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Fluid-solid coupling numerical simulation method for evaluating effect of wellbore strengthening in fractured formation

机译:流体固体耦合数值模拟井眼性骨折形成效果的数值模拟方法

摘要

A fluid-solid coupling numerical simulation method for evaluating the effect of wellbore strengthening in a fractured formation includes steps of: establishing an elastic deformation equation of rocks around the wellbore; establishing and solving the fluid flow equations within fractures and plugging zone, respectively; substituting the discretized elastic deformation equation of the rocks around the borehole wall into the fluid flow equations of fractures to obtain a fluid-solid coupling equation set for wellbore strengthening in a fractured formation; and finally solving the fluid-solid coupling equation set; and substituting basic parameters into the fluid-solid coupling equation set, and simulating mechanical response characteristics, width evolution characteristics and flow distribution characteristics of plugged fractures under different parameter combinations. The present invention systematically considers the complex flow states of plugged fractures during wellbore strengthening, as well as the deformation and seepage characteristics plugging zone under multi-force coupling.
机译:一种用于评估骨折形成井眼强化效果的流体固耦合数值模拟方法包括步骤:在井筒周围建立岩石的弹性变形方程;分别在裂缝和堵塞区内建立和求解流体流动方程;将岩石周围的岩石的离散弹性变形方程用岩石围绕骨折的流体流动方程代替,以获得用于骨折形成的井筒固体耦合方程;最后求解流体固耦合方程;并将基本参数替换为流体固耦合方程组,并模拟不同参数组合下堵塞骨折的机械响应特性,宽度演化特性和流量分布特性。本发明系统地考虑了在井筒增强过程中堵塞裂缝的复杂流动状态,以及多力耦合下的变形和渗流特性堵漏区。

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