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A 3D elasto-plastic FEM program developed for reservoir Geomechanics simulations: Introduction and case studies

机译:为储层地质力学模拟开发的3D弹塑性FEM程序:简介和案例研究

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The development of yielded or failure zone due to an engineering construction is a subject of study in different disciplines. In Petroleum engineering, depletion from and injection of gas into a porous rock can cause development of a yield zone around the reservoir. Studying this phenomenon requires elasto-plastic analysis of geomaterial, in this case the porous rocks. In this study, which is a continuation of a previous study investigating the elastic behaviour of geomaterial, the elasto-plastic responses of geomaterial were studied. A 3D finite element code (FEM) was developed, which can consider different constitutive models. The code features were explained and some case studies were presented to validate the output results of the code. The numerical model was, then, applied to study the development of the plastic zone around a horizontal porous formation subjected to the injection of gas. The model is described in detail and the results are presented. It was observed that by reducing the cohesion of rocks the extension of the plastic zone increased. Comparing to the elastic model, the ability to estimate the extension of the yield and failure zone is the main advantage of an elasto-plastic model.
机译:由于工程建设而导致的屈服或破坏带的发展是不同学科的研究主题。在石油工程中,天然气从多孔岩中枯竭并注入其中会导致在储层周围形成屈服带。要研究这种现象,需要对岩土材料(在这种情况下为多孔岩石)进行弹塑性分析。在这项研究的基础上,它是对先前研究土工材料弹性行为的研究的延续,研究了土工材料的弹塑性响应。开发了可考虑不同本构模型的3D有限元代码(FEM)。解释了代码功能,并提供了一些案例研究来验证代码的输出结果。然后,将数值模型用于研究受气体注入的水平多孔地层周围塑性区的发育。详细描述了该模型,并给出了结果。观察到,通过减小岩石的内聚力,塑性区的延伸增加了。与弹性模型相比,估计屈服和破坏区域扩展的能力是弹塑性模型的主要优点。

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