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A three-dimensional solution of hydraulic fracture width for wellbore strengthening applications

机译:用于井眼强化应用的液压断裂宽度的三维解决方案

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摘要

Determining the width of an induced hydraulic fracture is the first step for applying wellbore strengthening and hydraulic fracturing techniques. However, current 2-D analytical solutions obtained from the plane strain assumption may have large uncertainties when the fracture height is small. To solve this problem, a 3-D finite element method (FEM) is used to model wellbore strengthening and calculate the fracture width. Comparisons show that the 2-D plane strain solution is the asymptote of the 3-D FEM solution. Therefore, the 2-D solution may overestimate the fracture width. This indicates that the 2-D solution may not be applicable in 3-D conditions. Based on the FEM modeling, a new 3-D semi-analytical solution for determining the fracture width is proposed, which accounts for the effects of 3-D fracture dimensions, stress anisotropy and borehole inclination. Compared to the 2-D solution, this new 3-D semi-analytical solution predicts a smaller fracture width. This implies that the 2-D-based?old?design for wellbore strengthening may?overestimate the fracture width, which can?be reduced using?the?proposed?3-D?solution.?It also allows an easy way to calculate the fracture width in complex geometrical and geological conditions. This solution has been verified against 3-D finite element calculations for field applications.
机译:确定诱导的液压骨折的宽度是施加井眼强化和液压压裂技术的第一步。然而,当断裂高度小时,从平面应变假设获得的电流二进制分析溶液可能具有大的不确定性。为了解决这个问题,使用3-D有限元方法(FEM)来模拟井筒强化并计算裂缝宽度。比较表明,二维平面应变溶液是3-D有限元解的渐近。因此,2-D溶液可以高估裂缝宽度。这表明2-D解决方案可能不适用于3-D条件。基于FEM建模,提出了一种用于确定裂缝宽度的新的3-D半分析解决方案,其占3-D裂缝尺寸,应力各向异性和钻孔倾斜的影响。与二维溶液相比,该新的3-D半分析溶液预测较小的裂缝宽度。这意味着基于2-D的?旧的?井筒加强设计可能?估计骨折宽度,可以呢?使用?提出?3-D?溶液。它还允许一种简单的方法来计算复杂几何和地质条件下的裂缝宽度。该解决方案已经针对用于现场应用的3-D有限元计算。

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