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A New Way of Compositional Simulation Without Phase Labeling

机译:没有相位标记的组成模拟的一种新方法

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Current relative permeability models rely on phase labeling, and cannot accurately capture the effect of compositional variations on relative permeabilities and capillary pressures in enhanced oil recovery (EOR) processes. Discontinuities in flux calculations not only cause serious convergence and stability, but also affects the estimated recovery factor. We developed a fully compositional simulation model using an equation of state (EoS) for relative permeabilities to eliminate the unphysical discontinuities in flux functions caused by phase labeling. In addition, we extended our relative permeability EoS to three phases. The model can capture complex hysteresis effects on three-phase relative permeability. The tuned model is used for simulation of multi-cycle WAG injection. The approach allows for a new search scheme to improve initial estimates for flash calculation. The results show increased robustness of high- resolution compositional simulation for both front calculations (recovery estimates) and convergence of flash algorithms. This paper provides a novel way forward to develop a fully compositional reservoir simulation based solely on continuous and robust equation-of-state relative permeabilities. In addition, this paper provides a detailed analysis of the effects of discontinuous phase labeling on simulation performance and accuracy for 1-D and 2-D water-alternating-gas flooding and three-hydrocarbon-phase flow. The results demonstrate the significant benefits of using an EoS for relative permeabilities.
机译:电流相对渗透性模型依赖于相位标记,不能准确地捕获成分变异对增强的采油(EOR)过程中相对渗透率和毛细管压力的影响。助焊剂计算中的不连续性不仅导致严重收敛和稳定性,而且影响估计的恢复因子。我们使用状态(EOS)方程开发了一种完全成分模拟模型,以实现相对渗透性,以消除由相位标记引起的磁通功能中的不关象力不连续性。此外,我们将相对渗透性EO扩展为三个阶段。该模型可以捕获对三相相对渗透性的复杂滞后效应。调谐模型用于仿真多循环摇头注射。该方法允许新的搜索方案来改进闪光计算的初始估计。结果表明,用于前台计算(回收估计)和闪光算法的收敛性的高分辨率组成模拟的鲁棒性。本文提供了一种新颖的方式,以开发完全组成的储层模拟,仅基于连续和鲁棒方程的相对渗透性。此外,本文还提供了对1-D和2-D水交替 - 气体泛滥的模拟性能和精度的不连续相位标记对仿真性能和精度影响的详细分析。结果表明使用EOS进行相对渗透性的显着益处。

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