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Fully Implicit Simulation of Polymer Flooding with MRST

机译:用MRST的聚合物洪水充分隐含模拟

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The present work describes a fully implicit simulator for polymer injection implemented in the free, open-source MATLAB Reservoir Simulation Toolbox (MRST). Polymer injection is one of the widely used enhanced oil recovery (EOR) techniques and complicated physical process is involved, which makes accurate simulation very challenging. The proposed work is intended for providing a powerful and flexible tool to investigate the polymer injection process in realistic reservoir scenarios. Within the model, the polymer component is assumed to be only transported in the water phase and adsorbed in the rock. The hydrocarbon phases are not influenced by the polymer and they are described with the standard, three-phase, black-oil equations The effects of the polymer are simulated based on the Todd-Longstaff mixing model, accounting for adsorption, inaccessible pore space, and permeability reduction effects. Shear-thinning/thickening effects based on shear rate are also included by the means of a separate inner-Newton iteration process within the global nonlinear iteration. The implementation is based on the automatic differentiation framework in MRST (MRST-AD), and an iterative linear solver with a constrained pressure residual (CPR) preconditioner is used to solve the resulting linear systems efficiently. We discuss certain implementation details to show how convenient it is to use the existing functionality in MRST to develop an accurate and efficient polymer flooding simulator for real fields With its modular design, vectorized implementation, support for stratigraphic and general unstructured grids, and automatic differentiation framework, MRST is a very powerful prototyping and experimentation platform for development of new reservoir simulators To verify the simulator, we first compare it with a commercial simulator and good agreement is achieved Then, we apply the new simulator to a few realistic reservoir models to investigate the benefit of adding polymer injection. Computational efficiency is demonstrated, and we argue that the presented model can be used as an efficient prototyping tool to evaluate new models for polymer-water-flooding processes in real reservoir fields.
机译:本工作描述了一种完全隐含的模拟器,用于在自由的开源Matlab储层模拟工具箱(MRST)中实现的聚合物注射模拟器。聚合物注入是广泛使用的增强的采油(EOR)技术之一,涉及复杂的物理过程,这使得精确的模拟非常具有挑战性。拟议的工作旨在提供强大而灵活的工具,以研究现实的储层情景中的聚合物注入过程。在模型内,假设聚合物组分仅在水相中传送并吸附在岩石中。烃相不会受到聚合物的影响,并用标准,三相,黑油方程描述了聚合物的效果基于TODD-Longstaff混合模型来模拟,占吸附,可接近的孔隙空间,以及渗透性降低效应。基于剪切速率的剪切稀释/增稠效果也包括在全局非线性迭代中单独的内牛顿迭代过程的装置。该实现基于MRST(MRST-AD)中的自动差异框架,并且使用具有约束的压力残差(CPR)预处理器的迭代线性求解器用于有效地解决所得的线性系统。我们讨论了某些实施细节,以展示使用MRST的现有功能,为实际领域开发一种准确,高效的聚合物泛洪模拟器,以其模块化设计,矢量化实现,支持地层和一般非结构化网格,以及自动差异化框架MRST是一个非常强大的原型设计和实验平台,用于开发新的水库模拟器,以验证模拟器,我们首先将其与商业模拟器进行比较,并达成了良好的协议,我们将新的模拟器应用于一些现实的水库模型来调查添加聚合物注入的益处。证明了计算效率,我们认为呈现的模型可以用作有效的原型工具,以评估真正的储层领域中的聚合物 - 水洪水过程的新模型。

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