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1.
岩石裂纹的扩展是一个经典的不连续问题,常规有限元方法难以实现裂纹扩展过程的仿真模拟。扩展有限元法(XFEM)实现了计算网格与不连续面相互独立,因此模拟移动的不连续面时无需对网格进行重新剖分。本文介绍了XFEM基本原理和岩石断裂力学常用判据,尝试对岩石类材料单缝Ⅰ型三点弯曲、单缝剪切和双缝平板实验进行模拟。分析结果表明:扩展有限元模拟岩石类材料断裂问题不受网格划分限制,裂纹以实际应力场分布随机扩展;直观地给出岩样的微裂纹产生、演化,直至完全破坏的全过程,并与实验结果吻合。该方法能够应用到岩石断裂力学方面的研究,模拟岩石类材料的宏细观破坏过程,为解决复杂问题提供了方便的途径。  相似文献   

2.
Numerical modeling of stress-permeability coupling in rough fractures   总被引:2,自引:0,他引:2  
A numerical model is described for coupled flow and mechanical deformation in fractured rock. The mechanical response of rock joints to changes in hydraulic pressure is strongly influenced by the geometric characteristics of the joint surfaces. The concept of this work is to combine straightforward finite element solutions with complex and realistic fracture surface geometry in order to reproduce the non-linear stress-deformation-permeability coupling that is commonly observed in fractures. Building on the numerous studies that have expanded the understanding of the key parameters needed to describe natural rough-walled fractures, new methods have been developed to generate a finite element mesh representing discrete fractures with realistic rough surface geometries embedded in a rock matrix. The finite element code GeoSys/Rockflow was then used to simulate the coupled effects of hydraulic stress, mechanical stress, and surface geometry on the evolving permeability of a single discrete fracture. The modeling concept was experimentally verified against examples from the literature. Modeling results were also compared to a simple interpenetration model.  相似文献   

3.
A procedure based on the finite element method is suggested for modeling of 3D hydraulic fracturing in the subsurface. The proposed formulation partitions the stress field into the initial stress state and an additional stress state caused by pressure buildup. The additional stress is obtained as a solution of the Biot equations for coupled fluid flow and deformations in the rock. The fluid flow in the fracture is represented on a regular finite element grid by means of “fracture” porosity, which is the volume fraction of the fracture. The use of the fracture porosity allows for a uniform finite element formulation for the fracture and the rock, both with respect to fluid pressure and displacement. It is demonstrated how the fracture aperture is obtained from the displacement field. The model has a fracture criterion by means of a strain limit in each element. It is shown how this criterion scales with the element size. Fracturing becomes an intermittent process, and each event is followed by a pressure drop. A procedure is suggested for the computation of the pressure drop. Two examples of hydraulic fracturing are given, when the pressure buildup is from fluid injection by a well. One case is of a homogeneous rock, and the other case is an inhomogeneous rock. The fracture geometry, well pressure, new fracture area, and elastic energy released in each event are computed. The fracture geometry is three orthogonal fracture planes in the homogeneous case, and it is a branched fracture in the inhomogeneous case.  相似文献   

4.
罗先启  郑安兴 《岩土力学》2018,39(2):728-734
岩体中普遍存在着断层﹑节理和裂隙等结构面,这些结构面的存在和发展对岩体的整体强度﹑变形及稳定性有极大的影响。因此,研究岩体中原生结构面的萌生﹑发展以及贯通演化过程对评估岩体工程安全性和可靠性具有非常重要的理论与现实意义。扩展有限元法(XFEM)作为一种求解不连续问题的有效数值方法,模拟裂隙时独立于网格,因此,在模拟岩体裂隙扩展﹑水力劈裂等方面具有独特优势。针对扩展有限元法的基本理论及其在岩体裂隙扩展模拟中的应用展开了研究,建立了扩展有限元法求解岩体裂隙摩擦接触、岩体裂隙破坏等问题的数值模型,并将计算模型应用于岩质边坡稳定性分析和重力坝坝基断裂破坏等工程问题。  相似文献   

5.
Modeling hydraulic fracturing in the presence of a natural fracture network is a challenging task, owing to the complex interactions between fluid, rock matrix, and rock interfaces, as well as the interactions between propagating fractures and existing natural interfaces. Understanding these complex interactions through numerical modeling is critical to the design of optimum stimulation strategies. In this paper, we present an explicitly integrated, fully coupled discrete‐finite element approach for the simulation of hydraulic fracturing in arbitrary fracture networks. The individual physical processes involved in hydraulic fracturing are identified and addressed as separate modules: a finite element approach for geomechanics in the rock matrix, a finite volume approach for resolving hydrodynamics, a geomechanical joint model for interfacial resolution, and an adaptive remeshing module. The model is verified against the Khristianovich–Geertsma–DeKlerk closed‐form solution for the propagation of a single hydraulic fracture and validated against laboratory testing results on the interaction between a propagating hydraulic fracture and an existing fracture. Preliminary results of simulating hydraulic fracturing in a natural fracture system consisting of multiple fractures are also presented. Copyright © 2012 John Wiley & Sons, Ltd.  相似文献   

6.
郑安兴  罗先启 《岩土力学》2018,39(9):3461-3468
危岩是三峡库区典型的地质灾害类型之一,而主控结构面受荷断裂扩展是危岩发育成灾的关键核心。将危岩主控结构面类比为宏观裂纹,利用扩展有限元法在模拟裂纹扩展方面的优势,基于考虑裂纹面水压力作用的虚功原理推导出了采用扩展有限元法分析水力劈裂问题的控制方程,给出了危岩主控结构面水力劈裂问题的扩展有限元实现方法,对重庆万州太白岩危岩主控结构面的水力劈裂进行了数值模拟分析。计算结果表明:暴雨是威胁危岩稳定性的最敏感因素,随着裂隙水压力上升,裂端拉应力会急剧升高,危岩的稳定性降低;I型裂纹扩展是危岩主要的结构面扩展形式,结构面一旦发生开裂,将处于非稳定扩展状态。  相似文献   

7.
The failure mechanism of hydraulic fractures in heterogeneous geological materials is an important topic in mining and petroleum engineering. A three-dimensional (3D) finite element model that considers the coupled effects of seepage, damage, and the stress field is introduced. This model is based on a previously developed two-dimensional (2D) version of the model (RFPA2D-Rock Failure Process Analysis). The RFPA3D-Parallel model is developed using a parallel finite element method with a message-passing interface library. The constitutive law of this model considers strength and stiffness degradation, stress-dependent permeability for the pre-peak stage, and deformation-dependent permeability for the post-peak stage. Using this model, 3D modelling of progressive failure and associated fluid flow in rock are conducted and used to investigate the hydro-mechanical response of rock samples at laboratory scale. The responses investigated are the axial stress–axial strain together with permeability evolution and fracture patterns at various stages of loading. Then, the hydraulic fracturing process inside a rock specimen is numerically simulated. Three coupled processes are considered: (1) mechanical deformation of the solid medium induced by the fluid pressure acting on the fracture surfaces and the rock skeleton, (2) fluid flow within the fracture, and (3) propagation of the fracture. The numerically simulated results show that the fractures from a vertical wellbore propagate in the maximum principal stress direction without branching, turning, and twisting in the case of a large difference in the magnitude of the far-field stresses. Otherwise, the fracture initiates in a non-preferred direction and plane then turns and twists during propagation to become aligned with the preferred direction and plane. This pattern of fracturing is common when the rock formation contains multiple layers with different material properties. In addition, local heterogeneity of the rock matrix and macro-scale stress fluctuations due to the variability of material properties can cause the branching, turning, and twisting of fractures.  相似文献   

8.
Preexisting flaws and rock heterogeneity have important ramifications on the process of rock fracturing and on rock stability in many applications. Therefore, there is great interest in numerical modelling of rock fracture and the underlying mechanisms. We simulated damage evolution and fracture propagation in sandstone specimens containing a preexisting 3-D surface flaw under uniaxial compression. We applied the linear elastic damage model based on the unified strength theory following the rock failure process analysis code. However, in contrast to the rock failure process analysis code, we used the finite element method with tetrahedron elements on unstructured meshes. It provided higher geometrical flexibility and allowed for a more accurate representation of the disk-shaped flaw with various flaw depths, angles, and lengths through locally adapted meshes. The rock heterogeneity was modelled by sampling the initial local Young's modulus from a Weibull distribution over a cubic grid. The values were then interpolated to the computational finite element method mesh. This method introduced an additional length scale for the rock heterogeneity represented by the cell size in the sampling grid. The generation of three typical surface cracking patterns, called wing cracks, anti-wing cracks, and far-field cracks, were identified in the simulation results. These depend on the geometry of the preexisting surface flaw. The simulated fracture propagation, coalescence types, and failure modes for the specimens with preexisting surface flaw show good agreement with recent experimental studies.  相似文献   

9.
A mixed finite element–boundary element solution for the analysis of two-dimensional flow in porous media composed of rock blocks and discrete fractures is described. The rock blocks are modelled implicitly by using boundary elements whereas finite elements are adopted to model the discrete fractures. The computational procedure has been implemented in a hybrid code which has been validated first by comparing the numerical results with the closed-form solution for flow in a porous aquifer intercepted by a vertical fracture only. Then, a more complex problem has been solved where a pervious, homogeneous and isotropic matrix containing a net of fractures is considered. The results obtained are shown to describe satisfactorily the main features of the flow problem under study. © 1997 by John Wiley & Sons, Ltd.  相似文献   

10.
致密砂岩储层构造裂缝形成机制及定量预测研究进展   总被引:1,自引:1,他引:0  
致密砂岩裂缝性储层已逐渐成为非常规油气资源勘探开发的重点,构造裂缝形成机制研究及定量预测也相应成为热点问题.从构造地质学和地质力学角度对目前的裂缝研究方法进行系统分析,并对含微裂隙的岩石损伤力学实验分析、复合地层本构关系及破裂准则的建立以及不同应力场作用下裂缝参数的定量表征方法进行详细对比后认为,裂缝的产生、裂缝的位置和方向以及裂缝参数的量化是实现裂缝准确预测的关键.今后裂缝研究的发展方向主要有3个,即基于构造地质学和岩石损伤力学的宏观野外观察和微观室内试验相结合研究裂缝形成机制,考虑多重影响因素并基于能量转换理论的复合岩石破裂准则建立,基于精细构造地质模型的有限元数值模拟实现各期应力场作用下裂缝参数的三维定量表征.  相似文献   

11.
Modelling of Progressive and Instantaneous Failures of Foliated Rock Slopes   总被引:3,自引:0,他引:3  
Summary Mechanisms of flexural toppling failure of slopes in foliated rock masses are investigated both experimentally by testing small scaled models in a centrifuge and theoretically by using a limiting equilibrium model and a finite element model based on the Cosserat theory. Both theoretical models include bending moments of rock layers in their formulation. Two main failure mechanisms are observed: (1) instantaneous failure involving a large volume of failed material and (2) progressive failure where the fracture initially localises near the toe region and then progresses further into the rock mass with increasing load. These two mechanisms of slope failure are observed to be controlled by the magnitude of the joint friction angle. The joint friction angles of about 20° and above are most likely to cause instantaneous failure while the lesser friction angles result in a progressive failure. Joint cohesion is not found to have a similar effect on the failure mechanisms, provided that it is low enough to allow sliding between the rock layers – a prerequisite for flexural toppling.  相似文献   

12.
岩体工程计算分析中结构面刚度系数是至关重要的力学参数,计算分析的精度和可靠程度与这个参数密不可分,结构面刚度系数取值仍然是一个难点.岩体中应力波传播至结构面处将会发生反射和透射现象,利用应力波透射系数可反演结构面动态刚度系数.本文从细观力学角度运用颗粒离散元方法,开发分段线性接触模型及应力波吸收边界模型,开展宏观岩体中...  相似文献   

13.
张玉军  张维庆 《岩土力学》2011,32(12):3743-3750
为探讨裂隙的贯通率对于耦合的温度场、渗流场和应力场的作用,应用所建立的遍有节理岩体双重孔隙-裂隙介质热-水-应力耦合模型,以一个假定的位于非饱和地层中的高放废物地质处置库为算例,针对裂隙和孔隙的贯通率不同的4种工况进行了二维有限元数值分析,考察了围岩中的温度、负的孔隙和裂隙水压力、地下水流速、孔隙及裂隙的渗透系数修正因子和应力的变化、分布情况。结果显示,由于裂隙贯通率的差异使得双重介质的刚度不同,引起岩体中应力状态及水平的改变,从而影响到孔隙、裂隙的孔隙率及渗透系数的量值,并导致孔隙水和裂隙水的压力大小、分布以及水流速度的变化  相似文献   

14.
Results are presented for three-dimensional planar fracture propagation in the presence of variations in confining stress, reservoir properties and frac-fluid viscosity when the well-bore pressure is constant throughout the frac-job. Solid rock deformation during the frac-job is described by the dislocation method with singular integral equations, and the fluid flow in the fracture is represented by the finite element method. A convergence study is undertaken on the three-dimensional numerical model, and good agreement is obtained with results from laboratory tests and from the simpler circular model.  相似文献   

15.
李冬冬  肖明  陈俊涛  赵健 《岩土力学》2016,37(Z1):616-624
基于AutoCAD和OpenGL有限元可视化建模,利用Fortran语言对模型文件中的单元信息进行改写,提出了一种在地下厂房有限元模型中生成沥青单元网格的方法,显著减少了模型单元数与节点数,提高了建模与计算效率。采用隐式杆单元法模拟涂沥青锚杆,隐式柱单元法模拟普通锚杆,推导了其刚度矩阵及有限元迭代计算公式,并应用于地下厂房岩锚梁锚杆涂沥青段的有限元分析中。结果表明,吊车梁附近围岩破坏区减少,围岩深部锚杆应力增大,说明围岩受力特性得以改善,围岩和吊车梁整体安全度增大,符合工程实践经验。所提出的计算和单元再分方法可操作性和实用性大,可为类似工程有限元分析提供参考。  相似文献   

16.
根据围压条件下的断裂力学理论 ,采用双翼裂纹厚壁圆筒 ,对泥岩进行了不同围压和不同泥质含量条件下的人工岩样断裂韧性测试。建立了有限元方法解释断裂韧性的数值模型。在进行大量实验测试的基础上 ,通过回归分析表明 ,断裂韧性与围压、泥质含量有较好的线性统计关系。解决了水力压裂设计中断裂韧性参数的准确获取问题 ,有利于提高压裂设计、预测的精度  相似文献   

17.
李冬冬  盛谦  肖明  王小毛 《岩土力学》2022,43(Z2):117-129
通过改进的PFC-FLAC离散−连续耦合计算方法,提出了一种基于FLAC连续模型耦合区域节点速率双线性插值的PFC颗粒流声发射片模拟方法以及基于声发射强度的围岩破坏区深度细观角度判别方法,并将其应用于地下厂房洞室开挖面、岩锚吊车梁与岩壁接触面等局部围岩损伤细观机制与破化特性研究。研究结果表明:浅层围岩接触力链逐渐稀疏,大量微裂纹发育并汇集成宏观裂隙,最终出现浅层破裂区,呈拉裂破坏;随着距离开挖面的增大,围岩从开挖前期受力较大产生破坏、到开挖后期只有少量微裂纹产生,对应了围岩回弹卸荷区深度。在岩壁围岩劣化和吊车梁超载的情况下,吊车梁与岩壁竖直接触面和倾斜接触面分别发育大量拉裂纹和剪裂纹,宏观表现为拉裂破坏与滑移破坏。上述分析结果与三维有限元方法相一致,并弥补了后者围岩破坏显示方法单一、难以描述围岩损伤程度变化的缺点,为研究地下厂房洞室大变形与应力集中部位的宏细观特性与损伤机制提供参考。  相似文献   

18.
岩体结构与岩体水力耦合计算模型   总被引:3,自引:2,他引:1  
水力耦合作用是岩体中力学过程与渗流过程相互作用的物理过程。水力耦合机理的理解是水力耦合分析的关键问题,其耦合机理是由岩体结构特性决定的。在分析岩体水力耦合过程基础上,根据岩体的基本结构及代表性单元体(REV)是否存在提出了建立水力耦合模型的方法。当裂隙岩体中不存在代表性单元体(REV)时,提出了裂隙岩体多重介质流固耦合分析的全耦合数学模型,给出流固耦合模型数值方法求解的数学模型及有限元计算表达式。程序编制和验证工作正在进行中。  相似文献   

19.
裂隙岩体变形模量尺寸效应研究Ⅰ:有限元法   总被引:3,自引:3,他引:0  
杨建平  陈卫忠  戴永浩 《岩土力学》2011,32(5):1538-1545
通过对裂隙交叉和非贯通裂隙进行的网格剖分研究,建立了随机裂隙岩体网格生成方法,并编制了裂隙岩体有限元网格自动生成程序。根据锦屏电站辅助洞白山组大理岩裂隙分布调查结果,用蒙特卡洛法生成随机裂隙网络,进行了岩石-裂隙二元岩体网格自动剖分,将试验室获得的岩石和裂隙的力学参数分别赋予岩体模型中的岩石和裂隙,通过有限元方法研究了裂隙岩体等效变形模量的尺寸效应和各向异性。尺寸效应研究结果表明,所研究的裂隙岩体的等效变形模量表征单元体REV为8 m;各向异性研究结果表明,在REV尺寸下,所研究的裂隙岩体各个方向变形模量可以通过柔度张量进行拟合,且张量拟合误差不超过8%。  相似文献   

20.
王环玲  徐卫亚  童富国 《岩土力学》2008,29(9):2397-2403
岩质滑坡除与地质条件、降雨等因素有关外,泄洪雾雨也成为其不可忽视的催化剂。通过裂隙岩体渗透性与应力关系,裂隙岩体的弹塑性本构关系以及渗流场的控制方程,建立起饱和非饱和渗流场与应力场耦合的等效连续介质模型。编制了有泄洪雾雨影响的饱和-非饱和渗流与应力耦合三维有限元程序,通过迭代求解达到两场耦合目的。以实际工程为例,根据边坡的地表信息、开挖信息、岩层分界信息以及排水洞和帷幕信息等,建立起边坡地质模型。通过耦合计算,详细分析了耦合后边坡岩体的变形、应力以及塑性区等。计算结果表明,雾雨区的边坡稳定与渗流场变化有着重要关系,在评价边坡稳定与否时,要考虑渗流场对其影响。计算成果为实际工程的安全评价提供了一定的科学依据。  相似文献   

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