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CO_(2)增强页岩气开采及地质埋存的三维数值模拟 被引量:3
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作者 赵鹏 朱海燕 张丰收 《天然气工业》 EI CAS CSCD 北大核心 2024年第4期104-114,共11页
将CO_(2)注入页岩储层中,既可以提高气藏天然气采收率,又可以达到CO_(2)地质埋存的目的,是实现减少碳排放的有效途径之一。页岩储层非均质性强,将CO_(2)注入页岩储层后,储层纵向非均质性对于CO_(2)增强CH_(4)开采效果的影响机理研究还... 将CO_(2)注入页岩储层中,既可以提高气藏天然气采收率,又可以达到CO_(2)地质埋存的目的,是实现减少碳排放的有效途径之一。页岩储层非均质性强,将CO_(2)注入页岩储层后,储层纵向非均质性对于CO_(2)增强CH_(4)开采效果的影响机理研究还存在不足。为此以四川盆地上奥陶统五峰组—下志留统龙马溪组页岩储层为对象,以考虑CO_(2)和CH_(4)竞争吸附的热—流—固多场耦合数值模拟方法为基础,建立了页岩非均质储层CO_(2)增强CH_(4)开采及地质埋存一体化三维数值模型,最后通过CO_(2)驱替CH_(4)室内实验结果验证该数值模拟方法的可靠性。研究结果表明:①当注入井所在层位保持不变时,随着开采井埋深增加,各小层内CH_(4)剩余量呈增加趋势,CO_(2)埋存量表现出逐渐减小的趋势;②当开采井所在层位保持不变时,各小层内CH_(4)的剩余量随注入井埋深的增加而减小,各小层内CO_(2)的埋存量随注采井纵向间距的增加而提高;③增加注采井纵向距离能够提高CH_(4)增产量和CO_(2)埋存量。结论认为,页岩对CO_(2)和CH_(4)有较强的竞争吸附特性,相关过程是一个复杂的热—流—固耦合过程,该基础理论模拟研究对注CO_(2)置换CH_(4)提高页岩气采收率并实现碳封存具有现实意义,且研究认识对今后相关技术的现场应用提供了理论支撑。 展开更多
关键词 CO_(2)增强页岩气开采 CO_(2)地质埋存 储层非均质性 —流多场耦合三维模型
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黏弹性层状多孔介质中地震波传播方程的传递矩阵解法
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作者 李晓江 《石油地球物理勘探》 EI CSCD 北大核心 2008年第4期410-414,365,共6页
基于Biot理论,饱和多孔介质中波的传播是一个耦合问题。由于此模型的复杂性,难以给出高效的数值解法。为此本文提出了地震波在层状饱和多孔黏弹性介质中传播的一种实用求解方法,即在所研究的层状三维模型中,对时间域用拉氏变换,对空间... 基于Biot理论,饱和多孔介质中波的传播是一个耦合问题。由于此模型的复杂性,难以给出高效的数值解法。为此本文提出了地震波在层状饱和多孔黏弹性介质中传播的一种实用求解方法,即在所研究的层状三维模型中,对时间域用拉氏变换,对空间域用傅氏变换,将原问题变换为具有六个独立变量的常微分方程组,每个变量只是深度坐标和一个水平坐标的函数,进而得到关于每一层中波的传播问题的传递矩阵,再用数值方法求出传递矩阵的特征值和特征向量。此算法的核心是首先求出在变换后的空间中的波场,然后用FFT方法进行傅氏和拉氏反变换得到在时间域的波场。文中给出了算法的详细推导和数值算例。 展开更多
关键词 地震波传播方程 黏弹性层状多孔介质 传递矩阵 固—流耦合模型 正演模拟 快速傅氏变换
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Effect of working parameters on performance characteristics of hydrostatic turntable by using FSI-thermal model 被引量:4
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作者 HU Jun-ping LIU Cheng-pei 《Journal of Central South University》 SCIE EI CAS CSCD 2018年第11期2589-2600,共12页
Effects of working parameters on performance characteristics of hydrostatic turntable are researched by applying the fluid-structure-thermal coupled model.Fluid-structure interaction(FSI)technique and computational fl... Effects of working parameters on performance characteristics of hydrostatic turntable are researched by applying the fluid-structure-thermal coupled model.Fluid-structure interaction(FSI)technique and computational fluid dynamics(CFD)method are both employed by this new model,and thermal effects are also considered.Hydrostatic turntable systems with a series of oil supply pressures,various oil recess depth and several surface roughness parameters are studied.Performance parameters,such as turntable displacement,system flow rate,temperature rise of lubrication,stiffness and damping coefficients,are derived from different working parameters(rotational speed of turntable and exerted external load)of the hydrostatic turntable.Numerical results obtained from this FSI-thermal model are presented and discussed,and theoretical predictions are in good agreement with the experimental data.Therefore,this developed model is a very useful tool for studying hydrostatic turntables.The calculation results show that in order to obtain better performance,a rational selection of the design parameters is essential. 展开更多
关键词 hydrostatic turntable working parameters performance characteristics FSI-thermal coupled model
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Fluid solid coupling model based on endochronic damage for roller compacted concrete dam 被引量:4
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作者 顾冲时 魏博文 +1 位作者 徐镇凯 刘大文 《Journal of Central South University》 SCIE EI CAS 2013年第11期3247-3255,共9页
According to the characteristics of thin-layer rolling and pouting construction technology and the complicated mechanical behavior of the roller compacted concrete dam (RCCD) construction interface, a constitutive m... According to the characteristics of thin-layer rolling and pouting construction technology and the complicated mechanical behavior of the roller compacted concrete dam (RCCD) construction interface, a constitutive model of endochronic damage was established based on the endochronic theory and damage mechanics. The proposed model abandons the traditional concept of elastic-plastic yield surface and can better reflect the real behavior of rolled control concrete. Basic equations were proposed for the fluid-solid coupling analysis, and the relationships among the corresponding key physical parameters were also put forward. One three-dimensional finite element method (FEM) program was obtained by studying the FEM type of the seepage-stress coupling intersection of the RCCD. The method was applied to an actual project, and the results show that the fluid-solid interaction influences dam deformation and dam abutment stability, which is in accordance with practice. Therefore, this model provides a new method for revealing the mechanical behavior of RCCD under the coupling field. 展开更多
关键词 roller compacted concrete dam endochronic damage fluid-solid coupling analytical model
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Fluid-solid interaction of resistance loss of flexible hose in deep ocean mining 被引量:3
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作者 王志 饶秋华 刘少军 《Journal of Central South University》 SCIE EI CAS 2012年第11期3188-3193,共6页
The resistance loss of transportation was studied and the influences of buoyancy layout,mineral content and elastic modulus of flexible hose were investigated based on three-dimensional finite element model of fluid-s... The resistance loss of transportation was studied and the influences of buoyancy layout,mineral content and elastic modulus of flexible hose were investigated based on three-dimensional finite element model of fluid-solid interaction by MSC.MARC/MENTAT software.The numerical results show that the resistance losses increase with the increase of mineral content Cv and velocity of internal fluid v and decrease with the increase of elastic modulus E of flexible hose.The buoyancy layout and the velocity of internal fluid have greater impacts on the resistance losses than the elastic modulus of flexible hose.In order to reduce the resistance losses and improve the efficiency of the deep-ocean mining,Cv and v must be restricted in a suitable range (e.g.10%-25% and 2.5-4 m/s).Effective buoyancy layout (such as Scheme C and D) should be adopted and the suitable material of moderate E should be used for the flexible hose in deep-ocean mining. 展开更多
关键词 resistance loss flexible hose fluid-solid interaction deep-ocean mining finite element method
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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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