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油井水力压裂流-固耦合非线性有限元数值模拟 被引量:38
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作者 张广明 刘合 +3 位作者 张劲 彪仿俊 吴恒安 王秀喜 《石油学报》 EI CAS CSCD 北大核心 2009年第1期113-116,共4页
基于多孔介质流-固耦合的控制方程,推导了相应的非线性增量有限元列式,并采用以节点位移和孔隙压力为自由度的黏结单元来模拟水力损伤造成的预设裂缝的起裂和扩展,在此基础上建立了油井水力压裂的有限元模型。在该模型中考虑了压裂液的... 基于多孔介质流-固耦合的控制方程,推导了相应的非线性增量有限元列式,并采用以节点位移和孔隙压力为自由度的黏结单元来模拟水力损伤造成的预设裂缝的起裂和扩展,在此基础上建立了油井水力压裂的有限元模型。在该模型中考虑了压裂液的黏性系数和支撑剂的体积浓度随时间变化,所有参数均采用现场压裂的数据。通过数值模拟,得到了缝口压力、射孔孔眼摩阻、沿程摩阻、井筒内液柱静水压力和地面井口压力随压裂时间的变化规律,并给出了"压裂作业三条线",模拟得到的"压裂作业三条线"与现场压裂实测结果吻合良好。 展开更多
关键词 水力压裂 多孔介质 流-固耦合方程 压裂液 非线性有限元 数值模拟
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井眼周围可变形储层流-固耦合数学模型 被引量:14
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作者 路保平 徐曾和 《石油学报》 EI CAS CSCD 北大核心 2006年第5期131-134,共4页
基于该储层模型假设,运用岩石力学和渗流力学的有关理论和方法,建立了流-固耦合变形的本构方程、几何方程、平衡方程和渗流方程,导出了可变形储层的流-固耦合渗流与变形基本模型。该模型不仅考虑了介质变形对流体质量守恒和孔隙流动压... 基于该储层模型假设,运用岩石力学和渗流力学的有关理论和方法,建立了流-固耦合变形的本构方程、几何方程、平衡方程和渗流方程,导出了可变形储层的流-固耦合渗流与变形基本模型。该模型不仅考虑了介质变形对流体质量守恒和孔隙流动压力对介质变形平衡的影响,也考虑了变形对流体流动的影响以及岩石力学性质的动态变化特征。该模型可用于研究井眼周围储层的变形及渗流规律。 展开更多
关键词 可变形储层 流-固耦合方程 多孔介质 数学模型
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Constitutive equations and finite element implementation of strain localization in sand deformation 被引量:2
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作者 黄林冲 徐志胜 王立川 《Journal of Central South University》 SCIE EI CAS 2009年第3期482-487,共6页
A recently proposed model coupling with the solid-fluid of the saturated sand was utilized to study the deformation band. Based on the critical state plasticity model by Borja and Andrade, the hydraulic conductivity t... A recently proposed model coupling with the solid-fluid of the saturated sand was utilized to study the deformation band. Based on the critical state plasticity model by Borja and Andrade, the hydraulic conductivity tensor was naturally treated as a function of the spatial discretization matrix about the displacement and the stress field, allowing a more realistic representation of the physical phenomenon. The fully Lagrangian form of the Darcy law was resolved by Piola algorithm, and then the flow law was gained, leading to the implementation of a modified model of the saturated sand. Then the criterion for the onset of localization was derived and utilized to detect instability. The constitutive model was implemented in a finite element program coded by FORTRAN, which was used to predict the formation and development of shear bands in plane strain compression of saturated sand. At last, the formation mechanism of the shear band was discussed. It is shown that the model works well, and the simulation sample bifurcates at 1.18% axial strain, which is in a good qualitative agreement with the experiment. The pore pressure greatly affects the onset and development of the deformation band, and it obviously increases around the localization-prone regions with the direction toward the outer side of the normal of the shear band, while the pore stress flows nearly horizontally and is distributed equally far away the shear band region. 展开更多
关键词 constitutive equations deformation band finite elements hydraulic conductivity SAND
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