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Numerical simulation of fracture network generation in naturally fractured reservoirs

机译:天然裂缝性储层裂缝网络生成的数值模拟

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In this study, numerical modeling of hydraulic fractures propagation is performed to analyze the forming mechanism of complex fracture network during the process of hydraulic fracturing in naturally fractured reservoirs. The model couples fracture deformation with fluid flow in the fracture network and horizontal wellbore. The enhanced 2D displacement discontinuity method is used to capture fracture deformation. When fracturing fluid fills the natural fracture before crossing happens, the interaction criterion between hydraulic fracture and natural fracture developed by Gu et al. (2012) is modified to incorporate fluid pressure in natural fracture. The implicit level set schemes based on tip asymptotical solution is presented to locate the fracture tips. Simulation results indicate that fracture spacing and stress anisotropy have significant influence on the propagation path and geometry of multiple fractures. Accounting fluid pressure drop in the wellbore will lead to asymmetrical geometry and stress shadowing effect of side fractures on the middle fracture when three-cluster fractures propagate simultaneously. Multiple fractures will be directed back to the maximum stress direction after long propagation length. Results show that stress shadowing effect and natural fractures are key controlling factors of complex fracture networks in unconventional reservoirs. (C) 2016 Elsevier B.V. All rights reserved.
机译:本文通过对水力压裂裂缝扩展进行数值模拟,以分析天然裂缝性储层水力压裂过程中复杂裂缝网络的形成机理。该模型将裂缝变形与裂缝网络和水平井眼中的流体流动耦合。增强的二维位移不连续性方法用于捕获裂缝变形。当压裂液在交汇之前充满天然裂缝时,Gu等人提出了水力裂缝与天然裂缝之间的相互作用准则。 (2012年)进行了修改,以将流体压力纳入自然裂缝。提出了基于尖端渐近解的隐式水平集方案来定位裂缝尖端。仿真结果表明,裂缝间距和应力各向异性对多条裂缝的传播路径和几何形状有重要影响。当三簇裂缝同时传播时,井眼中的流体压力降将导致侧裂缝对中间裂缝的不对称几何形状和应力遮蔽效应。长的传播长度后,多个裂缝将被引导回最大应力方向。结果表明,应力遮蔽效应和天然裂缝是非常规油藏复杂裂缝网络的关键控制因素。 (C)2016 Elsevier B.V.保留所有权利。

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