严格多相闪光与先进线性化方案的耦合,用于精确的成分模拟

A. S. Abd, A. Abushaikha, D. Voskov
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引用次数: 0

摘要

通过了解系统中每个流动相的热力学行为,可以量化油藏中流动流体的性质。本工作描述了在实际压力和温度范围内准确预测油气-盐水系统平衡行为的热力学模型的制定和执行的适当技术。三相闪存算法验证了从现有文献中发表的数据。通过使用基于算子的线性化(OBL)建模技术,实现了多相闪变过程以产生线性化的物理特性,从而允许在控制方程的非线性解中组合多个复杂物理特性。这是基于逸度-活度模型和先进的高效线性化方案的碳氢化合物和盐水三相闪蒸计算的首次实现。我们的方法提高了多孔地下储层流体流动等物理现象建模过程的效率和灵活性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Coupling of Rigorous Multiphase Flash with Advanced Linearization Schemes for Accurate Compositional Simulation
The properties of fluids flowing in a petroleum reservoir are quantified by understanding the thermodynamic behavior of each flowing phase in the system. This work describes proper techniques to formulate and execute a thermodynamic model for accurately predicting the equilibrium behavior of oil-gas-brine systems within the practical range of pressure and temperature. The three-phase flash algorithm is validated against published data from the available literature. The multiphase flash procedure is implemented to generate linearized physical properties by using an Operator Based Linearization (OBL) modelling technique allowing for a combination of multiple complex physics in the nonlinear solution of governing equations. This is the first implementation of three-phase flash calculations for hydrocarbons and brines based on fugacity-activity models coupled with an advanced highly efficient linearization scheme. Our approach increases the efficiency and flexibility of the modelling process of physical phenomena such as fluid flow in porous subsurface reservoirs.
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