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GENUINE TWO-PHASE FLOW DYNAMICS WITH A FREE INTERFACE SEPARATING GAS-LIQUID MIXTURE FROM GAS?

机译:真正的两相流动力学与自由的界面从气体中分离出气液混合物?

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摘要

In this work we deal with the no-slip drift-flux model for gas-liquid flow dynamics. We focus on a situation where there is a free interface separating the gas-liquid mixture from a pure gas region which takes a positive pressure p?. This situation is highly relevant for gas-liquid flow in the context of wellbore operations. Previous works have assumed that there is vacuum, i.e., the pressure p? is zero. The positive pressure p? > 0 creates a boundary term that must be treated in a consistent manner throughout the analysis. We derive time-independent estimates and make some observations related to the role played by p?. The estimates allow us to discuss the long-time behavior of the two-phase flow system. In particular, it is shown that the stationary solution connecting the gas-liquid mixture to the pure gas region with the specified pressure p? in a continuous manner is asymptotically stable for sufficiently small initial perturbations. The analysis clearly shows how this perturbation directly depends on the size of the outer pressure p?. A higher pressure p? allows for larger initial perturbations from steady state. One ingredient in the analysis is the rate at which the liquid mass decays to zero at the free interface. Insight into mechanisms that control the decay rate of the liquid mass at the free interface is also of interest since such transition zones often are associated with instabilities in numerical discretizations of two-phase models.
机译:在这项工作中,我们处理了用于气液流动动力学的无滑动漂移通量模型。我们着眼于这样一种情况,即有一个自由界面将气液混合物与纯气体区域分开,该区域需要正压p1。在井筒作业的情况下,这种情况与气液流动高度相关。先前的工作假定存在真空,即压力p 2。是零。正压p? > 0会创建一个边界项,在整个分析过程中必须以一致的方式对其进行处理。我们推导出与时间无关的估计,并进行一些与p?的作用有关的观察。这些估计值使我们可以讨论两相流系统的长期行为。特别是表明,固定溶液以规定的压力p 2将气-液混合物连接到纯气体区域。对于足够小的初始扰动,以连续方式渐近稳定。分析清楚地表明了这种扰动是如何直接取决于外部压力p 1的大小的。较高的压力p?允许从稳态产生更大的初始扰动。分析中的一种成分是液体质量在自由界面处衰减为零的速率。深入了解控制自由界面处液体质量衰减率的机制也很有趣,因为这样的过渡区通常与两相模型的数值离散化中的不稳定性相关。

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