期刊文献+
共找到778篇文章
< 1 2 39 >
每页显示 20 50 100
Effect of buried plates on scour profiles downstream of hydraulic jump in open channels with horizontal and reverse bed slopes
1
作者 Akram Abbaspour Sahar Parvini Ali Hosseinzadeh Dalir 《Water Science and Engineering》 EI CAS CSCD 2016年第4期329-335,共7页
Local scour downstream of sluice gates in erosive beds is one of the main concerns of hydraulic engineers because it can cause considerable damage to structures.Many researchers have conducted various studies to predi... Local scour downstream of sluice gates in erosive beds is one of the main concerns of hydraulic engineers because it can cause considerable damage to structures.Many researchers have conducted various studies to predict the maximum depth and length of scour holes and to develop new methods to control this phenomenon.In the methods that have recently been examined,embedded buried plates are used to control the scour in the erosive beds.In this study,using a physical model,the effect of buried plates in erosive beds on the depth of scour downstream of a hydraulic jump was studied.Several experiments were performed in which plates were buried at 50° and 90° angles at different distances from the apron in open channels with horizontal and reverse bed slopes.The results of experiments in which the scour profiles were drawn in dimensionless forms show that the angle and position of the plates are important to controlling and reducing scour depth.In fact,by reducing the angle of buried plates,the maximum depth of scour is also reduced.Also,comparison of the results of a single buried plate and double buried plates shows that using two buried plates at the distances of 30 and 45 cm from the non-erodible bed is more effective in reducing the scour depth.The best distances of the buried plates with angles of 90° and 50° from the non-erodible bed are 45 cm and 30 cm,respectively,in the condition with a single buried plate. 展开更多
关键词 Local SCOUR BURIED PLATES Hydraulic jump Horizontal and REVERSE bed slopeS
下载PDF
Exploring mechanism of hidden,steep obliquely inclined bedding landslides using a 3DEC model:A case study of the Shanyang landslide in Shaanxi Province,China
2
作者 Jia-yun Wang Zi-long Wu +3 位作者 Xiao-ya Shi Long-wei Yang Rui-ping Liu Na Lu 《China Geology》 CAS CSCD 2024年第2期303-314,I0001-I0003,共15页
Catastrophic geological disasters frequently occur on slopes with obliquely inclined bedding structures(also referred to as obliquely inclined bedding slopes),where the apparent dip sliding is not readily visible.This... Catastrophic geological disasters frequently occur on slopes with obliquely inclined bedding structures(also referred to as obliquely inclined bedding slopes),where the apparent dip sliding is not readily visible.This phenomenon has become a focal point in landslide research.Yet,there is a lack of studies on the failure modes and mechanisms of hidden,steep obliquely inclined bedding slopes.This study investigated the Shanyang landslide in Shaanxi Province,China.Using field investigations,laboratory tests of geotechnical parameters,and the 3DEC software,this study developed a numerical model of the landslide to analyze the failure process of such slopes.The findings indicate that the Shanyang landslide primarily crept along a weak interlayer under the action of gravity.The landslide,initially following a dip angle with the support of a stable inclined rock mass,shifted direction under the influence of argillization in the weak interlayer,moving towards the apparent dip angle.The slide resistance effect of the karstic dissolution zone was increasingly significant during this process,with lateral friction being the primary resistance force.A reduction in the lateral friction due to karstic dissolution made the apparent dip sliding characteristics of the Shanyang landslide more pronounced.Notably,deformations such as bending and uplift at the slope’s foot suggest that the main slide resistance shifts from lateral friction within the karstic dissolution zone to the slope foot’s resistance force,leading to the eventual buckling failure of the landslide.This study unveils a novel failure mode of apparent dip creep-buckling in the Shanyang landslide,highlighting the critical role of lateral friction from the karstic dissolution zone in its failure mechanism.These insights offer a valuable reference for mitigating risks and preventing disasters related to obliquely inclined bedding landslides. 展开更多
关键词 LANDSLIDE Steep obliquely inclined bedding slope Failure mode Failure mechanism Apparent dip creep-buckling Lateral friction 3DEC model Landslide numerical model Geological hazards survey engineering
下载PDF
Dynamic failure mode and energy-based identification method for a counter-bedding rock slope with weak intercalated layers 被引量:7
3
作者 FAN Gang ZHANG Jian-jing +1 位作者 FU Xiao ZHOU Li-rong 《Journal of Mountain Science》 SCIE CSCD 2016年第12期2111-2123,共13页
The dynamic failure mode and energybased identification method for a counter-bedding rock slope with weak intercalated layers are discussed in this paper using large scale shaking table test and the Hilbert-Huang Tran... The dynamic failure mode and energybased identification method for a counter-bedding rock slope with weak intercalated layers are discussed in this paper using large scale shaking table test and the Hilbert-Huang Transform(HHT) marginal spectrum.The results show that variations in the peak values of marginal spectra can clearly indicate the process of dynamic damage development inside the model slope.The identification results of marginal spectra closely coincide with the monitoring results of slope face displacement in the test.When subjected to the earthquake excitation with 0.1 g and 0.2 g amplitudes,no seismic damage is observed in the model slope,while the peak values of marginal spectra increase linearly with increasing slope height.In the case of 0.3 g seismic excitation,dynamic damage occurs near the slope crest and some rock blocks fall off the slope crest.When the seismic excitation reaches 0.4 g,the dynamic damage inside the model slope extends to the part with relative height of 0.295-0.6,and minor horizontal cracks occur in the middle part of the model slope.When the seismic excitation reaches 0.6 g,the damage further extends to the slope toe,and the damage inside the model slope extends to the part with relative height below 0.295,and the upper part(near the relative height of 0.8) slides outwards.Longitudinal fissures appear in the slope face,which connect with horizontal cracks,the weak intercalated layers at middle slope height are extruded out and the slope crest breaks up.The marginal spectrum identification results demonstrate that the dynamic damage near the slope face is minor as compared with that inside the model slope.The dynamic failure mode of counter-bedding rock slope with weak intercalated layers is extrusion and sliding at the middle rock strata.The research results of this paper are meaningful for the further understanding of the dynamic failure mode of counter-bedding rock slope with weak intercalated layers. 展开更多
关键词 顺层岩质边坡 软弱夹层 识别方法 破坏模式 地震损伤模型 HILBERT 地震激发 能量
原文传递
Model test and numerical simulation on the dynamic stability of the bedding rock slope under frequent microseisms 被引量:3
4
作者 Deng Zhiyun Liu Xinrong +4 位作者 Liu Yongquan Liu Shulin Han Yafeng Liu Jinhui Tu Yiliang 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2020年第4期919-935,共17页
Shake table testing was performed to investigate the dynamic stability of a mid-dip bedding rock slope under frequent earthquakes. Then, numerical modelling was established to further study the slope dynamic stability... Shake table testing was performed to investigate the dynamic stability of a mid-dip bedding rock slope under frequent earthquakes. Then, numerical modelling was established to further study the slope dynamic stability under purely microseisms and the influence of five factors, including seismic amplitude, slope height, slope angle, strata inclination and strata thickness, were considered. The experimental results show that the natural frequency of the slope decreases and damping ratio increases as the earthquake loading times increase. The dynamic strength reduction method is adopted for the stability evaluation of the bedding rock slope in numerical simulation, and the slope stability decreases with the increase of seismic amplitude, increase of slope height, reduction of strata thickness and increase of slope angle. The failure mode of a mid-dip bedding rock slope in the shaking table test is integral slipping along the bedding surface with dipping tensile cracks at the slope rear edge going through the bedding surfaces. In the numerical simulation, the long-term stability of a mid-dip bedding slope is worst under frequent microseisms and the slope is at risk of integral sliding instability, whereas the slope rock mass is more broken than shown in the shaking table test. The research results are of practical significance to better understand the formation mechanism of reservoir landslides and prevent future landslide disasters. 展开更多
关键词 bedding rock slope frequent microseisms shaking table test numerical simulation dynamic stability failure mode long-term stability
下载PDF
Effect of the inclined weak interlayers on the rainfall response of a bedded rock slope 被引量:3
5
作者 LI Long-qi 《Journal of Mountain Science》 SCIE CSCD 2016年第9期1663-1674,共12页
Engineering experience shows that outward dipping bedded rock slopes, especially including weak interlayers, are prone to slide under rainfall conditions. To investigate the effect of inclined weak interlayers at vari... Engineering experience shows that outward dipping bedded rock slopes, especially including weak interlayers, are prone to slide under rainfall conditions. To investigate the effect of inclined weak interlayers at various levels of depth below the surface on the variation of displacements and stresses in bedded rock slopes, four geomechanical model tests with artificial rainfall have been conducted. Displacements, water content as well as earth pressure in the model were monitored by means of various FBG(Fiber Bragg Grating) sensors. The results showed that the amount of displacement of a slope with a weak interlayer is 2.8 to 6.2 times larger than that of a slope without a weak interlayer during one rainfall event. Furthermore, the position of the weak interlayer in terms of depth below the surface has a significant effect on the zone of deformation in the model. In the slope with a high position weak interlayer, the recorded deformation was larger in the superficial layer of the model and smaller in the frontal portion than in the slope with a low position weak interlayer. The slope with two weak interlayers has the largest deformation at all locations of all test slopes. The slope without a weak interlayer was only saturated in its superficial layer, while the displacement decreased with depth. That was different from all slopes with a weak interlayer in which the largest displacement shifted from thesuperficial layer to the weak interlayer when rainfall persisted. Plastic deformation of the weak interlayer promoted the formation of cracks which caused more water to flow into the slope, thus causing larger deformation in the slope with weak interlayers. In addition, the slide thrust pressure showed a vibration phenomenon 0.5 to 1 hour ahead of an abrupt increase of the deformation, which was interpreted as a predictor for rainfall-induced failure of bedded rock slopes. 展开更多
关键词 软弱夹层 岩质边坡 降雨条件 层状岩质 地质力学模型试验 光纤布拉格光栅 表面深度 位移量
原文传递
Physical Modeling of Landslide Mechanism in Oblique Thick-Bedded Rock Slope: A Case Study 被引量:5
6
作者 FENG Zhen YIN Yueping +1 位作者 LI Bin YAN Jinkai 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2013年第4期1129-1136,共8页
The Jiweishan landslide illustrates the failure pattern of an apparent dip slide of an oblique thick-bedded rockslide. Centrifugal modeling was performed using a model slope consisting of four sets of joints to invest... The Jiweishan landslide illustrates the failure pattern of an apparent dip slide of an oblique thick-bedded rockslide. Centrifugal modeling was performed using a model slope consisting of four sets of joints to investigate the landslide initiation mechanism. Crack strain gauges pasted between the slide blocks and the base failed in sequence from the rear to the front as the centrifugal acceleration increased. When the acceleration reached 16.3g, the instantaneous failure of the key block in the front triggered the apparent dip slide of all blocks. The physical modeling results and previous studies suggest that the strength reduction in the weak layer and the failure of the key block are the main reasons for the Jiweishan landslide. The centrifuge experiment validated the previously proposed driving-blocks-key-block model of apparent dip slide in oblique with inclined bedding rock slopes. In addition, the results from limit equilibrium method and centrifuge test suggest that even though the failure of the key block in the front is instantaneous, a progressive stable-unstable transition exists. 展开更多
关键词 滑坡机理 物理模拟 岩质边坡 离心加速度 边坡滑动 案例 层状 故障模式
下载PDF
Experimental study on seismic response and progressive failure characteristics of bedding rock slopes 被引量:1
7
作者 Mingdong Zang Guoxiang Yang +3 位作者 Jinyu Dong Shengwen Qi Jianxian He Ning Liang 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2022年第5期1394-1405,共12页
Bedding rock slopes are common geological features in nature that are prone to failure under strong earthquakes. Their failures induce catastrophic landslides and form barrier lakes, posing severe threats to people’s... Bedding rock slopes are common geological features in nature that are prone to failure under strong earthquakes. Their failures induce catastrophic landslides and form barrier lakes, posing severe threats to people’s lives and property. Based on the similarity criteria, a bedding rock slope model with a length of3 m, a width of 0.8 m, and a height of 1.6 m was constructed to facilitate large-scale shaking table tests.The results showed that with the increase of vibration time, the natural frequency of the model slope decreased, but the damping ratio increased. Damage to the rock mass structure altered the dynamic characteristics of the slope;therefore, amplification of the acceleration was found to be nonlinear and uneven. Furthermore, the acceleration was amplified nonlinearly with the increase of slope elevation along the slope surface and the vertical section, and the maximum acceleration amplification factor(AAF) occurred at the slope crest. Before visible deformation, the AAF increased with increasing shaking intensity;however, it decreased with increasing shaking intensity after obvious deformation. The slope was likely to slide along the bedding planes at a shallow depth below the slope surface. The upper part of the slope mainly experienced a tensile-shear effect, whereas the lower part suffered a compressive-shear force. The progressive failure process of the model slope can be divided into four stages, and the dislocated rock mass can be summarized into three zones. The testing data provide a good explanation of the dynamic behavior of the rock slope when subjected to an earthquake and may serve as a helpful reference in implementing antiseismic measures for earthquake-induced landslides. 展开更多
关键词 bedding rock slope Large-scale shaking table test Seismic response Progressive failure characteristics
下载PDF
Influence of depth-thickness ratio of mining on the stability of a bedding slope with its sliding surface in concave deformation 被引量:1
8
作者 Zhang Yuning Tang Jianxin +1 位作者 Li Guodong Teng Junyang 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2016年第6期1117-1123,共7页
In order to study the influence of depth-thickness ratio on bedding slope stability, whose sliding surface is flexural concave in shape under mining conditions, this paper aims to study the characteristics of deformat... In order to study the influence of depth-thickness ratio on bedding slope stability, whose sliding surface is flexural concave in shape under mining conditions, this paper aims to study the characteristics of deformation and damage of bedding sliding with depth-thickness ratios of 200:1, 150:1, 120:1, 100:1 and 50:1by adopting numerical simulation analysis software combined with laboratory-made ‘‘under the influence of mining variable sliding surface slope similar simulation test bed", and to propose identification methods for slope stability under the influence of mining. The results show that mining activities under the slope reduce slope stability. With a decrease in the mining depth ratio, the influence of mining on the slope increases gradually, and the damage to the slope gradually expands, the stability of the slope gradually reduces, fracture occurs on the slope toe and the central fissure gradually develops to the surface,and reaches slide threshold when the depth-thickness ratio is 50:1. 展开更多
关键词 边坡稳定性 滑动面 厚度比 采动 模拟分析软件 开采条件 模拟试验台 破坏特征
下载PDF
Dynamic damage evolution of bank slopes with serrated structural planes considering the deteriorated rock mass and frequent reservoirinduced earthquakes
9
作者 Xinrong Liu Yan Wang +3 位作者 Bin Xu Xiaohan Zhou Xueyan Guo Luli Miao 《International Journal of Mining Science and Technology》 SCIE EI CAS CSCD 2023年第9期1131-1145,共15页
To investigate the dynamic damage evolution characteristics of bank slopes with serrated structural planes,the shaking table model test and the numerical simulation were utilized.The main findings indicate that under ... To investigate the dynamic damage evolution characteristics of bank slopes with serrated structural planes,the shaking table model test and the numerical simulation were utilized.The main findings indicate that under continuous seismic loads,the deformation of the bank slope increased,particularly around the hydro-fluctuation belt,accompanying by the pore water pressure rising.The soil pressure increased and then decreased showed dynamic variation characteristics.As the undulation angle of the serrated structural planes increased(30°, 45°, and 60°),the failure modes were climbing,climbinggnawing,and gnawing respectively.The first-order natural frequency was used to calculate the damage degree(Dd)of the bank slope.During microseisms and small earthquakes,it was discovered that the evolution of Dd followed the“S”shape,which was fitted by a logic function.Additionally,the quadratic function was used to fit the Dd during moderately strong earthquakes.Through the numerical simulation,the variation characteristics of safety factors(Sf)for slopes with serrated structural planes and slopes with straight structural planes were compared.Under continuous seismic loads,the Sf of slopes with straight structural planes reduce stalely,whereas the Sf for slopes with serrated structural planes was greater than the former and the reduction rate was increasing. 展开更多
关键词 Rock bedded slope Serrated structural planes Reservoir-induced earthquakes Hydro-fluctuation belt Damage evolution
下载PDF
含建筑桩基的顺层岩质边坡桩锚支护体系振动台模型试验研究
10
作者 吴曙光 毛振南 +2 位作者 潘林 薛尚铃 徐革 《土木与环境工程学报(中英文)》 CSCD 北大核心 2024年第2期11-22,共12页
基于Bockinghamπ定理,对具有建筑桩基的顺层岩质边坡桩锚支护体系开展振动台模型试验,通过分析预应力锚索、建筑桩基的应变以及边坡坡顶加速度,研究支护体系的动力响应规律。结果表明,预应力锚索的应变在地震波加速度达到峰值时达到最... 基于Bockinghamπ定理,对具有建筑桩基的顺层岩质边坡桩锚支护体系开展振动台模型试验,通过分析预应力锚索、建筑桩基的应变以及边坡坡顶加速度,研究支护体系的动力响应规律。结果表明,预应力锚索的应变在地震波加速度达到峰值时达到最大值,且上排锚索受力大于下排锚索,随着地震幅值的增大,最上排锚索锚固段率先发生滑移破坏失去锚固作用;建筑桩基应变最大值点位于滑动面以下一定深度,且远离边坡坡面的建筑桩基受力大于邻近边坡坡面的建筑桩基;坡顶各点峰值加速度随地震波幅值增大整体表现为线性增大,但在Wenchuan-Wolong波(0.55g)和Sin波(0.4g)工况时,各点峰值加速度相对有所下降,随着地震波幅值增大,各点峰值加速度放大系数在汶川波和正弦波作用下并非单调变化,而是表现为先减小后增大波动变化特点。 展开更多
关键词 建筑桩基 顺层岩质边坡 桩锚挡墙 振动台 模型试验
下载PDF
软弱结构面参数对顺层岩质边坡动力响应的影响研究
11
作者 陈文倩 陈俊智 +2 位作者 陈明清 安南 任春芳 《有色金属(矿山部分)》 2024年第3期86-94,共9页
为了探究地震作用下软弱结构面对岩质边坡动力响应特征的影响。以云南省某露天矿山边坡为研究背景,利用有限差分软件中的非线性动力分析法对顺层岩质边坡进行动力计算,通过控制变量法设计了一系列的数值实验,探究了软弱结构面参数的改... 为了探究地震作用下软弱结构面对岩质边坡动力响应特征的影响。以云南省某露天矿山边坡为研究背景,利用有限差分软件中的非线性动力分析法对顺层岩质边坡进行动力计算,通过控制变量法设计了一系列的数值实验,探究了软弱结构面参数的改变对岩质边坡动力响应的影响规律,再基于正交试验以及极差分析法对影响岩质边坡动力响应的结构面参数进行了敏感性分析。结果表明:结构面参数的改变对于顺层边坡的动力响应有较大影响;各影响因子对顺层岩质边坡动力响应影响程度大小排序为结构面黏聚力>结构面倾角>结构面内摩擦角>结构面厚度。动力响应的研究可为地处地震频发区域的顺层岩质边坡提供抗震依据。 展开更多
关键词 软弱结构面 动力响应 正交试验 数值模拟 顺层边坡
下载PDF
川西南公路顺层边坡桩锚组合结构加固分析——以乐西高速ZK9+352~ZK9+526边坡为例
12
作者 刘正威 邬凯 +4 位作者 罗晓龙 闵祥 陈沛 唐爽 李涛 《科技和产业》 2024年第5期271-279,共9页
四川盆地周边地形地质条件复杂,公路建设中顺层边坡的工程病害频现。通过工程地质分析和数值计算,基于滑面损伤本构模型,研究顺层边坡支护前后滑面应力、位移和边坡稳定性系数等特征量的变化规律,验证桩锚组合结构加固顺层边坡的适用性... 四川盆地周边地形地质条件复杂,公路建设中顺层边坡的工程病害频现。通过工程地质分析和数值计算,基于滑面损伤本构模型,研究顺层边坡支护前后滑面应力、位移和边坡稳定性系数等特征量的变化规律,验证桩锚组合结构加固顺层边坡的适用性;通过施工全周期现场监测,获取边坡深部位移、抗滑桩桩身弯矩和锚索应力的时效特征。结果表明:开挖扰动下顺层边坡具渐进性失稳破坏特征;自坡脚沿滑面向后缘,位移呈指数型平滑递减,剪应力先增大后降低,滑面损伤变量自剪应力峰值位置开始同频衰减;采用桩锚组合结构加固顺层边坡后,滑面位移最大值降低88.62%,最大损伤变量降低84.75%,稳定系数提高25.20%;坡体深部位移、抗滑桩桩身弯矩、锚索应力等监测验证了桩锚组合结构加固的有效作用。 展开更多
关键词 公路 顺层边坡 桩锚组合结构 有限元 现场监测
下载PDF
考虑侧壁阻力的顺层边坡失稳机制及稳定性评价
13
作者 赵海松 张乐 +4 位作者 邬凯 魏安辉 向波 邵江 张俊云 《防灾减灾工程学报》 CSCD 北大核心 2024年第2期404-414,共11页
侧壁阻力作用下,顺层边坡主滑方向将偏离岩层倾向,其变形及失稳机制具有典型特征。以四川盆地马边河流域某顺层边坡为例,基于其工程地质条件,总结顺层边坡不同变形区域的特征,结合失稳边界条件研究了考虑侧壁阻力的顺层边坡失稳演化机制... 侧壁阻力作用下,顺层边坡主滑方向将偏离岩层倾向,其变形及失稳机制具有典型特征。以四川盆地马边河流域某顺层边坡为例,基于其工程地质条件,总结顺层边坡不同变形区域的特征,结合失稳边界条件研究了考虑侧壁阻力的顺层边坡失稳演化机制;最后,对比主滑方向偏离岩层倾向与否的受力差异,分析考虑侧壁阻力的顺层边坡三维稳定性,并研究了各影响因素的作用效应。结果表明:(1)考虑侧壁阻力的顺层边坡变形可划为失稳滑走区、滑坡区和稳定区,滑坡区包含滑动区和蠕滑变形区,滑动区岩体滑动后解体风化为碎、块石土,蠕滑变形区受侧壁阻力影响岩体仅变形拉裂;(2)顺层边坡经岩体劣化和前缘临空后,总体呈下部滑动、中部蠕滑拉裂的顺层临空-后退式破坏;滑动区边界受前缘及侧壁临空控制,长度与侧壁冲沟下切段长度相近;蠕滑变形区部分侧壁由节理面转化为挤压带,侧壁阻力增大,稳定性高于临界失稳状态;受侧壁阻力及滑体厚度控制,蠕滑变形区与稳定区界限处因滑体厚度削薄而拉裂;(3)建立了考虑侧壁阻力的顺层边坡稳定性系数计算式,以及岩层倾角δ、滑面倾角α、主滑方向偏离岩层倾向夹角β三角度间的换算关系式,侧壁摩擦系数和β越大,侧壁阻力越利于顺层边坡稳定。 展开更多
关键词 顺层边坡 侧壁阻力 变形特征 失稳机制 稳定性评价
原文传递
抗滑桩爆破开挖引起多台阶顺层岩质边坡振动响应分析
14
作者 李强 《工程爆破》 CSCD 北大核心 2024年第2期58-65,共8页
为了研究临近抗滑桩施工爆破引起多台阶顺层边坡的振动响应规律,结合巫镇高速公路边坡工程,联合LS-DYNA和FLAC3D软件建立了抗滑桩爆破模型和多台阶顺层岩质边坡动力计算模型,分析了抗滑桩施工爆破荷载特征及其引起多台阶顺层边坡振动速... 为了研究临近抗滑桩施工爆破引起多台阶顺层边坡的振动响应规律,结合巫镇高速公路边坡工程,联合LS-DYNA和FLAC3D软件建立了抗滑桩爆破模型和多台阶顺层岩质边坡动力计算模型,分析了抗滑桩施工爆破荷载特征及其引起多台阶顺层边坡振动速度变化规律。结果表明,抗滑桩施工爆破最大荷载具有水平向小、竖向大的特点,其引起边坡坡面的振动响应特征表现为①坡体下部水平振速大于竖向振速,坡体上部竖向振速大于水平振速;②多台阶顺层岩质边坡坡面具有高程放大效应,且竖向振速放大率大于水平振速;③多台阶顺层岩质边坡内部具有“趋表放大效应”,坡体不同部位的“趋表放大效应”特征显著不同;④坡面下部水平向振速衰减率大于竖向衰减率,坡面上部竖向衰减率(放大率)大于水平向衰减率,各阶边坡坡脚处振动速度衰减率大于坡顶处衰减率。 展开更多
关键词 多台阶顺层岩质边坡 数值模拟 爆破 高程放大效应 趋表放大效应
下载PDF
珠海市南水镇金龙边坡变形破坏特征及稳定性评价
15
作者 赖波 江金进 +2 位作者 江山 江宁 赵风顺 《城市地质》 2024年第1期20-28,共9页
边坡稳定性分析评价是边坡调查评价过程中一个不可或缺的环节。以珠海市金龙边坡为研究对象,分析了边坡的发育特征、影响因素、形成机制。在查明边坡岩土体出露及结构特征基础上,根据典型断面C、ϕ值反演分析及敏感性分析结果,确定金龙... 边坡稳定性分析评价是边坡调查评价过程中一个不可或缺的环节。以珠海市金龙边坡为研究对象,分析了边坡的发育特征、影响因素、形成机制。在查明边坡岩土体出露及结构特征基础上,根据典型断面C、ϕ值反演分析及敏感性分析结果,确定金龙边坡岩土体物理力学参数,采用极限平衡法对金龙边坡进行稳定性分析评价。评价结果表明:金龙边坡在天然工况下处于欠稳定状态,在饱和及饱和+地震工况下处于不稳定状态。 展开更多
关键词 金龙边坡 岩质顺层边坡 发育特征 变形破坏 稳定性评价 珠海市
下载PDF
缓倾软弱夹层对顺层岩质边坡稳定性的影响
16
作者 严子元 《新乡学院学报》 2024年第3期73-76,共4页
为详细了解缓倾软弱夹层对顺层边坡稳定性的影响,以广西六宾高速K23+350~K23+550右侧挖方边坡为例,采用理论计算和数值模拟的方法开展软弱夹层对上覆弃渣体顺层岩质边坡稳定性影响的研究。研究结果表明,在最不利工况下软弱结构面处的位... 为详细了解缓倾软弱夹层对顺层边坡稳定性的影响,以广西六宾高速K23+350~K23+550右侧挖方边坡为例,采用理论计算和数值模拟的方法开展软弱夹层对上覆弃渣体顺层岩质边坡稳定性影响的研究。研究结果表明,在最不利工况下软弱结构面处的位移相对较小,岩质顺层边坡处于稳定状态。弃渣体堆载体部分在暴雨工况下安全系数不满足规范要求,需对其进行加固。 展开更多
关键词 缓倾软弱夹层 顺层边坡 岩质边坡 稳定性
下载PDF
基于FLAC3D的边坡支护方案优化研究
17
作者 杨丽君 赵叶江 《黑龙江科学》 2024年第2期51-55,共5页
为研究抗滑桩及锚杆框架梁在顺层岩质边坡支护中的优化方法,基于三级支护的典型顺层岩质边坡,通过FLAC3D建立数值模型进行计算,对抗滑桩桩身长度及桩身截面积、锚杆锚固倾角及锚固长度进行优化。结果表明,不同长度抗滑桩对岩质边坡进行... 为研究抗滑桩及锚杆框架梁在顺层岩质边坡支护中的优化方法,基于三级支护的典型顺层岩质边坡,通过FLAC3D建立数值模型进行计算,对抗滑桩桩身长度及桩身截面积、锚杆锚固倾角及锚固长度进行优化。结果表明,不同长度抗滑桩对岩质边坡进行支护时,抗滑桩稳定系数均随着桩身长度的减小而减小,且在边坡岩性发生突变的地方抗滑桩的水平位移也会发生突变,在一定范围内适当减短抗滑桩的桩身长度并不会引起桩身水平位移的大幅度改变,故在满足规范的条件下可通过减小桩身长度来进行优化设计。改变抗滑桩的截面面积并不会显著改变桩身的水平位移,但抗滑桩截面面积会显著影响抗滑桩稳定系数,存在一个临界截面积使得桩身截面积在小于临界面积时,稳定系数随着截面积的减小迅速减小,而在桩身截面积大于临界面积时,稳定系数随着截面积的减小只会略微减小。边坡最大水平位移随着锚杆锚固倾角的增加、锚固长度的增加而增加,边坡稳定系数随着锚杆锚固倾角的增加、锚固长度的增加而增加,故在进行锚杆框架支护设计时可通过增大锚固倾角及增加锚固长度提高边坡稳定性,此结果可为抗滑桩及锚索框架梁在顺层岩质边坡支护提供优化设计方案。 展开更多
关键词 顺层岩质边坡 抗滑桩 锚杆框架梁 FLAC3D
下载PDF
降雨作用下倾斜层理岩质边坡稳定性数值模拟分析
18
作者 杨朝义 王会云 +1 位作者 李志鹏 陶川溢 《黑龙江交通科技》 2024年第3期5-9,共5页
为研究倾斜层理的岩质边坡在降雨条件下的稳定性情况,结合云南普朗铜矿重点地质灾害协同演变及智能监测预警系统关键技术研究工程实践,选取普朗地区一处具有代表性的边坡,采用数值模拟软件进行单项流固耦合分析,从边坡的含水率、坡体位... 为研究倾斜层理的岩质边坡在降雨条件下的稳定性情况,结合云南普朗铜矿重点地质灾害协同演变及智能监测预警系统关键技术研究工程实践,选取普朗地区一处具有代表性的边坡,采用数值模拟软件进行单项流固耦合分析,从边坡的含水率、坡体位移和安全系数等方面,进行不同层理倾角的边坡稳定性分析。研究结果表明坡体处于稳定状态,层理倾角的大小会对边坡的稳定性产生影响,层理倾角为75°时,坡体的最大位移量最小,安全系数最大。 展开更多
关键词 倾斜层理 岩质边坡 数值模拟 边坡稳定性
下载PDF
路堑顺层边坡稳定性分析及支挡防护数值模拟研究
19
作者 陈权川 李兰 陈权益 《交通科技》 2024年第1期1-6,共6页
为研究含泥岩夹层顺层白云岩边坡的变形特征、稳定性及支挡防护,以某路堑边坡为例,基于midas GTS有限元软件进行了数值仿真计算,并结合现场观测分析边坡开挖及支挡防护后的坡体变形特征、应力状态、塑性区分布、抗滑桩受力特性,以及边... 为研究含泥岩夹层顺层白云岩边坡的变形特征、稳定性及支挡防护,以某路堑边坡为例,基于midas GTS有限元软件进行了数值仿真计算,并结合现场观测分析边坡开挖及支挡防护后的坡体变形特征、应力状态、塑性区分布、抗滑桩受力特性,以及边坡加固后的稳定性状态。结果表明,研究边坡开挖至路基标高后,泥岩夹层出露,其破坏模式为平面滑动,稳定性系数为0.92,边坡不稳定,需做进一步支挡;边坡开挖后预应力锚索在坡体表面发生应力集中,且产生了良好的反向约束力,改善了坡体内部的应力分布;坡脚施加抗滑桩后与预应力锚索共同约束坡体,防止其沿泥岩夹层滑动,起到了良好的阻隔作用,且二者相结合后固脚强腰效果良好,确保了边坡整体稳定与局部稳定;经长期观测,边坡采用抗滑桩+框架锚索等多种结构综合治理具有良好的支护效果。 展开更多
关键词 顺层边坡 抗滑桩 框架锚索 稳定性 MIDAS GTS
下载PDF
某项目顺层边坡的稳定性计算分析与失稳预防处置
20
作者 李晓彤 李兴 《市政技术》 2024年第3期72-76,81,共6页
顺层边坡是山区公路建设中常见的一种不良地质,而且由于软弱结构层的存在,其具有比普通边坡更复杂的地质破坏模式,施工过程中在外力的扰动下极易发生失稳。因此,为了减少顺层边坡施工过程中的失稳破坏,提前对边坡采取了有效的预防措施,... 顺层边坡是山区公路建设中常见的一种不良地质,而且由于软弱结构层的存在,其具有比普通边坡更复杂的地质破坏模式,施工过程中在外力的扰动下极易发生失稳。因此,为了减少顺层边坡施工过程中的失稳破坏,提前对边坡采取了有效的预防措施,即:通过对已滑移段顺层边坡进行反演,计算得到了滑体结构面的相关参数;再根据计算所得结构面参数,模拟分析未滑移段顺层边坡的稳定性,确定了边坡支护所需的剩余下滑力;最后提出了针对性预防措施并加以实施,最终提高了边坡的稳定性。该方法能够在边坡发生较小范围破坏时,模拟获得稳定性参数,并对顺层边坡进行处理;同时可为相同地质条件的边坡防护提供参考,以避免更大范围的边坡失稳破坏,达到防患于未然的目的。 展开更多
关键词 山区公路 顺层边坡 软弱结构层 失稳破坏 反演 预防措施
下载PDF
上一页 1 2 39 下一页 到第
使用帮助 返回顶部