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Numerical methods for modelling fluid flow in highly heterogeneous and fractured reservoirs

机译:高非均质裂缝性油藏流体流动模拟的数值方法

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摘要

In this thesis I develop and test new numerical methods for the numerical modelling of flow in highly heterogeneous and fractured reservoirs. We present the governing equations for immiscible two-phase fluid flow in a slightly compressible porous medium with capillary pressure. We discretize these equations using the node control volume finite element (NCVFE) method. The NCVFE method solves the pressure at the vertices of elements, and the control volumes are constructed around them. We present a numerical study of the method to test its accuracy in modelling multi-phase fluid flow in heterogeneous systems. Particularly, we study the performance of the method in domains with large contrasts in their material properties such as fractures, sealing or conductive faults, and highly heterogeneous reservoirs. We also present a study on the effects of petro-physical properties on the oil recovery for fractured reservoirs such as the permeability contrast between the fractured and matrix regions and the presence of capillary pressure in the matrix.udWe then present a new numerical method to overcome the limitations of the current NCVFE approach. The new method is called the interface control volume finite element (ICVFE) method. The method drastically decreases the smearing effects observed in the NCVFE method, while being mass conservative and numerically consistent. The pressure is computed at the interfaces of elements, and the control volumes are constructed around them. Its accuracy and convergence are benchmarked using three-dimensional tetrahedron elements for various complex cases. We show ICVFE is more accurate for modelling multi-phase flow in highly heterogeneous and fractured reservoirs than NCVFE.udFurthermore, we present a new upstream mobility calculation method for NCVFE that improves the modelling for multi-phase fluid flow problems.
机译:在本文中,我开发并测试了新的数值方法,用于高度非均质和裂缝性油藏的渗流数值模拟。我们提出了在具有毛细管压力的略微可压缩的多孔介质中不可混溶的两相流体流动的控制方程。我们使用节点控制体积有限元(NCVFE)方法离散化这些方程。 NCVFE方法解决了单元顶点处的压力,并围绕它们构建了控制体积。我们提供了一种方法的数值研究,以测试其在异构系统中多相流体流动建模中的准确性。特别是,我们研究了该方法在其材料特性(例如裂缝,密封或导电断层,以及高度非均质储层)中具有较大差异的区域中的性能。我们还对岩石物理性质对裂缝性油藏的采油率的影响进行了研究,例如裂缝与基质区域之间的渗透率对比以及基质中毛细压力的存在。 ud然后,我们提出了一种新的数值方法来克服了当前NCVFE方法的局限性。新方法称为界面控制体积有限元(ICVFE)方法。该方法大大降低了在NCVFE方法中观察到的拖尾效应,同时保持了质量保守且在数值上是一致的。在单元界面处计算压力,并围绕它们构建控制量。针对各种复杂情况,使用三维四面体元素对它的准确性和收敛性进行了基准测试。我们显示出ICVFE比NCVFE更能准确地模拟高度非均质和裂缝性储层中的多相流动。 ud此外,我们提出了一种新的NCVFE上游流动性计算方法,该方法改进了多相流体流动问题的建模。

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    Abushaikha Ahmad Sami;

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  • 年度 2014
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