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SPE 125634 A New Enriched Finite Element Method to Simulate Hydrocarbon Reservoirs Containing Subsurface Features

机译:SPE 125634一种新的富集的有限元方法,用于模拟含有地下特征的烃储层

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In this paper, we present a new computational framework to simulate reservoirs containing complicated geological and engineering features (for example, faults, induced or natural fractures, and perforations). Unlike traditional computational methods, the new approach does not require the mesh to honor the geometrical shapes of subsurface features. The effects of these features on the solution are captured by enriching the finite element approximation based on the Partition of Unity theory. This new simulation capability eliminates the laborious meshing work traditionally required for modeling com- plicated subsurface features without compromising solution accuracy. It is especially useful in the detailed analysis of near-well physics where subsurface features at this scale need to be modeled both accurately and efficiently. In cases where the subsurface features are evolving, the computational mesh does not have to know a priori the shape of the evolving subsurface features. This method is particularly useful in the study of curvature changes of hydraulic fractures due to evolving stress fields away from the well. A number of examples are given to demonstrate the effectiveness of the proposed approach. The examples are grouped into three broader application areas: (1) well performance analysis of fractured completions, (2) deformation characteristics of reservoirs containing fracture networks, and (3) simulation of fracture interference and re-orientation.
机译:在本文中,我们提出了一种新的计算框架来模拟包含复杂地质和工程特征的储存器(例如,故障,诱导或自然骨折和穿孔)。与传统的计算方法不同,新方法不需要网格来尊重地下功能的几何形状。通过基于Unity理论的分区来富集有限元近似来捕获这些特征对解决方案的影响。这种新的模拟能力消除了传统上的费力啮合工作,以便在不影响解决方案准确性的情况下进行建模覆盖的地下特征。它特别有用在详细分析附近的井底,其中需要准确且有效地建模这种规模的地下特征。在地下特征在不断发展的情况下,计算网格不必知道先验的源区的形状。该方法在研究液压裂缝的曲率变化的研究中特别有用,这是由于远离井的不断的应力场。给出了许多例子来证明所提出的方法的有效性。将实施例分为三个更广泛的应用领域:(1)骨折完成的井性能分析,(2)含有骨折网络的储层的变形特性,以及(3)骨折干扰和重新定位的模拟。

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