Development of a new computational solver for multiphase flows in heterogeneous porous media at different scales

IF 3.6 2区 工程技术 Q1 MECHANICS International Journal of Multiphase Flow Pub Date : 2024-08-06 DOI:10.1016/j.ijmultiphaseflow.2024.104954
Roberto Lange , Gabriel M. Magalhães , Franciane F. Rocha , Pedro V.S. Coimbra , Jovani L. Favero , Rodrigo A.C. Dias , Antonio O.S. Moraes , Mateus P. Schwalbert
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Abstract

This work presents the development of a novel solver tailored for simulating multiphase flows within heterogeneous porous media. Leveraging the Eulerian multi-fluid model coupled with Darcy’s law, the solver demonstrates adaptability across diverse scales, effectively handling heterogeneous porosity and permeability fields. The proposed solver, called upstreamFoam, extends the capabilities of OpenFOAM framework, specifically the multiphaseEulerFoam, by incorporating models for porous media simulations. This integration introduces new features and formulations, allowing for the simulation of compressible multiphase flows in porous media with intricate properties. The approach presented here provides a robust framework for characterizing reservoirs and treating heterogeneous porous systems at different scales. A successful validation of the introduced solver for classical problems with analytical, semi-analytical, and reference solutions is presented. Then, applications on a wide range of multiphase flows in heterogeneous porous media at different scales have been studied, demonstrating the potential of the solver to simulate complex multiphase problems.

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为不同尺度异质多孔介质中的多相流开发新的计算求解器
本研究介绍了一种专为模拟异质多孔介质中的多相流而开发的新型求解器。利用欧拉多流体模型和达西定律,该求解器展示了不同尺度的适应性,可有效处理异质孔隙度和渗透性场。所提出的求解器名为 upstreamFoam,它扩展了 OpenFOAM 框架的功能,特别是多相 EulerFoam,纳入了多孔介质模拟模型。这种集成引入了新的功能和公式,允许模拟具有复杂性质的多孔介质中的可压缩多相流。本文介绍的方法为描述储层特征和处理不同尺度的异质多孔系统提供了一个强大的框架。本文介绍了引入的求解器对经典问题的分析、半分析和参考解的成功验证。然后,研究了在不同尺度异质多孔介质中多相流的广泛应用,展示了求解器模拟复杂多相问题的潜力。
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来源期刊
CiteScore
7.30
自引率
10.50%
发文量
244
审稿时长
4 months
期刊介绍: The International Journal of Multiphase Flow publishes analytical, numerical and experimental articles of lasting interest. The scope of the journal includes all aspects of mass, momentum and energy exchange phenomena among different phases such as occur in disperse flows, gas–liquid and liquid–liquid flows, flows in porous media, boiling, granular flows and others. The journal publishes full papers, brief communications and conference announcements.
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