首页> 外文期刊>International journal of multiscale computational engineering >AN ELASTOPLASTIC MULTISCALE, MULTIPHYSICS MIXED GEOMECHANICAL MODEL FOR OIL RESERVOIRS USING ADAPTIVE MESH REFINEMENT METHODS
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AN ELASTOPLASTIC MULTISCALE, MULTIPHYSICS MIXED GEOMECHANICAL MODEL FOR OIL RESERVOIRS USING ADAPTIVE MESH REFINEMENT METHODS

机译:自适应网格细化的弹塑性多尺度,多物理场混合地球力学模型

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摘要

Simulation of fluid flow and deformation of porous media are important steps in the management and development of petroleum reservoirs. Fluid flow in an oil reservoir occurs on a wide range of scales. Due to the fact that simulating with respect to all the scales in multiple physical media exceeds current computational capabilities, the multiscale multiphysics mixed geomechanical model (M(3)GM) has been recently developed. Solid deformation is important in simulation of fluid pattern, petroleum production strategy, and protection of the uppermost equipment. In this paper, an elastoplastic model is added to M(3)GM, to increase the accuracy of M(3)GM in the simulation of solid deformation. Also, the mesh dimension is refined adaptively at some parts of the solid phase, according to the density of input data and concluded results. Finally, the model predictions are compared with the other simulations, and reasonable agreements are obtained.
机译:流体流动和多孔介质变形的模拟是石油储层管理和开发的重要步骤。储油罐中的流体流动范围广泛。由于在多种物理介质中对所有比例进行模拟都超出了当前的计算能力,因此最近开发了多比例多物理场混合地球力学模型(M(3)GM)。固体变形在流体形态模拟,石油生产策略和最上层设备的保护中很重要。本文将弹塑性模型添加到M(3)GM,以提高M(3)GM在固体变形模拟中的准确性。同样,根据输入数据的密度和结论,可以在固相的某些部分自适应地细化网格尺寸。最后,将模型预测与其他模拟进行比较,并获得合理的一致性。

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