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基于FEM-DFN的页岩气储层水力压裂复杂裂缝交错扩展模型 被引量:5
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作者 唐煊赫 朱海燕 李奎东 《天然气工业》 EI CAS CSCD 北大核心 2023年第1期162-176,共15页
页岩气藏压裂过程中,常遇到因施工压力超限储层压不开、近井地带裂缝形态复杂而引起砂堵的恶性事故,如何有效模拟复杂裂缝的起裂与交错扩展形态是页岩气体积压裂优化设计的关键。为此,基于有限元—离散裂缝网络(FEM-DFN),考虑水力裂缝... 页岩气藏压裂过程中,常遇到因施工压力超限储层压不开、近井地带裂缝形态复杂而引起砂堵的恶性事故,如何有效模拟复杂裂缝的起裂与交错扩展形态是页岩气体积压裂优化设计的关键。为此,基于有限元—离散裂缝网络(FEM-DFN),考虑水力裂缝扩展的非线性损伤破裂力学行为与裂缝面摩擦效应,改进了拉伸—剪切复合破裂模式的本构方程,建立了基于显式时间积分的页岩气储层水力压裂复杂裂缝交错扩展的多场耦合模型,并在实验室和现场微地震监测中进行了验证。研究结果表明:①水力裂缝与天然裂缝交错机制主要为2类,即被天然裂缝诱导并沿天然裂缝扩展、直接穿透天然裂缝,地质与工程因素对交错机制的转变存在阈值,当排量超过26 m^(3)/min时,或压裂液黏度超过40mPa·s时,或应力差超过18MPa时,或裂缝面摩擦系数超过0.8时,水力裂缝将直接穿透天然裂缝;②天然裂缝对水力裂缝的诱导作用随着两者夹角的变化而变化,在夹角较小的情况下,水力裂缝容易在最大水平主应力方向交汇点之前提前被天然裂缝诱导,而当夹角增大时则在交汇点处进入天然裂缝扩展,且表现为一侧拉张裂缝一侧剪切裂缝;③相邻两簇水力裂缝容易在天然裂缝的诱导作用下相互吸引,进而交汇成优势主裂缝。结论认为,天然裂缝的分布状态是决定压裂裂缝复杂度的关键性因素,研究成果可为中深层页岩气压裂裂缝分析和施工参数优化提供理论与技术支撑。 展开更多
关键词 页岩气藏 水力压裂 天然裂缝 非线性损伤 有限元—离散裂缝网络 水力—天然裂缝 互作用 交错扩展
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A FEM-DFN model for the interaction and propagation of multi-cluster fractures during variable fluid-viscosity injection in layered shale oil reservoir 被引量:9
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作者 Chu-Hao Huang Hai-Yan Zhu +3 位作者 Jian-Dong Wang Jian Han Guang-Qing Zhou Xuan-He Tang 《Petroleum Science》 SCIE CAS CSCD 2022年第6期2796-2809,共14页
To investigate the height growth of multi-cluster fractures during variable fluid-viscosity fracturing in a layered shale oil reservoir,a two-dimensional finite element method(FEM)-discrete fracture network(DFN)model ... To investigate the height growth of multi-cluster fractures during variable fluid-viscosity fracturing in a layered shale oil reservoir,a two-dimensional finite element method(FEM)-discrete fracture network(DFN)model coupled with flow,stress and damage is proposed.A traction-separation law is used to describe the mixed-mode response of the damaged adhesive fractures,and the cubic law is used to describe the fluid flow within the fractures.The rock deformation is controlled by the in-situ stress,fracture cohesion and fluid pressure on the hydraulic fracture surface.The coupled finite element equations are solved by the explicit time difference method.The effects of the fracturing treatment parameters including fluid viscosity,pumping rate and cluster spacing on the geometries of multifractures are investigated.The results show that variable fluid-viscosity injection can improve the complexity of the fracture network and height of the main fractures simultaneously.The pumping rate of15 m^(3)/min,variable fluid-viscosity of 3-9-21-36-45 mPa s with a cluster spacing of 7.5 m is the ideal treatment strategy.The field application shows that the peak daily production of the application well with the optimized injection procedu re of variable fluid-viscosity fracturing is 171 tons(about 2.85 times that of the adjacent well),which is the highest daily production record of a single shale oil well in China,marking a strategic breakthrough of commercial shale oil production in the Jiyang Depression,Shengli Oilfield.The variable fluid-viscosity fracturing technique is proved to be very effective for improving shale oil production. 展开更多
关键词 Shale oil reservoir fem-dfn model Fracture propagation Variable fluid-viscosity injection Bedding planes
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