期刊文献+
共找到13篇文章
< 1 >
每页显示 20 50 100
基于ABAQUS二次开发平台的边坡有限元强度折减法研究 被引量:4
1
作者 候玲 薛海斌 +2 位作者 周泽华 刘海伟 潘峰 《西安理工大学学报》 CAS 北大核心 2016年第4期449-454,499,共7页
有限元强度折减法在边坡稳定性分析中发挥着举足轻重的作用,但通常的有限元强度折减法采用二分法来获取边坡的安全系数,该方法需要多次试算,效率较低。本文借助ABAQUS软件的二次开发平台UFIELD程序,将软件自带的场变量定义为折减系数,... 有限元强度折减法在边坡稳定性分析中发挥着举足轻重的作用,但通常的有限元强度折减法采用二分法来获取边坡的安全系数,该方法需要多次试算,效率较低。本文借助ABAQUS软件的二次开发平台UFIELD程序,将软件自带的场变量定义为折减系数,建立场变量分别与软件求解时步和强度参数的关系,方便地实现了基于场变量的边坡有限元强度折减法,此方法仅需一次提交计算分析便可高效地实现边坡安全系数的求解;在基于场变量的边坡有限元强度折减法基础上,依据滑面位置处的等效塑性应变最大这一基本原理,利用不同垂直剖面逐点搜索法,实现了基于最大等效塑性应变的边坡潜在滑动面位置精细化寻找;最后借助两个经典算例,将此套思路确定的潜在滑动面位置、安全系数分别与传统极限平衡M-P法的对应结果进行对比分析,验证了本文思路和方法的有效性。 展开更多
关键词 边坡有限元强度折减法 场变量 最大等效塑性应变 潜在滑动面
下载PDF
基坑土钉支护边坡有限元稳定性分析方法探讨 被引量:6
2
作者 火映霞 侯新宇 +1 位作者 陆善佳 蒋立辰 《湖南科技大学学报(自然科学版)》 CAS 北大核心 2013年第1期58-62,共5页
针对基坑土钉支护开挖边坡的稳定性,应用强度折减法和滑面应力法2种有限元法对基坑边坡是否采用土钉支护获得的安全系数和滑动面形状进行了分析.采用土钉支护的基坑边坡,由于在强度折减时,仅仅对土体强度参数进行了折减,未考虑土钉自身... 针对基坑土钉支护开挖边坡的稳定性,应用强度折减法和滑面应力法2种有限元法对基坑边坡是否采用土钉支护获得的安全系数和滑动面形状进行了分析.采用土钉支护的基坑边坡,由于在强度折减时,仅仅对土体强度参数进行了折减,未考虑土钉自身的强度降低,因而,采用2种有限元方法得到了不同阶段下虽然安全系数一致,但滑动面形状和位置不同的结论.提出了将土钉支护对土体以及边坡的作用考虑进去,以实现土钉支护技术在项目工程施工中更具现实的理论意义的意见. 展开更多
关键词 基坑土钉支护 边坡有限元 稳定性分析
原文传递
预应力锚索加固边坡稳定性的有限元评价 被引量:7
3
作者 夏雄 周德培 肖世国 《岩石力学与工程学报》 EI CAS CSCD 北大核心 2004年第z1期4489-4492,共4页
进行边坡非线性有限元分析,探讨坡体变形的大小和分布状况,分析塑性区的扩展形态和滑动面的形成,从而确定合理的滑动面位置。根据确定的滑动面,采用极限平衡法计算边坡的安全系数,能够对边坡工程的稳定性进行评价。结合1个工程实例进行... 进行边坡非线性有限元分析,探讨坡体变形的大小和分布状况,分析塑性区的扩展形态和滑动面的形成,从而确定合理的滑动面位置。根据确定的滑动面,采用极限平衡法计算边坡的安全系数,能够对边坡工程的稳定性进行评价。结合1个工程实例进行了分析说明。 展开更多
关键词 岩土力学 边坡 稳定性评价 非线性有限元 极限平衡法
下载PDF
某高速岩质边坡稳定性有限元分析
4
作者 陈延智 《华东公路》 2019年第2期114-116,共3页
根据现场对某高速公路k 27+164~k 27+480左侧深挖路堑的调查,边坡岩体以花岗岩为主,边坡岩体类型属于Ⅳ类,对其进行稳定性分析,其安全系数不满足稳定性要求,故需要对其进行加固处治。用有限元软件对该边坡进行分析,得到了边坡的变形规... 根据现场对某高速公路k 27+164~k 27+480左侧深挖路堑的调查,边坡岩体以花岗岩为主,边坡岩体类型属于Ⅳ类,对其进行稳定性分析,其安全系数不满足稳定性要求,故需要对其进行加固处治。用有限元软件对该边坡进行分析,得到了边坡的变形规律及应力的变化特点。 展开更多
关键词 边坡有限元分析稳定性加固
下载PDF
岩土工程极限分析有限元法及其应用 被引量:260
5
作者 郑颖人 赵尚毅 《土木工程学报》 EI CSCD 北大核心 2005年第1期91-98,104,共9页
经典岩土工程极限分析方法一般采用解析方法 ,有些还要对滑动面作假设 ,不适用于非均质材料 ,尤其是强度不均的岩石工程 ,从而使极限分析法的应用受到限制。随着计算机技术的发展 ,极限分析有限元法应运而生 ,它能通过强度降低或者荷载... 经典岩土工程极限分析方法一般采用解析方法 ,有些还要对滑动面作假设 ,不适用于非均质材料 ,尤其是强度不均的岩石工程 ,从而使极限分析法的应用受到限制。随着计算机技术的发展 ,极限分析有限元法应运而生 ,它能通过强度降低或者荷载增加直接算得岩土工程的安全系数和滑动面 ,十分贴近工程设计。本文探讨了极限分析有限元法的一些基本原理 ,包括安全系数的定义、岩土体整体失稳的判据、屈服准则的选用等 ,并将该方法应用于边坡、地基、隧道稳定性计算 ,算例表明了此法的可行性 。 展开更多
关键词 极限分析有限元 有限元强度折减法:边坡稳定分析 地基极限承载力 隧道稳定性
下载PDF
浅析边坡稳定性分析研究 被引量:6
6
作者 仝小芳 徐银鸣 《山西建筑》 2006年第21期119-120,共2页
介绍了边坡稳定性分析的定性、定量评价方法以及非确定性模型评价方法,并对边坡稳定性有限元分析方法作了比较,对边坡稳定性研究发展具有一定的指导意义。
关键词 边坡稳定性 评价方法 有限元
下载PDF
某河口整治工程中堤防边坡稳定性分析
7
作者 赵付军 《湖南水利水电》 2011年第4期38-40,共3页
边坡工程是一项复杂的工程,对于边坡工程的研究也一直是当前岩土工程界研究的热点。文章采用了大型商业有限元软件ABAQUS,运用有限元强度折减法对边坡进行了稳定性计算和分析。计算分析表明,第一种和第二种判据得出的安全系数具有较好... 边坡工程是一项复杂的工程,对于边坡工程的研究也一直是当前岩土工程界研究的热点。文章采用了大型商业有限元软件ABAQUS,运用有限元强度折减法对边坡进行了稳定性计算和分析。计算分析表明,第一种和第二种判据得出的安全系数具有较好的一致性,其结果与极限平衡法计算的值相符,安山岩残积粘性土区域的变形较大,但边坡总体上是稳定安全的。 展开更多
关键词 边坡稳定有限元 强度折减法 ABAQUS 失稳判据
下载PDF
降雨入渗对边坡稳定性的影响分析
8
作者 谭凤 周太全 林森 《山西建筑》 2013年第16期74-75,共2页
为了分析降雨入渗对边坡稳定的影响,建立了ABAQUS二维有限元分析模型,通过对材料性质、分析步及加荷参数的调整,对比了降雨前后边坡土饱和度、孔压、应变、沉降及水平位移的变化。结果表明:随着降雨时间的延长,边坡有滑动变形趋势,极易... 为了分析降雨入渗对边坡稳定的影响,建立了ABAQUS二维有限元分析模型,通过对材料性质、分析步及加荷参数的调整,对比了降雨前后边坡土饱和度、孔压、应变、沉降及水平位移的变化。结果表明:随着降雨时间的延长,边坡有滑动变形趋势,极易导致滑坡的发生。 展开更多
关键词 降雨入渗 边坡 稳定性 非线性有限元
下载PDF
Stability analysis of slope in strain-softening soils using local arc-length solution scheme 被引量:3
9
作者 WANG Xiang-rong RONG Qi-guo +1 位作者 SUN Shu-li WANG Hui 《Journal of Mountain Science》 SCIE CSCD 2017年第1期175-187,共13页
Soils with strain-softening behavior — manifesting as a reduction of strength with increasing plastic strain — are commonly found in the natural environment. For slopes in these soils,a progressive failure mechanism... Soils with strain-softening behavior — manifesting as a reduction of strength with increasing plastic strain — are commonly found in the natural environment. For slopes in these soils,a progressive failure mechanism can occur due to a reduction of strength with increasing strain. Finite element method based numerical approaches have been widely performed for simulating such failure mechanism,owning to their ability for tracing the formation and development of the localized shear strain. However,the reliability of the currently used approaches are often affected by poor convergence or significant mesh-dependency,and their applicability is limited by the use of complicated soil models. This paper aims to overcome these limitations by developing a finite element approach using a local arc-length controlled iterative algorithm as the solution strategy. In the proposed finite element approach,the soils are simulated with an elastoplastic constitutive model in conjunction with the Mohr-Coulomb yield function. The strain-softening behavior is represented by a piece-wise linearrelationship between the Mohr-Coulomb strength parameters and the deviatoric plastic strain. To assess the reliability of the proposed finite element approach,comparisons of the numerical solutions obtained by different finite element methods and meshes with various qualities are presented. Moreover,a landslide triggered by excavation in a real expressway construction project is analyzed by the presented finite element approach to demonstrate its applicability for practical engineering problems. 展开更多
关键词 Strain-softening Progressive failure Slope stability Local arc-length scheme Numerical simulation
下载PDF
Coupled Numerical Analysis of the Stability Behaviour of Unsaturated Soil Slopes Under Rainfall Conditions
10
作者 王成华 THOMAS H R 《Transactions of Tianjin University》 EI CAS 2003年第3期184-188,共5页
The stability behaviour of unsaturated soil slopes under rainfall conditions is investigated via a parametric finite element analysis, which is a fully coupled flow and deformation approach linked to a dynamic program... The stability behaviour of unsaturated soil slopes under rainfall conditions is investigated via a parametric finite element analysis, which is a fully coupled flow and deformation approach linked to a dynamic programming technique for determining the minimum factor of safety as well as its corresponding critical slip surface based on the stress fields from the numerical computation. The effects of rainfall features, soil strength parameters and permeability properties on slope stability are studied. The analyses revealed that the soil matric suction decreased during rainfall, especially in slopes with high permeability and/or with high suction angles of unsaturated soils. The influence of rainfall conditions on such slopes is quite obvious, and soil suction drops rapidly, which leads to a consequent quick reduction in the factor of safety. 展开更多
关键词 slope stability unsaturated soils matric suction RAINFALL finite elements factor of safety
下载PDF
Stability and reinforcement analysis of rock slope based on elasto-plastic finite element method 被引量:2
11
作者 刘耀儒 武哲书 +2 位作者 常强 李波 杨强 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第7期2739-2751,共13页
The rigid body limit equilibrium method(RBLEM) and finite element method(FEM) are two widely used approaches for rock slope's stability analysis currently. RBLEM introduced plethoric assumptions; while traditional... The rigid body limit equilibrium method(RBLEM) and finite element method(FEM) are two widely used approaches for rock slope's stability analysis currently. RBLEM introduced plethoric assumptions; while traditional FEM relied on artificial factors when determining factor of safety(FOS) and sliding surfaces. Based on the definition of structure instability that an elasto-plastic structure is not stable if it is unable to satisfy simultaneously equilibrium condition, kinematical admissibility and constitutive equations under given external loads, deformation reinforcement theory(DRT) is developed. With this theory, plastic complementary energy(PCE) can be used to evaluate the overall stability of rock slope, and the unbalanced force beyond the yield surface could be the identification of local failure. Compared with traditional slope stability analysis approaches, the PCE norm curve to strength reduced factor is introduced and the unbalanced force is applied to the determination of key sliding surfaces and required reinforcement. Typical and important issues in rock slope stability are tested in TFINE(a three-dimensional nonlinear finite element program), which is further applied to several representatives of high rock slope's stability evaluation and reinforcement engineering practice in southwest of China. 展开更多
关键词 stability analysis rock slope plastic complementary energy(PCE) unbalanced forces elasto-plasticity FEM
下载PDF
Stress and Displacement Distribution of Soft Clay Slope with 2D and 3D Elastoplastic Finite Element Method
12
作者 严祖文 阎澍旺 李飒 《Transactions of Tianjin University》 EI CAS 2006年第4期308-312,共5页
Based on elastoplastic model, 2D and 3D finite element method (FEM) are used to calculate the stress and displacement distribution in the soft clay slope under gravity and uniform load at the slope top. Stability an... Based on elastoplastic model, 2D and 3D finite element method (FEM) are used to calculate the stress and displacement distribution in the soft clay slope under gravity and uniform load at the slope top. Stability analyses indicate that 3D boundary effect varies with the stress level of the slope. When the slope is stable, end effect of 3D space is not remarkable. When the stability decreases, end effect occurs; when the slope is at limit state, end effect reaches maximum. The energy causing slope failure spreads preferentially along y-z section, and when the failure resistance capability reaches the limit state, the energy can extend along x-axis direction. The 3D effect of the slope under uniform load on the top is related to the ratio of load influence width to slope height, and the effect is remarkable with the decrease of the ratio. 展开更多
关键词 slope stability soft clay soil elastoplasticity finite element method end effect stress analysis
下载PDF
Finite element reliability analysis of slope stability 被引量:5
13
作者 Xiao-hui TAN Jian-guo WANG 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2009年第5期645-652,共8页
The method of nonlinear finite element reliability analysis (FERA) of slope stability using the technique of slip surface stress analysis (SSA) is studied. The limit state function that can consider the direction of s... The method of nonlinear finite element reliability analysis (FERA) of slope stability using the technique of slip surface stress analysis (SSA) is studied. The limit state function that can consider the direction of slip surface is given, and the formula-tions of FERA based on incremental tangent stiffness method and modified Aitken accelerating algorithm are developed. The limited step length iteration method (LSLIM) is adopted to calculate the reliability index. The nonlinear FERA code using the SSA technique is developed and the main flow chart is illustrated. Numerical examples are used to demonstrate the efficiency and robustness of this method. It is found that the accelerating convergence algorithm proposed in this study proves to be very efficient for it can reduce the iteration number greatly, and LSLIM is also efficient for it can assure the convergence of the iteration of the reliability index. 展开更多
关键词 Slope stability Finite element method Reliability analysis Limited step length iteration method (LSLIM) Accelerating convergence
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部