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首页> 外文期刊>Computational Mechanics: Solids, Fluids, Fracture Transport Phenomena and Variational Methods >Fully coupled simulation of multiple hydraulic fractures to propagate simultaneously from a perforated horizontal wellbore
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Fully coupled simulation of multiple hydraulic fractures to propagate simultaneously from a perforated horizontal wellbore

机译:多种液压骨折的完全耦合模拟从穿孔水平井筒同时传播

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摘要

AbstractIn hydraulic fracturing process in shale rock, multiple fractures perpendicular to a horizontal wellbore are usually driven to propagate simultaneously by the pumping operation. In this paper, a numerical method is developed for the propagation of multiple hydraulic fractures (HFs) by fully coupling the deformation and fracturing of solid formation, fluid flow in fractures, fluid partitioning through a horizontal wellbore and perforation entry loss effect. The extended finite element method (XFEM) is adopted to model arbitrary growth of the fractures. Newton’s iteration is proposed to solve these fully coupled nonlinear equations, which is more efficient comparing to the widely adopted fixed-point iteration in the literatures and avoids the need to impose fluid pressure boundary condition when solving flow equations. A secant iterative method based on the stress intensity factor (SIF) is proposed to capture different propagation velocities of multiple fractures. The numerical results are compared with theoretical solutions in literatures to verify the accuracy of the method. The simultaneous propagation of multiple HFs is simulated by the newly proposed algorithm. The coupled influences of propagation regime, stress interaction, wellbore pressure loss and perforation entry loss on simultaneous propagation of multiple HFs are investigated.]]>
机译:<![CDATA [<摘要ID = “ABS1” 语言= “EN” OutputMedium = “全部”> <标题>抽象 <帕拉ID = “则Par1”>在页岩岩石的水力压裂过程中,多个裂缝垂直到水平井眼通常被驱动到由抽吸动作同时传播。在本文中,数值方法用于多个水力压裂(HFS)的传播通过完全耦合的变形和通过水平井孔和穿孔条目损失效果固体形成,在裂缝的流体流动,流体分割的压裂显影。扩展有限元法(XFEM)采用到骨折的任意生长建模。牛顿迭代提出了解决这些完全耦合非线性方程,这是更有效的进行比较来在文献中广泛采用定点迭代和避免了需要求解流动方程当施加流体压力的边界条件。提出了一种基于应力强度因子(SIF)甲割线迭代方法来捕获多个裂缝的不同的传播速度。该数值结果与文献理论解决方案,以验证该方法的准确度相比较。多个中空纤维的同时传播通过新提议的算法模拟。传播状况,应力相互作用,井筒压力损失和在多个中空纤维的同时传播穿孔条目损耗的耦合影响进行了研究。 ]]>

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