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Modelling of mechanical and filtration processes near the well with regard to anisotropy

机译:关于各向异性井附近的机械和过滤过程建模

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A geomechanical approach to modeling deformation and seepage is presented. Three stages of modeling are described: choice of an appropriate mechanical model and its adaptation to the case in question, experimental determination of parameters of the model, simulation of processes of seepage for particular configurations of the well. The applied model allows describing the main specific characteristics of mechanical behavior of the collector: the influence of the pore pressure on deformation; the influence of not only shear but also comprehensive stresses and pore pressure on the transition to inelastic behavior; the appearance of inelastic volumetric deformation and its nontrivial dependence on the stress state; the anisotropy of elastic, strength and seepage properties; non-obvious dependence of permeability on the stress strain state. The model unites essential characteristics of Hill's plastic flow theory for anisotropic materials and the Drucker-Prager theory for inelastic deformation of soils. The results of experimental determination of the involved parameters obtained using true triaxial loading system for the collector of Vladimir Filanovsky field in the Caspian Sea are presented.
机译:提出了建模变形和渗流的地质力学方法。描述了三个阶段的建模阶段:选择适当的机械模型及其适应所讨论的情况,模型参数的实验测定,井的特定配置的渗流的模拟。所应用的模型允许描述收集器的机械行为的主要特点:孔隙压力对变形的影响;不仅对剪切而且综合应力和孔隙压力的影响对无弹性行为;非弹性体积变形的外观及其对应力状态的非增强依赖性;弹性,强度和渗流性能的各向异性;渗透率对应力应变状态的非明显依赖性。该模型统一山坡塑料流动理论的基本特征,对各向异性材料和德鲁克 - 漫步理论进行无弹性变形。提出了使用Caspian海中Vladimir Filanovsky领域的真正三轴装载系统获得的涉及参数的实验结果。

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