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Fluid-Solid Coupling Analysis on Evolution of In-Situ Stress Field by Water Injection in Oilfield

机译:油田注水地应力场演化的流固耦合分析

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Water injection in oilfield may break initial balance of reservoir and lead to re-distribute of stress and deformation of strata. For further research of the evolution characteristics of in-situ field by water injection, the influence on reservoir by water injection was analyzed and different variables were set to study the effects of depth, injection-withdraw ratio and elastic modulus on strain and stress of strata based on fluid-solid coupling theory. Research shows that: As the water injection, the formation pressure around injection well is greater than that of the production well and the effective stress around injection well is less than that of production well. The deeper the formation is, the smaller the normal strain and vertical displacement are. Besides, the largest shear strain is on the top of reservoir, while the smallest is in central reservoir and different injection-withdraw ratios have significant influence on formation pressure. Elastic modulus mainly influences the deformation of the formation and deformation size is negatively related to the elastic modulus. This study provides a reference for casing damage under the effect of water injection.
机译:油田注水可能破坏储层的初始平衡,并导致应力的重新分布和地层变形。为了进一步研究注水地层的演化特征,分析了注水对储层的影响,并设定了不同的变量来研究深度,注水比和弹性模量对地层应变和应力的影响。基于流固耦合理论研究表明:注水过程中,注水井周围的地层压力要比生产井大,注水井周围的有效应力要小于生产井。地层越深,法向应变和垂直位移越小。此外,最大的剪切应变在储层顶部,而最小的应变在中央储层,不同的注采比对地层压力有显着影响。弹性模量主要影响地层的变形,变形量与弹性模量负相关。该研究为注水作用下的套管损坏提供了参考。

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