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1.
目前工程实践中弃渣场抗剪强度参数主要采用工程地质类比法进行取值, 参数误差较大, 有必要采用多种方法对弃渣场抗剪强度参数进行综合取值研究。以某公路弃渣场为工程实例, 通过室内颗分试验确定弃渣场弃渣的颗粒级配, 在此基础上采用室内大型剪切试验及工程地质类比法综合确定该弃渣的抗剪强度参数, 并以此参数计算弃渣体的稳定性。计算结果表明, 弃渣体在天然工况条件下稳定性系数为1.369, 在暴雨工况条件下稳定性系数为1.083, 弃渣场在计算工况条件下处于基本稳定-稳定状态, 与现场巡查及监测结果基本一致。说明该弃渣抗剪强度参数取值比较合理准确, 可为公路弃渣场参数取值提供参考。   相似文献   

2.
软硬互层结构的顺层岩质边坡破坏类型复杂、难于防治, 针对此类边坡地质灾害易发、多发的问题, 从坡面角度、岩层倾向及组合形式、节理分布等方面进行了研究。边坡物理模型试验是揭示边坡变形破坏机理的重要手段, 基于相似理论, 以重庆市万州区孙家滑坡为工程依托, 根据滑坡区地质勘探报告设计了室内边坡物理模型试验; 试验通过顶升模型箱模拟重力加载来探究顺层岩质边坡发生破坏时, 前缘坡角和软弱夹层倾角之间的关系; 结合有限元分析软件Plaxis 2D对物理模型进行了多组数值模拟试验, 以验证软硬互层顺层岩质边坡破坏机制。试验结果表明: 对于顺层岩质边坡, 当软弱夹层的倾角在22°左右, 前缘开挖坡角58°左右时, 顺层岩质边坡容易发生滑动, 滑动面为后缘节理面和软弱夹层的贯通面。因此, 顺层岩质边坡稳定性受层面和节理面密度的控制, 当边坡含多层软弱层面时, 易沿层面和后缘节理贯通面发生破坏, 随着软弱面层数增加, 边坡稳定系数逐渐降低。研究成果可以为公路开挖切坡导致的顺层岩质边坡失稳机理研究及其稳定性评价提供理论依据, 为顺层岩质边坡失稳的预测预报提供支撑。   相似文献   

3.
日照市东港区后村镇挪庄村崩塌地质灾害点高差大、坡度陡,危害对象多,自1998—2021年多次发生局部崩塌,造成道路破坏及房屋受损,严重威胁着人民群众的生命财产安全。本文通过现场调查、地质测绘及工程勘察等技术手段,查清了崩塌体失稳机理的主要原因,分析了现状稳定性,通过采用圆弧滑动条分法计算,计算出边坡稳定性系数为0.761,边坡属不稳定状态。通过边坡修整、砌筑挡土墙及截(排)水沟、防护和绿化工程等工程治理措施后,对坡面稳定性进行了计算,治理后的边坡满足规范要求的稳定安全系数。地质灾害治理工程带来的经济效益、社会效益及环境效益凸显。  相似文献   

4.
在边坡稳定性上极限分析中, 由于考虑了材料的理想弹塑性本构关系与相关流动法则, 相比极限平衡法更符合岩土材料的特征。在以往的二维边坡极限分析上限法中, 要求坡面形态为规则的直线, 而无论是天然边坡还是人工边坡, 边坡的坡面形态往往并非规则的直线。此外, 以往的边坡极限上限分析中得到的稳定数Ns=c/γH主要针对土坡的临界高度计算, 且未考虑孔压等外力对边坡施加的外功率。不同于传统极限平衡法采用静力学的平衡条件, 本研究针对非直线型坡面边坡稳定性问题, 假定滑动面为对数螺旋线, 基于极限分析上限定理和虚功原理, 提出了一种边坡发生旋转破坏时旋转中心的确定方法, 推导出了非直线型坡面边坡的重力虚功功率和能量平衡方程的解析解, 并提出了基于内、外功率之比的稳定系数K用以评价边坡的稳定性。通过算例比较了不同形态天然边坡的稳定性和人工削坡对边坡稳定性的影响, 并分析了边坡的坡度(β)、土体的内摩擦角(φ)、黏聚力(c)以及孔压系数(ru)对稳定系数K的影响规律。对于坡度较大的边坡, 通过削坡改变坡面形态提高了边坡的稳定系数K。稳定系数K随黏聚力的增加而非线性增大, 随孔压系数的增加而降低。当黏聚力相对于孔压系数对边坡稳定性影响更大时, 稳定系数K随内摩擦角的增加而增大; 反之, 稳定系数K则随内摩擦角的增加而减小。以上结果符合对边坡稳定性分析的普遍认知, 验证了模型的合理性。另外, 通过将该方法与传统的Bishop法的计算结果进行对比, 发现安全系数Fs=1与稳定系数K=0的临界状态物理意义相同, 稳定系数K随黏聚力非线性增加, 更符合边坡的渐进破坏过程。   相似文献   

5.
以日照市岚山区某弃土场为研究对象,通过对现场调研并采样开展直剪试验,在压实度分别为90%、92%和95%的情况下取得不同的黏聚力c和内摩擦角φ值,通过MIDAS GTS NX进行数据模拟,选取MohrCoulomb模型,采用有限元强度折减法(SRM)算出边坡的等效应变塑性区及安全系数,以此分析边坡稳定性。利用数值模拟的结果,分别绘制坡高、坡比与安全系数的关系图,归类分析不同坡高和坡度对边坡稳定性系数的变化规律。通过边坡稳定影响因素的敏感性分析,分析影响边坡稳定性各因素与边坡安全系数之间的相关性,即分析各因素的变化对于边坡安全系数的影响程度。  相似文献   

6.
针对土质边坡坡面稳定性问题,从土体改性机理出发,采用高分子稳定剂对土质坡面进行生态护坡。对自主研制的高分子稳定剂改性土的强度、抗冲刷性和植被生长等进行了室内评价,通过室内试验和微观扫描深入分析了高分子稳定剂的生态护坡机理,并通过工程实例应用进一步验证了高分子稳定剂的生态护坡效果。结果表明:高分子稳定剂可以在较大程度上提高土体的强度和抗冲刷性,同时可以促进植被的生长;高分子稳定剂生态护坡机理是通过包裹土质边坡坡面的土颗粒形成网状膜结构,提高土体的强度和抗冲刷性等性能,给坡面植被提供良好的生长环境,从而达到生态护坡的效果;工程实例验证了高分子稳定剂应用于土质边坡生态护坡的可行性,为土质边坡坡面治理提供了一条有效的解决途径。  相似文献   

7.
通过对太原市杏花岭区小返乡后李家山村的两处边坡进行勘察,主要查明岩土类型、成因、工程特性以及岩土的透水性和地下水的出露情况,查明坡体岩土的物理力学性质和软弱结构面的抗剪强度,对边坡的稳定性进行了分析,稳定性分析采用圆弧滑动法进行,两处边坡均处于不稳定状态,在降水条件诱发下极易发生滑动,必须尽快进行综合整治.  相似文献   

8.
山西乡宁—吉县地区黄土高边坡可靠度研究   总被引:1,自引:1,他引:0  
在山西乡宁—吉县地区实测了7个具有代表性的自然极限状态黄土高边坡断面,建立边坡地层结构模型;选取研究区合理的黄土物理力学参数,并分地层年代对10个典型工点的黄土强度参数内聚力和内摩擦角的变异性进行分析;选取6组典型的强度参数变异系数组合,基于Monte Carlo法进行可靠度模拟,评价该区边坡稳定性;采用自然类比法进行边坡设计.结果表明:边坡失效概率随坡高的变化趋势一致,均是中等坡高(49.8m)的边坡失效概率较大,低坡和高坡的失效概率较低;当变异系数较小时,边坡失效概率对坡高和坡度的变化敏感,而当变异系数较大时,边坡失效概率对坡高和坡度的变化不敏感;当坡型一定、强度参数变异系数较小时,边坡的稳定系数基本不变,而当参数变异系数超过某一界限时,稳定系数随变异系数的增大而增大,二者存在非线性相关关系;研究区黄土边坡处于基本稳定状态,但其失效概率最大达69.3%,平均21.1%,介于20%~30%的比例为33.3%,大于30%的比例为14.3%,可靠度指标介于-0.5~8.5,其中小于2.7的比例为88.1%;对于坡高约为50m的黄土高边坡,若取30%作为可接受失效概率,边坡坡度需降至45°以下,如果期望可接受失效概率在10%以内,则坡度不宜超过34°.  相似文献   

9.
对传统的CSMR分级方法中裂面特征和裂面间隙取值进行了改进,更好地体现了边坡岩体的岩性对边坡稳定性的影响,用该方法对312国道商—丹段K132 700~K132 850段岩质工程高边坡进行了定性评价。结果表明,该岩质工程高边坡不稳定,提出了以锚喷支护为主的主动支护方案。工程实例证实,定性评价结果可靠。  相似文献   

10.
由于传统搜索方法对岩质边坡滑裂面的确定无法兼顾效率与精度, 如何迅速准确确定潜在滑裂面仍然是个难题。极限平衡法在岩质边坡稳定性分析中备受认可, 采用岩质边坡平面剪切滑动模型, 以滑裂面的倾角来表征潜在滑裂面的位置; 基于极值法, 推导了极限平衡条件下平面剪切破坏型岩质边坡潜在滑裂面的解析解, 并结合香港秀茂坪路边坡对其准确性进行了验证, 进一步对四川宜宾打营盘山公路多级边坡进行了整体稳定性分析。结果表明: 香港秀茂坪边坡采用本文方法确定的边坡潜在滑裂面倾角与实际滑坡倾角基本一致。实际工程应用中, 采用Slide软件中布谷鸟搜索法和模拟退火法两种搜索方法得到的滑裂面倾角分别为38.0°和37.0°, 本解析法所得倾角为34.8°; 选用Janbu法、Morgenstern-Price法和Sarma法分别计算对应的稳定系数, 结果均为1.04左右, 本文所得稳定系数为1.15, 可见本文方法所得结果基本准确。通过参数敏感性分析发现, 随着黏聚力的增加, 边坡滑裂面倾角越来越小, 稳定系数也随之增加; 而当内摩擦角增大时, 边坡滑裂面倾角和稳定系数也随之增大。   相似文献   

11.
Particle Image Velocimetry(PIV) technique was used to test the analogues of hyperconcentrated flow and dilute debris flow in an open flume. Flow fields, velocity profiles and turbulent parameters were obtained under different conditions. Results show that the flow regime depends on coarse grain concentration. Slurry with high fine grain concentration but lacking of coarse grains behaves as a laminar flow. Dilute debris flows containing coarse grains are generally turbulent flows. Streamlines are parallel and velocity values are large in laminar flows. However, in turbulent flows the velocity diminishes in line with the intense mixing of liquid and eddies occurring. The velocity profiles of laminar flow accord with the parabolic distribution law. When the flow is in a transitional regime, velocity profiles deviate slightly from the parabolic law. Turbulent flow has an approximately uniform distribution of velocity and turbulent kinetic energy. The ratio of turbulent kinetic energy to the kinetic energy of time-averaged flow is the internal cause determining the flow regime: laminar flow(k/K0.1); transitional flow(0.1 k/K1); and turbulent flow(k/K1). Turbulent kinetic energy firstly increases with increasing coarse grain concentration and then decreases owing to the suppression of turbulence by the high concentration of coarse grains. This variation is also influenced by coarse grain size and channel slope. The results contribute to the modeling of debris flow and hyperconcentrated flow.  相似文献   

12.
Gravelly soils are made up of gravel, sand, silt and clay. They are widely used in engineering applications such as rock-fill dams with clay cores, which are the main researches at present. The strength and mechanical properties of the gravelly soils are affected by the content of coarse grain, fine particles, and their adhesive states. These Properties can be verified by laboratory unconsolidated undrained triaxial tests with grain size less than 5 mm and by large scale direct-shear tests with original grain content. Fine particles of the loose gravelly slopes are released under rainfalls, alternated the structures and mechanical properties, even affected the slope stability. There are a series of large scale direct-shear tests with different coarse grain contents to study the influence of fine particles releasing and migration, results showed the strength behavior of the gravelly soils were affected by the coarse grain content (5) and the inflection coarse grain contents. In order to study the erosion features of the gravelly soil slopes on rainfall conditions and the slopes stability alteration, we had carried out one sort of artificial rainfall local and model experiments, the runoff sediment contents were monitored during the experiments. Result showed that the shapes of the slopes surface transformed periodically, runoff sediment contents were divided into five phases according to the experiment phenomena, runoff sediment contents maintained downtrend during the rain time and the downtrend was obviouslyinterpreted by one descend belt no matter the rainfall intensity and the slope angels. Particle size analysis released the deposit on the slope surface lost almost all of the clay, most of the silt and sand after the experiments, this meant the fine particles releasing, migration and accumulation process on condition of rainfall resulted in the instability factor of the slopes even induced landslide or debris flow.  相似文献   

13.
Dambreak-induced bed scouring may undermine the foundation of bridge piers and other structures, and that destruction can pose a serious threat. Consequently, this paper aims at exploring the mechanisms of scouring and armoring. Firstly, the incipient velocity for nonuniform sediment particles was studied, and a formula was derived based on the angle of repose of nonuniform sediment. The results showed that the mechanism of incipient motion for sand and fine gravel differed from that for coarse gravel and cobbles. Also, comparison between experimental and field data shows that the results from the proposed formula agree well with those observed for all conditions. Secondly, a birth-death, immigration-emigration Markov process was developed to describe the bed load transport rate associated with scouring and armoring. The comparison between experimental data and computed results shows that our model can predict the bed load transport rate, although there may be some limitations, the chief of which is that there are many variables in the model to be determined through experiment. This makes its application in river engineering inconvenient.  相似文献   

14.
A large amount of loose debris materials were deposited on the slope of mountainous areas after the 2008 Ms 8.0 Wenchuan earthquake. During and after the earthquake, these loose debris deposits collapsed and slide into valleys or rivers, changing river sediment supply condition and channel morphology. To investigate the mechanisms of granular flow and deposition, the dynamics of slope failure and sediment transportation in typical mountainous rivers of different intersection angles were analyzed with a coupling model of Computational Fluid Dynamics and Discrete Element Method(CFD-DEM). The numerical results show that the change of intersection angle between the granular flow flume and the river channel can affect the deposit geometry and the fluid flow field significantly. As the intersection angle increases, the granular velocity perpendicular to the river channel increases, while the granular velocity parallel to the river channel decreases gradually. Compared to the test of dry granular flow, the CFD-DEM coupling tests show much higher granular velocity and larger volume of sediments entrained in the river. Due to the river flow, particles located at the edge of the deposition will move downstream gradually and the main section of sediments deposition moves from the center to the edge of the river channel. As a result, sediment supply in the downstream river will distribute unevenly. Under the erosion of fluid flow, the proportion of fine particles increases, while the proportion of coarse particles decreases gradually in the sediment deposition. The build-up of accumulated sediment mass will cause a significant increase in water level in the river channel, thus creating serious flooding hazard in mountainous rivers.  相似文献   

15.
This paper presents results of a study on the mechanical properties of sandy and gravely soils within the Cordillera Blanca, Peru. The soils were divided into groups according to their origin (glacial, fluvial, or debris flow). The grain size distribution of forty three soil samples was used to classify the soils according to the scheme of the Unified Soil Classification System (USCS). These distributions have then been used to estimate shear strength and hydraulic properties of the soils. There are clear differences between the soils which reflect their divergent origins. The glacial soils normally fit within one of two distinctive groups according to the proportion of fines (Group A, 7%-21.5%; Group B, 21%-65%). The estimation of shear strength at constant volume friction angle and peak shear strength of the glacial sediments with low content of fines was made using published data relating to the measured shear strength characteristics of soils with similar origins and grain size distributions. The estimated values were supported by measurements of the angle of repose taken from fourteen samples from two moraines and by shear tests on samples from one locality. The results of the grain size distribution werealso used to estimate the average hydraulic conductivity using the empirical Hazen formula which results were verified by field infiltration tests at two localities.  相似文献   

16.
随着桂林市经济和旅游业的发展 ,交通量大幅度的增加 ,原解放桥所能承受的荷载已远远超过它的设计标准 ,加上桥基和桥面已有不同程度的破损 ,建设新的解放桥已势在必行。文章就新解放桥场地的工程地质条件、存在的工程地质问题及所进行的工程地质评价和桥基处理情况作简要介绍。  相似文献   

17.
基于GEOSTUDIO软件,运用统计岩体力学理论,对新疆CHE水利枢纽不同工况下的边坡稳定性进行分析。结果表明:研究区工程地质条件复杂,断层、挤压破碎带及岩脉广泛发育,左右岸均存在5组优势结构面;对左右岸参数敏感性分析,两岸强卸荷岩体的粘聚力c对应的稳定性系数的曲线斜率远大于摩擦角φ对应的稳定性系数的曲线斜率,因此在一定范围内,坡体稳定性对粘聚力c值的变化更为敏感;研究区边坡在自然条件、蓄水条件及库水快速降升条件稳定系数K>1,即边坡处于稳定状态。  相似文献   

18.
夏日哈木镍钴矿为大型镍钴硫化物矿床,现拟建大型露天采场,边坡采用分台阶式高边坡,最高边坡高度超过600m。该工程具有开挖成本高,边坡一但失稳后果严重的特点。为此需要选择一个即节约经济成本又保障整体边坡稳定的最佳边坡角。本文采取Geostudio软件中的Slope模块极限平衡方法对拟建露天采场假设开挖边坡角的整体边坡稳定性进行分析,提出最佳设计边坡角。 本次边坡角优化的思路:首先根据场地工程地质条件和拟建边坡的高度等因素将拟建边坡划分为5个区,选择典型边坡工程地质剖面并进行工程地质岩体分段,然后通过岩石强度指标折减计算(本文采用费辛柯法、M.Georgi法和经验法)给各分段的岩体赋予凝聚力、内摩擦角等计算参数,采用极限平衡方法(Geostudio软件中的Slope模块法)对不同角度下对各分区边坡的破坏形式及安全系数进行计算,最后提出了各分区边坡的最佳设计边坡角。  相似文献   

19.
【目的】从亲疏水特征的角度对贝壳各层次结构中的界面进行分析探讨。【方法】采用接触角测量仪对贝壳的中维界面、无机文石及无机方解石进行水接触角测量。【结果】贝壳内表面的水接触角普遍大于90°,其中最大值为113°,最小值为91°;贝壳表壳层内表面边缘位置的水接触角平均值为67°,内部位置的水接触角平均值为112°;无机文石及无机方解石平整表面的水接触角均小于90°,其平均值分别为50°、49°。【结论】贝壳内表面具有疏水性,即有机质层具有疏水性;由于具有亲水特征的文石及方解石为贝壳矿物的主要成分,说明贝壳矿物结构具有亲水性;贝壳表壳层内表面边缘呈现亲水特征,内部呈现疏水特征。  相似文献   

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