首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到20条相似文献,搜索用时 15 毫秒
1.
为进一步研究层状反倾边坡的弯曲倾倒变形机制,以离心试验为原型,通过离散元数值模拟,研究了层状岩质反倾边坡的变形机理与影响因素。通过预置层内随机裂隙,实现了破裂面的形成和贯通。研究结果表明:模拟结果与试验吻合较好,边坡变形可分为起始蠕变、稳态变形和失稳破坏3个阶段;边坡破裂面在达到破坏荷载(Gf)后瞬间贯通,呈直线型,产状受岩层倾角控制,Gf值与坡角幂函数相关;反倾边坡的破坏需满足倾角和坡角启动条件,且变形破坏与岩层所受弯矩关系密切,当倾角为70°~80°、坡角大于60°时,最易破坏;典型破坏模式有倾倒-折断-块体式、倾倒-弯曲-折断式、倾倒-反折式3种,其受倾角、坡角组合控制;对材料参数的正交试验表明,各参数对Gf的敏感性从大到小依次为密度、层面内摩擦角、层厚、密度比、层面黏聚力,且Gf与层厚、层面内摩擦角及密度比具有良好的线性相关性;层面内摩擦角可影响破裂面产状,从而控制变形体规模,其他参数仅影响Gf的大小。  相似文献   

2.
倾倒变形常见于反倾结构边坡,特别在具有软硬互层结构边坡中,甚至可发育为深度上百米的大型滑坡。为进一步探明此类反倾边坡倾倒变形的破坏机制,以及边坡形态结构及岩体力学参数等因素的影响规律,以离心模型试验为原型,结合离散元数值模拟,分析了倾倒变形的形成过程以及在外界扰动下的破坏机制。并通过单因素分析法、正交设计法等,研究了多种因素对反倾边坡倾例变形的影响,通过极差分析获得了各因素的敏感性。通过在岩层内预置大量多边形随机裂隙,数值模拟较好地实现了对破裂面起裂及延展规律的模拟。结果表明:离心模型试验可较好地还原倾倒变形过程,而离散元数值模拟则可对实验结果进行有效的重现与扩展,两者吻合度良好;岩体变形过程存在3个阶段,即起始变形、稳态变形和失稳破坏等阶段;破裂面呈弧形,在变形积累到一定程度后快速形成;边坡可自下而上形成多级破裂面,并伴随岩层的强烈弯曲变形,在外界扰动下,倾倒变形体将由外到内沿不同破裂面形成渐进后退式破坏;多种影响因素中,边坡形态结构影响最大,层面参数次之,软硬岩岩石力学参数的差异影响较小;具体而言,边坡形态与坡体结构对倾倒变形的影响性大小表现为坡角>倾角>坡高>坡形>层厚比>层厚,坡角、倾角、坡高越大,坡形越外凸,软硬岩层厚差越小,倾倒变形越容易发生;边坡变形规模主要受形态结构因素控制,倾角和坡角影响最显著。  相似文献   

3.
层状岩质边坡破坏模式及稳定性的数值分析   总被引:3,自引:0,他引:3  
林杭  曹平  李江腾  江学良  何忠明 《岩土力学》2010,31(10):3300-3304
运用FLAC3D模拟层状岩质边坡的破坏模式,并采用强度折减法分析结构面倾角与稳定性之间的关系。结果表明:①水平层状边坡坡顶变形破坏早于坡面和坡脚,形成拉破坏区。当结构面倾角较小时,顺倾向层状边坡主要发生滑移破坏;当结构面倾角较大时,发生弯折-溃曲破坏。直立层状边坡主要发生弯曲-板间拉裂-塌落破坏。逆倾向层状边坡的破坏形式为对于小倾角为滑移破坏,对于陡倾角为倾倒破坏。②对于顺倾向边坡,整体安全系数随结构面倾角先减小后增大,呈现两头高、中间低的形态,在倾角为30°时安全系数最小;对于逆倾向边坡,曲线呈现增大-减小-增大的态势,并且大部分高于顺倾向边坡曲线,符合实际情况。③所采用的低强度弹塑性单元能够比较真实地模拟软弱结构面的变形。  相似文献   

4.
Although most cut slopes in Ohio consist of inter-layered, sub-horizontal units of hard and soft sedimentary rocks (sandstone, limestone, dolostone, shale, claystone, mudstone), slopes consisting of relatively thick hard rock units are not uncommon. Design of stable cut slopes in hard rock units needs to consider rock mass strength and orientation of discontinuities with respect to slope face. Results of kinematic stability analyses show that hard-rock cut slopes are less likely to have conventional plane and wedge failures, caused by unfavorable orientation of discontinuities. The main cause of failure is identified to be the undercutting-induced toppling, which is not amenable to traditional kinematic or rock mass strength-based analyses. Therefore, to recommend a suitable slope angle, numerical models, using UDEC software, were employed to study how various slope angles affect the process of undercutting-induced toppling failures. The UDEC models showed a slope angle of 45° (1H:1 V) to be the most stable angle. However, a 63° (0.5H:1 V) slope angle can significantly reduce the potential for such failures and is therefore more appropriate than the widely used angle of 76° (0.25H:1 V).  相似文献   

5.
基于遍布节理模型的边坡稳定性强度折减法分析   总被引:10,自引:4,他引:6  
采用非线性数值分析方法分析边坡稳定性问题时,强度折减法因其具有较多的优点而得到广泛应用。岩土体一般采用理想弹塑性模型,屈服准则为广义米赛斯准则。对于密集节理岩质边坡稳定性问题,采用遍布节理模型可同时考虑岩块和节理属性,更符合岩体状态及工程实际,认为岩体经强度折减后潜在破坏可能首先出现在岩体中或沿节理面或二者同时破坏。结合工程实例,基于遍布节理模型的强度折减法计算结果表明,潜在滑移面为折线型滑面,下部潜在滑移面倾角与节理面等效内摩擦角基本一致,上部潜在滑移面与岩体拉破坏相关;节理倾角与边坡安全系数、潜在滑动范围密切相关,陡倾角节理对边坡稳定性影响较小。通过对边坡失稳判据和边坡滑移面确定的探讨,认为以力或位移不收敛作为边坡失稳判据是适当的,而边坡的剪应变速率物理意义十分明确,适于作为边坡潜在滑移面的确定依据。  相似文献   

6.
重庆市涪陵区厚层软硬相间公路高边坡的详细调查发现,不同的岩层产状,不同开挖方向其斜坡变形破坏模式不同。本文根据野外实例总结了不同岩层产状与开挖方向对应的破坏模式,平缓层状斜坡破坏方式有滑塌式崩塌、倾倒式崩塌和坠落式崩塌;中倾角层状斜坡破坏方式有顺层滑移和崩塌;高陡倾角层状斜坡坡破坏方式有滑移式崩塌和坠落式崩塌。表明斜坡变形破坏地质力学模式与斜坡岩体结构之间存在着密切的成生联系。通过对不同倾角的斜坡岩体破坏方式研究,可以达到系统评价预测斜坡稳定性的目的;通过公路开挖对不同产状岩层可能造成灾害的预期,可以采用不同的预防措施,避免大型灾害的发生。  相似文献   

7.
为探究斜坡内赋存不同角度裂隙对反倾岩质斜坡倾倒变形影响效应,设计9组底摩擦试验,对比无裂隙、含一组陡裂隙和一陡一缓两组裂隙的3种类型试验,并研究不同裂隙角度对破裂面影响效应。研究发现:陡倾裂隙倾角的变化对岩坡变形及主破裂面形态有明显规律性影响,陡倾裂隙倾角越陡,发生倾倒破坏的初始破坏部位逐渐偏浅,破坏面积相对减小,破裂面从近直线型逐渐转变成近弧形;缓倾裂隙的赋存,使陡倾裂隙顺尖端开裂增长并且相互沟通形成贯通的破裂面过程更加快捷;主破裂面上覆层状岩体在倾倒变形时,会在其中部产生反向弯曲折断;通过定量分析,发现随着陡倾裂隙倾角增大,岩坡倾倒变形破坏幅度降低,而主破裂面无论是长度还是反映迹线复杂度的分维值亦随之降低。  相似文献   

8.
Huang  Da  Ma  Hao  Huang  Runqiu 《Landslides》2022,19(4):809-827

Toppling is the foremost failure pattern of anaclinal rock slopes, and deep-seated toppling deformations (DSTDs) are common on high anaclinal slopes on the sides of gorges in western China. The DSTDs can develop to depths of more than 200 m, and may show distinct signs of zonal failure. Many DSTDs undergo transformation to large landslides involving rock volumes of more than 106 m3. However, the conditions for the formation and the basic evolving processes of DSTDs remain unclear. This study seeks to develop an inventory to classify the distribution, and the conditioning factors which govern the formation and deformation modes of DSTDs in western China and to analyze the effect of the geological and geomorphological variables on the toppling intensities. To this end, forty-nine DSTDs were analyzed. The results indicate that DSTDs in western China are commonly distributed along large deeply incised rivers in the southeastern margin of the Qinghai-Tibet plateau. The steep-dip anaclinal metamorphic soft or soft-hard-interbedded strata with near parallel strikes in the river channel, V-shaped deeply incised river channels, and convex slopes are favorable conditions for the formation of DSTDs in these settings. The dip angle, the gradient, and the height of most slopes which develop DSTDs are 60–90°, 30–50°, and 200–800 m, respectively. There is a highly positive relationship between the depth of toppling and the height of the slope. The toppled rock masses can be classed as extremely intense, intense, moderate, and weak toppling zones characterized by complete block detachment, tensile-shear fracture, tensile fracture, and reverse slip along foliations, respectively. Each zone corresponds to a specific range of the dip angle of the toppled strata, the aperture of the tensile cracks, the P-wave velocity, the state of rock weathering, and the degree of unloading. The extremely intense and the intense toppling zones tend to evolve into sliding failures. Overall, 94% of the DSTDs were derived from flexural toppling and 33% have developed into large landslides.

  相似文献   

9.
Rock slope failure is a complex process that usually involves both opening/sliding along pre‐existing discontinuities as well as fracturing of intact rock bridges. Discontinuity persistence is an important factor governing rock slope instabilities. However, traditional slope failure analysis assumes persistent discontinuities, and rock slope fails along a predefined persistent continuous potential failure surface because of the limitations of the analysis tools. This paper proposes the numerical manifold method (NMM) incorporated with a Mohr–Coulomb criterion‐based fracturing algorithm to simulate the progressive failure of rock slopes with non‐persistent joints. Detailed fracturing algorithm is first presented. Then, the NMM enabling fracturing is calibrated through simulating an edge‐cracked plate and the Brazilian test. Lastly, the developed code is applied to investigate the failure process of rock slopes involving non‐persistent joints. Numerical results indicate that the proposed method can capture the opening/sliding along existing discontinuities, the fracturing in intact rock bridges and the final kinematic release. Progressive slope failure is well exhibited. Copyright © 2013 John Wiley & Sons, Ltd.  相似文献   

10.
This paper presents the laboratory test results of nailed soil slopes to study the behaviour of reinforced slopes under surcharge load. Tests were conducted on nailed soil slopes of three different slope angles (β = 30°, 45°and 60°) and nail inclinations (i = 0°, 15° and 30°). Each slope is reinforced with a number of hollow aluminium nails placed in three rows. The failure response, load-settlement, nail forces at the centre of nails and the distribution of nail forces along the length are examined during the tests. The numerical simulation of the model tests is performed by a 3-D finite element program. The numerical results are found in agreement to the corresponding experimental results. It is observed that the nails inclined at 0° to the horizontal give the maximum improvement in the load carrying capacity of the slopes followed closely by the 15° nail inclination. The maximum nail forces are observed in the topmost row of nails and decreases with the depth. The distribution of the nail forces along the nail are also found to be varying with respect to the failure surface of the slopes.  相似文献   

11.
针对不同倾向、不同倾角条件下,边坡变形破坏特征不同但缺乏相互对比分析研究的现状,在充分考虑硬岩岩质边坡变形破坏特征的基础上,配制硬岩相似材料,采用底摩擦试验方法,分析不同倾向、不同倾角边坡变形破坏模式,并借助PIVlab技术进行分析。结果表明:顺倾和反倾边坡变形破坏模式和破坏范围有明显区别。在45°坡度条件下,当顺倾边坡倾角由30°→45°→60°→80°转换时,变形破坏模式由滑移-拉裂→轻微滑移-弯曲(或滑移-剪切)→未有明显变形(整体稳定)→浅表部倾倒-拉裂逐渐演化。在45°坡度、反倾边坡条件下,变形破坏模式由岩层倾角30°和45°条件下无明显变形,逐渐向60°和80°条件下的倾倒-拉裂演化。当岩层倾角较陡时,反倾边坡破坏范围相对顺倾边坡更大,倾倒弯曲转折端更深。PIVlab结果反映出不同结构边坡条件下,不同位置的速度和位移矢量特征不同,且与宏观观察结果相吻合。研究成果能够为同类边坡的稳定性评价和治理设计提供一定参考。  相似文献   

12.
Landslides and slope failures are recurrent phenomena in the Indian Himalayas. The study area comprises the hill slopes along a road stretch of 1.5 km at a distance of 9 km from Pipalkoti on Chamoli–Badrinath highway (NH-58) in the Garhwal Himalayas, India. Based on the field survey, contour map, and the hillshade, the study area has been divided into different zones. Three different zones/slopes in this study area including one potential debris slide, one stable debris slope, and one potential rock slide have been undertaken for investigation and modeling. Field mapping, data collection related to slope features and soil/rock sample collection, and discontinuity mapping for all the slopes have been carried out in field. Soil samples have been tested in the laboratory to determine the physico-mechanical properties. These properties along with some material properties from the literature have been used as input parameters for the numerical simulation. To investigate the failure process in the debris/rock slides as well as stable debris slope, the slopes were modeled as a continuum using 2D finite element plain strain approach. Shear strength reduction analysis was performed to determine the critical strength reduction factor. The computed deformations and the stress distributions, along the failure surface, have been compared with the field observations and found to be in good agreement. The analysis results indicated rock/debris slide slopes to be highly unstable. The debris slide modeling depicted failures both above and below road levels as observed in field. The rock slide modeling could depict the exact pattern of failure involving 3 sets of discontinuities simultaneously as observed in real-field scenario which is a major limitation in case of limit equilibrium analysis. The field-observed stable slope comes to be stable through FE analysis also. Based on these analyses, landslide hazard assessment of the study area could be done.  相似文献   

13.
Xie  Liangfu  Ge  Ying  Zhang  Jiaqi  Tan  Shunli  Wang  Bo  Yan  Echuan  Qin  Yongjun  Wang  Jianhu  Shi  Chen  Yu  Guangming 《Natural Hazards》2021,106(3):1879-1894

This paper presents the analyses of toppling response of layered reverse-dip slopes under the influence of geometric factors of slope angle, strata thickness and dip. The toppling response of reverse-dip slopes under different geometric factors is obtained by using the discrete element code UDEC. Then, a prediction model for toppling deformation is developed by utilizing support vector machine and the toppling-prone combinations of these geometric factors are determined from a total of 120 samples of reverse-dip slopes. The study has shown that the geometric model is a quarter of a spheroid with a slope angle of 80°, a strata dip of 80°, and a strata thickness of 0.19 m as the center. The length of the long equatorial radius of the spheroid is 31° (strata dip axial), that of the short equatorial radius is 21° (slope angle axial), and the polar radius is 0.075 m (strata thickness axial). And the ratio of long equatorial radius, short equatorial radius, and polar radius is 2.48:1.68:1.00.

  相似文献   

14.
This paper presents a numerical procedure to explore how hydraulic conductivity anisotropy and strength anisotropy affect the stability of stratified, poorly cemented rock slopes. The results provide information about the anisotropic characteristics of the medium, including the orientation of bedding planes, the anisotropic ratios of the hydraulic conductivity and the geological significance of the hydraulic conductivity anisotropy on the pore water pressure (PWP) estimation of finite slopes. Neglecting the hydraulic conductivity anisotropy of a slope with horizontal layers leads to a 40% overestimation of the safety factor. For a dip slope with inclined layers with θ = 30°, including the strength anisotropy caused a 25% reduction of the safety factor compared to the cases which isotropic strength is assumed. This paper highlights the importance of the hydraulic-conductivity anisotropy and the strength anisotropy on the stability of stratified, poorly cemented rock slopes.  相似文献   

15.
岩石内部存在的裂隙、孔洞等天然损伤对岩石的力学性能和破坏过程有重要影响,依据细胞自动机理论结合CT无损识别技术实现了含天然裂隙岩石在劈裂条件下裂纹扩展和贯通全过程及其力学性能变化规律的研究。从裂隙砂岩的真实细观结构出发,构建了天然裂隙岩石的数值计算模型,运用CASRock数值计算软件完成了含不同裂隙倾角的砂岩劈裂破坏的数值试验,分析了裂隙倾角对砂岩的力学特性、裂纹扩展过程及能量演化的影响规律。研究表明:(1)天然裂隙砂岩的抗拉强度与裂隙倾角密切相关,随着裂隙倾角的增加,其抗拉强度呈现先减小后增加的趋势;(2)裂隙起裂于天然裂隙尖端,当裂隙倾角0°≤θ<48°时,岩样的破坏是由错开型裂纹引起,裂纹沿着与天然裂隙近垂直方向扩展;当裂隙倾角48°≤θ<94°时,岩样的破坏是由张开型裂纹引起,裂纹沿着与天然裂隙近平行方向扩展;(3)劈裂过程中裂纹尖端应力场存在拉应力区和压应力区,拉应力造成翼裂纹由天然裂隙尖端沿加载端方向萌生扩展,而压应力则引发次生裂纹沿天然裂隙方向扩展;(4)含天然裂隙砂岩劈裂破坏过程能量演化可划分为4个阶段,随裂隙倾角的增大,峰值点处的总能量密度、弹性能密度先缓...  相似文献   

16.
顺层岩质边坡开挖模型试验及稳定性影响因素分析   总被引:14,自引:3,他引:11  
用地质力学模型试验方法,对顺层岩质边坡进行开挖破坏试验。同时在有限元分析的基础上,采用多层结构模型对顺层岩质路堑边坡稳定性的影响因素进行了分析。指出当边坡走向与岩层走向夹角超过30后,边坡发生顺层滑动破坏的可能性很小,基本上可不视为顺层边坡。同时也阐明了岩层倾角以及结构面抗剪强度对顺层岩质边坡稳定性的影响。文中结论可为顺层岩质边坡的科研、设计和施工提供参考。  相似文献   

17.
This study investigates the deformation characteristics of cataclinal slopes in central Taiwan prior to landslide failure. Field surveys and physical model tests were performed to explain the gravitational deformation characteristics of cataclinal slopes under various conditions and to derive the deformation process and failure characteristics. The results show that the distribution of erosion gullies (different length of the slope mass), the extent of erosion (different thickness of the slope mass), the foliation dip angle, and the geological material critically affect the deformation of cataclinal slope masses in the study area. The results of physical model tests indicate that increasing the foliation dip angle, the thickness and the length of sliding mass, particle size (spacing between foliations) increases the depth of slope deformation. Foliation dip angle is the most critical factor that controls the deformation of slate slopes. When the cataclinal slopes reached maximum deformation, a shear failure and translational slide occurred within a short period. The deformation zone exhibited significant cracking at the scarp and the bulging of the slope toe, which facilitated the infiltration of surface water and groundwater, accelerating the deformation to failure.  相似文献   

18.
渗流场与应力场耦合作用下边坡渗流规律对研究边坡稳定性至关重要,应用基于等效连续介质模型和Louis经验公式建立的各向异性岩体渗流应力耦合模型,对顺倾向层状边坡的各向异性渗流规律进行了模拟分析。研究表明:顺倾向层状边坡中水位降深随结构面倾角θ的增大先升高、后降低,呈现两头低、中间高的形态,且越靠近溢出点,结构面倾角对水位降深影响越大;θ约为42°时水位降深最大,潜水面最低,同时渗透各向异性系数达到最大值;顺倾向边坡岩层产状一定时,随着埋深的增加,岩体渗透各向异性系数逐渐减小,裂隙控渗特征由显著到逐渐变弱,表现出向各向同性渗流过渡的趋势。  相似文献   

19.
含软弱夹层岩质边坡在自然环境和工程实践中都比较常见,稳定性差,边坡失稳产生了大量的滑坡灾害,造成大量人员伤亡和经济损失。因此,含软弱夹层岩质边坡稳定性研究一直是工程地质和岩土工程领域的研究重点之一。在收集整理国内外相关资料的基础上,从自重工况、开挖工况、暴雨和蓄水工况、地震工况方面总结了目前含软弱夹层岩质边坡稳定性的研究现状及进展,取得如下主要认识:(1)软弱夹层对岩质边坡稳定性有显著不利影响,含软弱夹层岩质边坡的稳定性比均质岩质边坡、不含软弱夹层的层状岩质边坡都差;(2)含软弱夹层岩质边坡的稳定性系数、变形特征和破坏模式与软弱夹层的含水状态、抗剪强度、倾角、厚度、间距、层数和边坡坡度有关;(3)开挖容易诱发坡体沿软弱夹层滑坡,含软弱夹层岩质边坡开挖后需要及时支护;(4)爆破层裂效应改变了软弱夹层与围岩的接触状态,减小了它们之间的凝聚力和摩擦力,导致边坡稳定性降低;(5)暴雨和蓄水都不利于含软弱夹层岩质边坡稳定;(6)岩质边坡地震动力响应和变形破坏特征受软弱夹层参数(厚度、倾角、含水状态)、地震波特性(地震波的类型、幅值、频率、激振方向)和边坡结构(顺层或反倾)共同影响;(7)在软弱夹层对水平向动力响应的放大或减弱作用及厚层软弱夹层的消能减震作用方面仍然存在不同观点。在此基础上,分析了研究方法的优缺点,指出当前含软弱夹层岩质边坡稳定性研究存在的问题。最后,针对该领域的研究现状,提出了未来的研究重点和方向,主要包括:含多层软弱夹层岩质边坡的渐进性变形破坏过程和稳定性;全面深入研究单因素作用(开挖卸荷、爆破、地震、暴雨、库水位变化、地下水等)对含软弱夹层岩质边坡稳定性的影响机制;多因素耦合作用下含软弱夹层岩质边坡稳定性;支挡结构体系对含多层软弱夹层高陡岩质边坡的加固机制。  相似文献   

20.
单轴压缩下横观各向同性岩石破裂过程的数值模拟   总被引:16,自引:0,他引:16  
采用基于细观损伤力学基础上开发的RFPA2D数值模拟软件,用2种不同的岩石材料来组成7个不同岩层倾角的横观各向同性的岩石试件,通过单轴加载数值模拟试验,模拟横观各向同性岩石渐进破裂的整个过程,分析了岩层与最大主应力之间的倾角和强度之间的关系,讨论了不同岩层倾角的横观各向同性岩体的不同破裂模式及其破坏准则。  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