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Virtual Element Method for Geomechanical Simulations of Reservoir Models

机译:储层模型地质力学模拟的虚拟元素方法

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In this paper we study the use of Virtual Element method for geomechanics. Our emphasis is on applications to reservoir simulations. The physical processes that form the reservoirs, such as sedimentation, erosion and faulting, lead to complex geometrical structures. A minimal representation, with respect to the physical parameters of the system, then naturally leads to general polyhedral grids. Numerical methods which can directly handle this representation will be highly favorable, in particular in the setting of advanced work-flows. The Virtual Element method is a promising candidate to solve the linear elasticity equations on such models. In this paper, we investigate some of the limits of the VEM method when used on reservoir models. First, we demonstrate that care must be taken to make the method robust for highly elongated cells, which is common in these applications, and show the importance of calculating forces in terms of traction on the boundary of the elements for elongated distorted cells Second, we study the effect of triangulations on the surfaces of curved faces, which also naturally occur in subsurface models We also demonstrate how a more stable regularization term for reservoir application can be derived.
机译:在本文中,我们研究了虚拟元素方法对地质力学的使用。我们的重点是应用于水库模拟。形成储存器的物理过程,例如沉降,腐蚀和断层,导致复杂的几何结构。关于系统的物理参数的最小表示,然后自然地导致一般多面体网格。可以直接处理该表示的数值方法将是非常有利的,特别是在进行高级工作流程中。虚拟元素方法是求解这些模型的线性弹性方程的有希望的候选者。在本文中,我们在储层模型中使用时调查VEM方法的一些限制。首先,我们证明必须注意使该方法对高度细长的细胞进行鲁棒,这在这些应用中是常见的,并且表明在细长扭曲细胞的元素边界上的牵引力方面计算力量的重要性,我们研究三角形结构对弯曲面的表面的影响,它在地下模型中也是自然的,我们还展示了如何导出储层应用程序的更稳定的正则化术语。

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