首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到19条相似文献,搜索用时 218 毫秒
1.
基于动力学基本方程,运用有限单元法(FEM)和NEWMARK隐式积分方法,对动荷载(FWD荷载)作用下路基下伏黄土暗穴对路面结构变形响应的影响进行了弹塑性数值分析。考虑到人工截断边界上波反射对计算结果的影响,分别用传递边界和半无限单元来处理侧面和底面边界。主要考虑了动荷载周期、暗穴洞径和埋深3个影响因素,并在计算结果的基础上分析总结了它们对路面结构变形响应的影响规律。  相似文献   

2.
高成雷  朱永全 《岩土力学》2007,28(Z1):536-539
针对浅埋暗挖洞桩法理论分析落后于工程实践的实际情况,依据地下结构设计计算理论的地层--结构法,以有限单元法作为分析手段,建立三维计算模型,系统开展了浅埋暗挖洞桩法施工过程的数值模拟,以及参数变化对洞周围岩稳定性和位移场的影响分析。结果表明:浅埋暗挖洞桩法用于大断面洞室或超浅埋洞室暗挖施工时,洞周围岩稳定性良好,并可有效控制地表沉降。洞室跨度为14 m左右时控制地表沉降的效果最好;在不同埋深条件下控制地表沉降的效果基本相同;洞室高度的影响则不明显。研究的结论对今后浅埋大断面单跨洞室暗挖施工方案比选和采用浅埋暗挖洞桩法施工具有指导 作用。  相似文献   

3.
车辆荷载作用下隔震沟隔震效率影响因素分析   总被引:2,自引:0,他引:2  
基于动力学基本方程,运用有限单元法(FEM)和Newmark隐式积分方法,对隔震沟对车辆荷载(FWD荷载)引起的地基振动的隔震效率的影响因素进行了弹塑性数值分析。考虑到人工边界上波反射对计算结果的影响,分别用有限单元和半无限单元离散计算区域内部和边界,分析中主要考虑了隔震沟的位置、深度、宽度三个主要影响因素,基于计算结果总结出其影响规律。  相似文献   

4.
隧道地震响应数值模拟研究   总被引:2,自引:1,他引:1  
在进行隧道地震响应的数值模拟研究时, 横向计算范围和人工边界等对计算结果有很大的影响。本文以黄草坪隧道为研究对象, 应用有限差分程序FLAC3D对其进行地震响应的数值模拟研究, 将横向计算范围分别取为隧道洞径的5倍、6倍、7倍、8倍、9倍和10倍, 并分别采用FLAC3D中的截断边界、自由场地边界和粘性边界进行计算。研究结果表明, 当地震波为P波时, 横向计算范围取为洞径的7至8倍, 人工边界采用自由场地边界或粘性边界是比较合理的。   相似文献   

5.
根据黄土暗穴空间走向的不同,将黄土边坡桥基下伏暗穴对桥梁的危害归纳为倾倒破坏模式和滑塌破坏模式。采用二维有限元方法,对黄土边坡顺沟向桥基下伏暗穴对桥梁的致灾机理进行了数值模拟分析后得出:黄土暗穴引起的桥梁变形以垂直下沉变形为主,水平方向的变形不明显;随着黄土暗穴的发展,其半径由0.2m逐步增大至0.5m、1.0m时,桥梁失稳主要表现为桥基下伏黄土暗穴周围的舌状塑性区沿45°方向放射性扩展,与桥基附近土体塑性破坏区相贯通导致桥梁不均匀沉降并向沟外侧倾倒破坏。同时,通过有限元法进行模拟计算,得出了桥梁安全时顺沟向桥基下伏黄土暗穴的临界埋深与其半径之间关系可用对数函数关系式表示,其相关系数反映拟合关系具有很高的精度。  相似文献   

6.
断层、滑坡、液化等地质灾害引起的场地大变形对埋地管道结构安全产生严重的威胁。开展了中密砂中埋地管道−砂土水平横向相互作用的系列三维数值模拟,根据数值模拟的结果探讨了不同深径比下管−砂土横向相互作用时土体的破坏模式,研究了深径比对砂土极限承载力的影响。基于管周土体的破坏模式建立了简化计算模型,根据极限平衡理论推导了管道水平横向运动时砂土极限承载力计算公式。研究结果表明:极限状态下,浅埋管道周围土体形成延伸到地表的破裂面,轮廓线近似对数螺线;砂土的极限承载力随着深径比增加,最终在临界深径比处达到稳定;随着深径比的增加,土体发生剪切滑动破坏所需的管道位移也逐渐增大;由于横向承载力系数取值依据不同,国内外规范计算所得土体极限承载力差异较大;得到的解析解能够较好地预测中密砂土中浅埋管道水平横向运动时土体的极限承载力。  相似文献   

7.
苏凯  常智慧  崔金鹏  伍鹤皋 《岩土力学》2016,37(Z2):706-714
模型范围是影响数值分析计算精度与效率的重要因素,针对深埋隧洞开挖数值模拟分析问题,采用有限差分软件FLAC3D和复合失稳准则,对计算模型的纵向范围取值问题展开研究。首先分析了深埋隧洞开挖过程中围岩纵向变形以及未开挖岩塞对围岩变形的约束作用,然后研究了近端边界和远端边界对监测断面位置处围岩变形的影响,最后采用最小二乘法对多组计算结果进行了位移误差分析,并给出了纵向模型范围的取值建议。研究结果表明,当监测断面距掌子面大于10倍洞径时,未开挖岩塞的约束作用基本消失;远端边界以及近端边界与监测断面的最大位移误差值之间均基本满足幂函数关系,且远端边界对监测点位移误差的影响要大于近端边界;深埋隧洞开挖数值模拟中,纵向模型范围取7.5倍洞径即可满足一般数值分析的精度要求。  相似文献   

8.
模型范围是影响数值分析计算精度与效率的重要因素,针对深埋隧洞开挖数值模拟分析问题,采用有限差分软件FLAC^(3D)和复合失稳准则,对计算模型的纵向范围取值问题展开研究。首先分析了深埋隧洞开挖过程中围岩纵向变形以及未开挖岩塞对围岩变形的约束作用,然后研究了近端边界和远端边界对监测断面位置处围岩变形的影响,最后采用最小二乘法对多组计算结果进行了位移误差分析,并给出了纵向模型范围的取值建议。研究结果表明,当监测断面距掌子面大于10倍洞径时,未开挖岩塞的约束作用基本消失;远端边界以及近端边界与监测断面的最大位移误差值之间均基本满足幂函数关系,且远端边界对监测点位移误差的影响要大于近端边界;深埋隧洞开挖数值模拟中,纵向模型范围取7.5倍洞径即可满足一般数值分析的精度要求。  相似文献   

9.
隧道浅埋段施工过程中围岩变形复杂,选取隧道拱顶竖向位移为研究对象,分析隧道浅埋段围岩竖向位移的监测方法,在阿拉坦隧道进行了实地监测,并建立有限元数值计算模型,分析隧道浅埋段围岩变形规律。结果表明:在0.6倍洞径范围内开挖对拱顶围岩竖向位移影响较大,达到总位移的61%~67%;与75 m范围内竖向位移比较,距离隧道中心1.2倍洞径处竖向位移几乎为零,围岩松动圈已延伸至地表,离隧道中心线越远扰动强度越弱。数值计算得出岩层及地表变化规律与现场实测基本一致。  相似文献   

10.
锦屏二级水电站深埋引水隧洞群允许最小间距研究   总被引:3,自引:0,他引:3  
江权  冯夏庭  周辉 《岩土力学》2008,29(3):656-662
锦屏二级水电站引水隧洞群最大的特点是埋藏深、地应力高、外水压力大。这一极端复杂的赋存环境给4条引水隧洞的中心线间距确定带来了很大的挑战。为此,首先通过流-固耦合的数值计算方法,对洞间岩体塑性区贯通与否、隧洞壁面关键点位移曲线拐点、收敛位移是否超出相关规范共3种判别标准进行分析后,得到引水隧洞群最小理论间距值为50 m。进而在类比与引水隧洞本身相邻的辅助洞和国内外几个典型深埋隧洞的洞径、埋深和间距的基础上,综合确定深埋引水隧洞群的最小允许中心线间距为52 m,为当前设计采用60 m洞间距提供了有力的理论支持。  相似文献   

11.
This paper presents a boundary element method (BEM) procedure for a linear elastic fracture mechanics analysis in two‐dimensional anisotropic bimaterials. In this formulation, a displacement integral equation is only collocated on the uncracked boundary, and a traction integral equation is only collocated on one side of the crack surface. A fundamental solution (Green's function) for anisotropic bimaterials is also derived and implemented into the boundary integral formulation so that except for the interfacial crack part, the discretization along the interface can be avoided. A special crack‐tip element is introduced to capture the exact crack‐tip behavior. A computer program using FORTRAN has been developed to effectively calculate the stress intensity factors of an anisotropic bimaterial. This BEM program has been verified to have a good accuracy with previous studies. In addition, a central cracked bimaterial Brazilian specimen constituting cement and gypsum is prepared to conduct the Brazilian test under diametral loading. The result shows that the numerical analysis can predict relatively well the direction of crack initiation and the path of crack propagation. Copyright © 2007 John Wiley & Sons, Ltd.  相似文献   

12.
在地球化学勘查项目的资料整理中,应用C#2.0语言编制应用程序,实现批量统计圈定地球化学异常的特征参数及综合异常参数和评序,方法简便,省时、准确。首先建立包含样点坐标和元素分析数据的文本格式文件,将MapGIS软件制作的地球化学异常图及综合异常图的异常边界线转换成"SDTF格式",利用程序读取各元素异常区内的数据,统计其异常面积、平均值、衬度、规模等异常特征参数。再根据程序计算后的综合异常面积、平均衬度、规格化面金属量三个指标对其进行评序,输出统计结果值表,该方法为进一步研究地球化学异常特征提供了数据支持。  相似文献   

13.
利用有限元方法进行大地电磁正演数值模拟时,由于是在有限网格区域上的数值计算,模拟计算时的网格边界为截断边界,而有限元数值模拟时的大地电磁场边界条件需要在足够远处才能够满足,所以截断边界的存在可能会使大地电磁正演模拟的边界条件无法满足,致使对计算结果和计算精度产生影响。利用有限元二维正演程序,在网格边界处加载一维情况下的大地电磁场,然后固定研究区域的网格剖分,并对一维地电模型和二维地电模型在改变有限元网格边界大小的情况下进行计算。在对一维模型进行模拟计算时,截断边界对边界条件没有影响,边界条件自然满足。而对二维模型进行模拟计算时,截断边界的存在对计算结果有较大影响。利用趋肤深度作为有限元网格边界变化的量度,通过改变网格边界大小,对不同的二维地电模型进行计算比较,总结出适合大地电磁有限元正演模拟的参考网格边界。  相似文献   

14.
为研究免共振沉桩过程对地表振动影响,采用密度放大法以消除模型桩弹性模量过大对计算效率的影响,在有限差分软件FLAC3D中建立了相应的连续振动沉桩模型,并和文献中的现场测试结果进行了比较,分析了激振力幅值和振动频率这两个施工参数对地表振动响应的影响。结果表明:密度放大法可有效提高数值模拟的计算效率,模拟沉桩7.0倍桩径(4.9 m)所需计算时间约为12.0 h,数值结果较好地模拟了现场测试中免共振沉桩的地表振动影响;激振力幅值和振动频率均主要对近场(水平距离为5.0倍桩径范围内)的地表振动有明显影响;临界沉桩深度与地表振动影响峰值相对应,该深度随水平距离先增大后趋于稳定;激振力幅值对临界沉桩深度的改变不明显,振动频率对远场临界沉桩深度则有较明显影响。  相似文献   

15.
Viscous boundaries are widely used in numerical simulations of wave propagation problems in rock mechanics and rock engineering. By using such boundaries, reflected waves from artificial boundaries can be eliminated; therefore, an infinite domain can be modeled as a finite domain more effectively and with a much greater accuracy. Little progress has been made, thus far, with the implementation and verification of a viscous boundary in the numerical, discrete element, discontinuous deformation analysis (DDA) method. We present in this paper a new viscous boundary condition for DDA with a higher absorbing efficiency in comparison to previously published solutions. The theoretical derivation of the new viscous boundary condition for DDA is presented in detail, starting from first principles. The accuracy of the new boundary condition is verified using a series of numerical benchmark tests. We show that the new viscous boundary condition works well with both P waves as well as S waves.  相似文献   

16.
初始地应力场是地下洞室设计所需的基本指标。基于江边电站引水隧洞沿线区域的地质资料,利用快速拉格朗日分析程序FLAC3D建立了该区域的数值计算模型,使用了随深度变化的侧压力系数以及应力和位移的混合边界条件,通过模拟引水隧洞沿线不同岩性的岩石、断层破碎带和蚀变带进行正分析计算。根据工程现场实测点的主应力数据,基于径向基函数(RBF)神经网络原理,反演了计算区域的岩体力学参数和初始地应力场。其计算结果与实测地应力值基本吻合,满足精度要求,说明反演结果与工程实际相符,所使用的反演方法是合理的。  相似文献   

17.
It is well accepted that there is a transition of failure mode from ductile to brittle with increasing depth of cut during rock cutting process. Rock failure modes affect cutting efficiency, and knowledge of the failure transition is essential to the determination of optimum cutting parameters. The critical transition depth can be linked with rock properties. In this study, an attempt was made to model rock cutting process and to check the dependence of the critical failure mode transition depth on the brittleness of rock. For this purpose, dimensional analysis was first performed to establish the correlations between rock macro‐properties and micro‐parameters for discrete element simulations. Following the specimen calibration procedure, two types of synthetic rocks having approximately the same uniaxial compressive strength were generated as the synthetic specimens for simulating the rock cutting process. The first specimen was created using conventional model construction method with identical bond strengths between particles, giving rise to undesirably high indirect tensile strength. The second specimen was created using a proposed clustering algorithm such that the ratio between the tensile and compressive strength matches reasonably well with that of real rocks. The results of rock cutting simulations demonstrate that failure mode transition took place in both models, but for the clustered model the transition emerged at a shallower cutting depth. A further exploration was made to derive the critical depth for this transition based on the simulations performed on the clustered models. The derived relationship indicates that the critical transition depth decreases as strength ratio or brittleness of the rock increases. This provides a very useful tool for predicting the critical depth which can be used to help cutting tool design and cutting parameter optimisations. Copyright © 2015 John Wiley & Sons, Ltd.  相似文献   

18.
Experimental and numerical investigations into the bearing capacity of circular footing on geogrid-reinforced compacted granular fill layer overlying on natural clay deposit have been conducted in this study. A total of 8 field tests were carried out using circular model rigid footing with a diameter of 0.30 m. 3D numerical analyses were performed to simulate soil behavior using finite element program Plaxis 3D Foundation. The results from the FE analysis are in very good agreement with the experimental observations. It is shown that the degree of improvement depends on thickness of granular fill layer and properties and configuration of geogrid layers. Parameters of the experimental and numerical analyses include depth of first reinforcement, vertical spacing of reinforcement layers. The results indicate that the use of geogrid-reinforced granular fill layers over natural clay soils has considerable effects on the bearing capacity and significantly reduces the lateral displacement and vertical displacement of the footing.  相似文献   

19.
The consolidation and desiccation behaviour of soft soils can be described by two time‐dependent non‐linear partial differential equations using the finite strain theory. Analytical solutions do not exist for these governing equations. In this paper, we develop efficient numerical methods and software for finding the numerical solutions. We introduce a semi‐implicit time integration scheme, and show numerically that our method converges. In addition, the numerical solution matches well with the experimental result. A boundary refinement method is also developed to improve the convergence and stability for the case of Neumann type boundary conditions. Interface governing equations are derived to maintain the continuity of consolidation and desiccation processes. This is useful because the soil column can undergo desiccation on top and consolidation on the bottom simultaneously. The numerical algorithms has been implemented into a computer program and the results have been verified with centrifuge test results conducted in our laboratory. Copyright © 2001 John Wiley & Sons, Ltd.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号