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Finite element analysis of deformation mechanism for porous materials under fluid-solid interaction

机译:固液相互作用下多孔材料变形机理的有限元分析

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Deformation of underground rocks, also named rock creep, is treated as porous materials which usually results in many engineering problems, especially in petroleum engineering. However, it can be controlled by fluid-solid interaction in porous materials, and the deformation mechanism of underground rocks with fluid-solid interaction was analysed by finite element computing method. Specifically, an Iterative computing method and a computational procedure of two-way fluid-solid coupling are used to simulate deformation process until the fluid and solid solution variables are fully coupled. A typical application example was taken in Jinzhou oil production plant of Liaohe Oil Field Company, and a finite element model is built by combined application of parasolid and native modelling methods. According to the calculation results, deformation mechanism of underground rocks is proposed, and some advice is also presented.
机译:地下岩石的变形(也称为岩石蠕变)被视为多孔材料,通常会导致许多工程问题,尤其是在石油工程中。然而,它可以通过多孔材料中的流固耦合来控制,并通过有限元计算方法来分析具有流固耦合的地下岩石的变形机理。具体地,使用双向流体-固体耦合的迭代计算方法和计算过程来模拟变形过程,直到流体和固溶体变量完全耦合为止。以辽河油田公司锦州采油厂为典型应用实例,结合准固体和自然建模方法建立了有限元模型。根据计算结果,提出了地下岩石的变形机理,并提出了一些建议。

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