合三维伊辛样体系的短程力支配的任何流体,包括例如Ising。水。计算结果产生了实验上可行的允许的稀疏冲击波,其产生的压力从1 bar下降到6 bar,并且休克前马赫数超过1.5。

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