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首页> 外文期刊>International Journal of Solids and Structures >A pseudo-3D model for hydraulic fracture growth in a layered rock
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A pseudo-3D model for hydraulic fracture growth in a layered rock

机译:分层岩石液压骨折生长的伪3D模型

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Abstract This paper presents a new pseudo-3D (P3D) model for a hydraulic fracture growing in a layered rock with contrasts in both material properties and in situ stresses. In the model, the vertically planar fracture is divided along the lateral direction into cells. Within each cell, the cross-sectional deformation is plane strain, and the fluid pressure is allowed to vary vertically. The cells are discretized by displacement discontinuity elements that are formulated to include the elastic layered effect. The fluid flow in the cell is in two directions. Along the central part, which is of uniform pressure, the fluid flow is lateral, corresponding to the main component of fluid transport. Near the vertical fracture edge of a cell, the flow can be vertical and is generated by the vertical pressure gradient. This part of the cell is called the filling part. When the pressure in the filling part reaches the level equal to that in the central part, the flow direction switches from vertical to lateral. The filling and central parts both contribute to fracture height growth. The proposed P3D problem is solved in a coupled manner that accounts for the two-directional flow and cross-sectional deformation through a two-loop iterative method. In the outer loop, the fluid storage of the central part is updated by satisfying mass conservation in the lateral direction, and in the inner loop, the cross-sectional elastic deformation and the influxes to the filling parts are found by satisfying energy minimization subject to an equality constraint on the central-part volume of a cell. The results of pressure ad fracture width at a given elapsed time are thus obtain
机译:<![cdata [ 抽象 本文提出了一种新的伪3D(P3D)模型,用于在层状岩石中生长的液压骨折,其两种材料特性与原位形成鲜明对比压力。在该模型中,垂直平面裂缝沿着横向划分为细胞。在每个电池内,横截面变形是平面应变,并且允许流体压力垂直变化。通过配制成包括弹性分层效果的位移不连续元件来离散细胞。电池中的流体流动是两个方向。沿着压力均匀的中心部分,流体流动是横向的,对应于流体运输的主要成分。在电池的垂直断裂边缘附近,流动可以是垂直的并且由垂直压力梯度产生。细胞的这部分称为填充部分。当填充部分中的压力达到等于该中心部分中的水平时,流向从垂直切换到横向。填充和中枢部分既有助于骨折高度生长。所提出的P3D问题以耦合的方式求解,该耦合方式通过双环迭代方法占双向流动和横截面变形。在外环中,通过在横向方向上满足质量储存,并且在内圈中,通过满足能量最小化对象,找到横截面弹性变形和填充部件的横截面弹性变形和涌入到填充部分的液体存储器的流体储存。细胞中央部分体积的平等约束。因此获得给定经过时间的压力AD断裂宽度的结果

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