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1.
明海燕  李相崧  张瑞华 《岩土力学》2006,27(Z1):670-676
降雨是导致斜坡破坏的主要原因。地下水位上升和在土中渗流引起土体应力状态的变化是导致斜坡在降雨过程中或降雨后变形与破坏的关键因素。填土斜坡的稳定性不仅取决于填土的强度,还与填土斜坡的排水条件密切相关。适当的排水条件不仅可以限制斜坡中地下水位上升的高度,而且可以及时消散因材料剪切收缩而生成的超孔隙水压力,防止土体液化,避免斜坡整体流动破坏。本文采用完全耦合有效应力分析程序和与状态相关的剪胀性砂土模型模拟地下水位上升过程中填土排水条件对压实填土斜坡稳定性的影响。完全耦合有效应力分析方法可以模拟孔隙水和土骨架间包括浮力和渗流在内的相互作用。分析结果表明斜坡排水条件是影响斜坡因地下水位上升而变形和破坏的重要因素,加固松散填土斜坡时必须设置适当的排水与泄水装置。  相似文献   

2.
液化型路堤边坡动力稳定性问题涉及岩土工程与工程地震两个学科领域,是边坡工程与砂土液化的交叉课题。采用天然地震记录为输入条件,应用Finn本构关系模型,运用有限差分法,对填土+砂土+卵砾土地层组合的路堤边坡进行了全时程动力分析,探讨了地震作用下路堤边坡的液化初步规律和稳定性。数值模拟结果表明:地震作用引起了路基饱和砂土有效应力急剧减小,并导致路基砂土液化,引起路堤变形破坏。孔隙水压力的积累与消散不仅与地震记录序列存在对应关系,也与砂土所处的位置和深度有密切关系。地表变形破坏主要表现为路堤顶面发生震陷和拉裂破坏,坡底面产生挤压隆起变形。地面以下的变形破坏主要包括土体剪切破坏和深部砂土液化引起的侧向流动破坏。  相似文献   

3.
恒定渗流作用下泥石流起动过程冲刷试验分析   总被引:2,自引:0,他引:2  
杨顺  欧国强  王钧  陆桂红  宇岩  潘华利 《岩土力学》2014,35(12):3489-3495
渗流是泥石流水动力条件主要来源之一,不同渗流流量具有不同的渗流力和冲刷力,从而可引起不同规模泥石流。通过开展室内水槽试验,利用测压管量测渗流过程中的孔隙水压力,并结合高清摄像技术从微观角度记录堆积土体内部细颗粒的运移、骨架颗粒的坍塌现象,以此分析研究土体渗透破坏、起动形成泥石流过程中的渗流和冲刷作用。在此基础上设定水槽坡度为7°,调节恒定渗流流量分别为120、170、265、320 ml/s,分析不同恒定渗流流量对固体堆积物失稳、泥石流起动过程中流态变化的影响。分析结果表明,在恒定渗流流量作用下,堆积土体内部细颗粒迁移、骨架颗粒坍塌造成土体颗粒重排列、孔隙水压力上升进而导致土体抗力降低是泥石流土体颗粒失稳、起动、冲刷的重要原因;随着渗流流量增加,流速迅速上升,土体内孔隙水压力逐步增大,骨架颗粒的失稳、移动主要受渗流及水流冲刷两方面共同作用,堆积土体颗粒的移动分别表现出缓慢小幅滑动后稳定、过渡型滑动和快速流滑现象。  相似文献   

4.
应用有效应力有限元法研究了老虎岩尾矿坝在不同坝高时的应力水平、变形和孔隙水压力分布,以及遭到Ⅶ度地震作用时的反应.分析结果表明:在当前坝高情况下,无地震作用时尾矿坝处于稳定状态.在受烈度为Ⅶ度的地震作用下,尾矿堆积坝坝外坡和沉积滩面的堆积尾矿砂土在局部已经发生液化破坏;在封库坝高情况下,无地震作用时尾矿坝处于极限状态.在受烈度为Ⅶ度的地震作用下,尾矿坝坝外坡和沉积滩面的堆积尾矿砂土已发生大面积液化破坏.在地震作用下,老虎岩尾矿坝堆积尾矿产生液化破坏的主要原因是堆积坝体内浸润线的埋深较浅.对老虎岩尾矿坝必须加强排渗措施,使坝体内浸润线下移.  相似文献   

5.
库水位下降时的岸坡非稳定渗流问题研究   总被引:5,自引:1,他引:4  
孙冬梅  朱岳明  张明进 《岩土力学》2008,29(7):1807-1812
水位下降时岸坡的渗流是涉及土体由饱和向非饱和状态过渡的水-气二相流过程,目前相关研究成果大都假设孔隙气压力为0,忽略孔隙气的影响。根据水、空气的质量守恒定律和达西定律,结合多相流理论建立水-气二相流模型,采用高效的积分有限差分法求解,通过变换主要变量,实现饱和(单相)与非饱和(二相)的相互转变,并给出各种边界条件下合理的数学处理方法。通过Muskat渗流问题,验证了上述模型的正确性;并对某土质岸坡水位下降时的非稳定渗流问题进行分析,结果表明,岸坡的基质吸力小于浸润线以上的负孔隙水压力,在浸润线以上的很大区域为毛细管水饱和带,其土体饱和且基质吸力为0,这对边坡稳定十分不利,精确分析水位下降的边坡稳定问题时,孔隙气压力变化的影响值得研究。  相似文献   

6.
This paper presents the shaking table studies to investigate the factors that influence the liquefaction resistance of sand. A uniaxial shaking table with a perspex model container was used for the model tests, and saturated sand beds were prepared using wet pluviation method. The models were subjected to horizontal base shaking, and the variation of pore water pressure was measured. Three series of tests varying the acceleration and frequency of base shaking and density of the soil were carried out on sand beds simulating free field condition. Liquefaction was visualized in some model tests, which was also established through pore water pressure ratios. Effective stress was calculated at the point of pore water pressure measurement, and the number of cycles required to liquefy the sand bed were estimated and matched with visual observations. It was observed that there was a gradual variation in pore water pressure with change in base acceleration at a given frequency of shaking. The variation in pore water pressure is not significant for the range of frequency used in the tests. The frequency of base shaking at which the sand starts to liquefy when the sand bed is subjected to any specific base acceleration depends on the density of sand, and it was observed that the sand does not liquefy at any other frequency less than this. A substantial improvement in liquefaction resistance of the sand was observed with the increase in soil density, inferring that soil densification is a simple technique that can be applied to increase the liquefaction resistance.  相似文献   

7.
汪斌  唐辉明 《岩土力学》2006,27(Z1):193-197
库岸滑坡同坡体内地下水渗流场的动态变化具有密切的关系。传统的饱和土渗流分析方法无法正确描述水位升降过程中岸坡内孔压场的动态变化规律。从饱和-非饱和非稳定渗流理论出发,选取典型的岩土体的渗流参数,对含有弱透水夹层的理想层状岸坡进行有限元数值分析,得到水位升降过程中岸坡内孔隙水的渗流规律。同时,也得到了坡体内基质吸力和体积含水率随库水位升降变化的历时曲线。分析表明,岩土体的饱和渗透系数、土水特征曲线以及坡体的结构特征等共同决定了水位升降过程中岸坡内孔隙水压力和浸润线的分布。模拟结果可为库岸尤其是含弱透水层边坡的稳定性评价及岸坡的排水加固提供参考依据。  相似文献   

8.
王小雯  张建民  李焯芬 《岩土力学》2018,39(7):2499-2508
针对波浪引起的饱和砂质海床土体和管线相互作用问题,将Biot动力固结理论与笔者课题组提出的砂土液化变形弹塑性本构模型相耦合,较为合理地再现了简谐波浪作用下较浅饱和砂质海床中管线周围可液化海床土体的超静孔隙水压力瞬态累积变化规律与液化过程。数值计算结果与Sumer等的试验规律一致。结果表明:由于管线的存在,改变了饱和砂质海床液化区域的空间分布。液化首先由管线下部土体开始产生,随着波浪荷载的持续作用,液化区域沿着管线外壁向上演化;同时海床表层土体产生液化并向深层发展,最终管线周围土体都发生液化,这是导致空管上浮的主要原因。当饱和砂质海床中存在管线时,管线附近海床土体液化深度明显变深。超静孔压累积和渗透力变化的耦合作用是导致饱和砂质海床土体产生液化的原因。与将海床土体视为饱和弹性多孔介质相比,可考虑液化全过程的弹塑性动力分析能更为合理地揭示实际波浪作用下饱和砂质海床土体的渗流场和应力场的瞬态时空演变规律。  相似文献   

9.
To investigate the influences of reservoir water level drawdown on slope stability, a series of numerical simulations were carried out to examine the impacts of slope angle, slope permeability and water drawdown speed on the pore water pressure (PWP) change during seepage, as well as the factor of safety (Fs) of the slope. Based on the numerical results, an estimation model relating the factor of safety to the influential factors mentioned above was developed. The model expression indicates that there are interaction effects between the slope angle, the drawdown speed and the slope permeability, with regard to the influences on slope stability. Furthermore, in view of the uncertainty characteristics of the slope permeability, reliability assessment was performed to examine the influences of those key parameters mentioned above on the probability of slope failure.  相似文献   

10.
研究不同渗流边界条件下粉砂边坡的稳定特性对滑坡安全评价及防灾减灾具有重要意义。开发研制了室内边坡模型试验系统,分别进行了在上部边界入渗、侧向边界入渗和底部边界入渗的边坡失稳模型试验。分析了各试验中边坡内部不同位置体积含水率、孔隙水压力和基质吸力的变化规律以及坡体破坏过程。结果表明,不同入渗边界条件下边坡土体局部由非饱和变为饱和状态,基质吸力消失,最后在坡面形成不稳定区域塌落破坏。上部边界入渗、侧向边界入渗和底部边界入渗所引起的破坏模式根据其特点可分为局部浅层破坏、多级后退式破坏和坡面滑动破坏。通过监测边坡不同位置的体积含水率,可以为渗流引发的边坡失稳预警机制提供参考依据。  相似文献   

11.
库水位与岸坡体内地下水渗流场的动态变化密切相关。传统的饱和土渗流分析方法无法准确描述水位上升过程中岸坡内渗流场的规律。从饱和-非饱和非稳定渗流理论出发,在室内实验得到基质吸力和体积含水量关系的基础上,通过对实验数据拟合,得出Van Genuchten模型中土水特征参数。以三峡库区典型岸坡为例,模拟库水匀速上升时,坡体为粉质黏土、粉土、砂土和砾石土4种岩土介质类型下的渗流特征,并监测坡面高程为165 m和155 m竖直剖面上的孔隙水压力变化。结果表明:库水位匀速上升过程中岸坡体内浸润线呈"V "字型,并且各时步" V"字型浸润线的拐点连线随渗透性的增大有逐渐与坡面平行的趋势;揭示了4种土体类型孔隙水压力随时间的变化规律。研究成果可为水库岸坡的防治提供较重要的借鉴与参考。   相似文献   

12.
张均锋 《岩土力学》2005,26(Z2):1-5
基于分层边坡在水位涨落时发生滑坡的模拟实验,简要描述了实验中的主要现象,计算了实验模拟的分层坡体内与水位变化直接相关的动态渗流场、孔隙水压力场与渗透速度场分布。根据计算结果,对水位变化导致坡体变形失稳的机理进行了分析,为这类分层边坡滑坡的治理提供了依据。  相似文献   

13.
常剪应力路径下含气砂土的三轴试验   总被引:1,自引:0,他引:1  
孔亮  刘文卓  袁庆盟  董彤 《岩土力学》2019,40(9):3319-3326
天然气水合物完全分解时,产生的气体使得能源土孔隙压力急速增加,有效应力减小,进而引起土体液化破坏。此时深海能源土斜坡的应力状态与静力液化失稳过程可简化为含气土在常剪应力排水(或不排水)应力路径下的破坏问题。以此为背景,提出了制备含气砂土试样的改进充气管法,并开展了含气砂土的常剪应力路径三轴试验。22组试验结果表明:同一孔隙比的含气密砂在不同围压与常剪应力下具有相同的失稳线;含气砂土试样失稳时的应力比和体变均随初始相对密实度的增大而增大;含气密砂在常剪应力路径下饱和度对失稳特征影响的规律性在排水与不排水条件下均不明显,但在不排水条件下含气砂土的孔压(或体变)对变形的敏感性降低;含气密砂在常剪应力路径到达失稳点之后,排水条件下是瞬变的液化鼓胀破坏,不排水条件下是渐变的剪切破坏。  相似文献   

14.
Biniyaz  Aynaz  Azmoon  Behnam  Liu  Zhen 《Acta Geotechnica》2022,17(6):2139-2156

This study investigates the influence of the water level fluctuation on the stability of soil slopes using coupled seepage and slope stability analysis. A simulation framework was proposed and implemented seamlessly using Python code to seek insights into three factors that have not been thoroughly studied for this issue: soil unit weight variation in the unsaturated zone, unsaturated shear strength models, and velocity of water drawdown. For this purpose, the seepage analysis was carried out by discretizing a numerical seepage analysis model using a finite element analysis platform, FEniCS. The output of the seepage analysis, i.e., pore water pressure distribution, was used as input for the slope stability analysis. Limit equilibrium methods including the Bishop Simplified method and the Ordinary Method of Slices were modified to take into consideration the unsaturated shear strength, unit weight variation in the unsaturated zone, and hydrostatic pressure changes in response to the water level fluctuation of a reservoir. Both seepage and slope analysis modules were validated against commercial programs. Analysis results obtained with the validated framework clearly revealed the distinct influences of the three factors in representative silty and sandy slopes.

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15.
砂土液化问题一直是土动力学与岩土地震工程研究领域的重要课题之一。基于南水北调中线某工程,通过现场和室内试验获取土体的物理力学参数,利用岩土数值分析软件FLAC3D对夯扩挤密碎石桩加固干渠液化砂土地基进行了动力数值分析。结果表明,由于夯扩挤密碎石桩的排水作用,干渠底部饱和砂土地基中的超静孔隙水压力和孔压比与加固前相比明显减小;干渠渠道底部饱和砂土中的监测曲线表明,随着地震荷载持续时间的增加,饱和砂土地基中超静孔隙水压力和孔压比峰值较加固前大幅值降低,且时程曲线达到峰值之后也由加固前的基本保持不变改为迅速消减降低;由于夯扩挤密碎石桩的排水和挤密作用,有效消除了干渠渠道底部以及渠堤坡面外侧平台至坡脚底部砂土层的液化现象,加固后干渠底部饱和砂土地基中没有液化现象产生。  相似文献   

16.
Slope stability analysis during rapid drawdown is an important consideration in the design of embankment dams. During rapid drawdown, the stabilizing effect of the water on the upstream face is lost, but the pore water pressures within the embankment may remain high. As a result, the stability of the upstream face of the dam can be much reduced. Installing horizontal drains is a very efficient and cost-effective method for reducing the pore water pressure and increasing the stability of the upstream slope. The theory of horizontal drains in the upstream shell of earth dams is well established, but there seems to be limited resources available for the design of this type of horizontal drains. Hence, this study is focused on the performance of horizontal drains in the upstream shell of the slope of earth dams on the upstream slope stability during rapid drawdown conditions. The parametric study has been conducted on the variation of horizontal drain parameters such as the number of drains, their length, and their location. In this study, ten scenarios were analyzed based on different drainage configurations and the performance of each scenario is investigated on the seepage and the upstream slope stability during rapid drawdown conditions using finite element and limit equilibrium methods. The results demonstrated that the stability of the upstream slope during rapid drawdown conditions increases by increasing the number of drains. The length of drains extending further from its intersection with the critical failure surface does not provide any significant change in the factor of safety. Finally, the study also found that installing drains in the lower region of the upstream shell of earth dams gives more stability than those installed in higher elevations.  相似文献   

17.
陈文化 《岩土力学》2007,28(Z1):698-702
应用多孔介质动力学进行了水下的砂土地层的动力反应分析,水下砂层可以看作是多相介质,孔隙水是可压缩的,土壤采用了非线性本构,考虑了砂土的刚度退化和剪胀性及土水相对运动等因素,并研究了多孔介质波动模拟的边界条件,建立了水体下地层平面动力非线性动力反应的直接差分法,直接求解水体的压力和饱和土层的动孔隙压力,可以进一步分析水下砂土地震液化问题。  相似文献   

18.
Loose saturated cohesionless soils are most susceptible to liquefaction, however there are strong historical evidence suggesting that soils containing fines such as silty sands are also prone to liquefaction during earthquakes. The liquefaction of silty sands has been observed in a number of recent case studies. This paper presents the effects of fine silts on liquefaction potential of sandy soil. Tests have been conducted on the vibration table at different accelerations and pore water pressure is measured. During the lab investigation, locally (Roorkee, India) available Solani Sand and Dhanauri Silt have been used. The soil samples have been prepared by varying silt content and the initial relative density. The results of the study performed are used to clarify the effects of non-plastic fines content on the Solani sand. As the silt content increases, the number of cycles required to produce maximum pore water pressure increases. For a particular level of excitation, rate of pore water pressure generation is maximum at critical silt content. It is observed that critical silt content to generate maximum pore water pressure is different for different accelerations. Further, effect of silt content is very much dependent on relative density.  相似文献   

19.
A full-scale landslide-triggering experiment was conducted on a natural sandy slope subjected to an artificial rainfall event, which resulted in mobilisation of 130 m3 of soil mass. Novel slope deformation sensors (SDSs) were applied to monitor the subsurface pre-failure movements and the precursors of the artificially triggered landslide. These fully automated sensors are more flexible than the conventional inclinometers by several orders of magnitude and therefore are able to detect fine movements (<?1 mm) of the soil mass reliably. Data from high-frequency measurements of the external bending work, indicating the transmitted energy from the surrounding soil to these sensors, pore water pressure at various depths, horizontal soil pressure and advanced surface monitoring techniques, contributed to an integrated analysis of the processes that led to triggering of the landslide. Precursors of movements were detected before the failure using the horizontal earth pressure measurements, as well as surface and subsurface movement records. The measurements showed accelerating increases of the horizontal earth pressure in the compression zone of the unstable area and external bending work applied to the slope deformation sensors. These data are compared to the pore water pressure and volumetric water content changes leading to failure.  相似文献   

20.
徐楚  胡新丽  何春灿  徐迎  周昌 《岩土力学》2018,39(11):4287-4293
相似材料的研制是滑坡模型试验的关键。在相似材料的研究基础上,通过大量的配比试验,结合模糊综合评价法对不同配比材料的相似性进行比较,研制出同时模拟物理力学性能相似和渗流作用相似的水库型滑坡相似材料,这种材料由标准砂、滑体土、膨润土和水溶液混合而成。同时通过库水作用下滑坡模型试验评价该材料的相似效果,记录水位升降过程中坡内的孔隙水压力变化、渗流变化、滑面形态及裂缝形成发展过程。试验结果表明,库水对岩土体物理力学性质的弱化和坡内指向临空面的渗透压力是滑坡产生的主要诱发因素;水库型滑坡的破坏模式为有多级滑面的牵引式破坏;试验观测的浸润线与理论计算结果基本吻合。该相似材料的物理力学性能和渗流效果均能达到试验相似要求,模拟库水作用下滑坡变形破坏过程的效果良好,是一种比较理想的水库型滑坡模型相似材料。研究结果为进一步开展大型水库型滑坡模型试验提供了科学依据。  相似文献   

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