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1.
水力和超载条件下锚固岩石边坡动态稳定性拟静力分析   总被引:1,自引:0,他引:1  
罗强  李亮  赵炼恒 《岩土力学》2010,31(11):3585-3593
基于极限平衡理论,综合考虑水力条件、坡顶超载、地震荷载效应和锚固效应对岩石边坡进行了全面的稳定性分析。计算给出了多影响因素条件下岩石边坡稳定性安全系数的表达式,并重点分析了几种相关参数组合对岩石边坡稳定性的影响。分析表明,坡顶张拉裂缝积水、地下水渗流作用、滑面出流缝被堵塞、地震影响效应不利于岩石边坡抗滑稳定性,而锚索锚固效应则对提高边坡抗滑稳定性有积极作用;坡顶张拉裂缝积水、滑面出流缝被堵塞、水平向地震影响效应都不利于岩石边坡抗倾覆稳定性,但锚索锚固效应、坡顶超载、与竖直方向地震效应则对提高边坡抗倾覆稳定性有益。最后针对工程实际,提出了相应的工程建议。  相似文献   

2.
In this paper, an analytical expression is derived for the factor of safety of the rock slope incorporating most of the practically occurring destabilizing forces as well as the external stabilizing force through an anchoring system. The slope stability is analyzed as a two-dimensional problem, considering a slice of unit thickness through the slope and assuming negligible resistance to sliding at the lateral boundaries of the sliding block. A detailed parametric study is presented to investigate the effect of surcharge on the stability of the rock slope for practical ranges of governing parameters such as inclination of the slope face, inclination of the failure plane, depth of tension crack, depth of water in tension crack, shear strength parameters of the material at the failure plane, unit weight of rock, stabilizing force and its inclination, and seismic load. For the range of parameters considered in the present study, it is found that the factor of safety of the rock slope decreases with increase in surcharge; the rate of decrease being relatively higher for lower values of surcharge. It is also observed that for a specific surcharge, the factor of safety depends significantly on all other parameters, except for unit weight of rock and higher values of inclination of stabilizing force to the normal at the failure plane. For any combination of these variables, the surcharge plays a vital role in the stability. A perfectly stable slope at relatively low surcharge can become unsafe with the increase in surcharge. The deterioration in the stability can be quite rapid, depending on the combination of the factors under consideration. The analysis and the general expression proposed herein can be used to carry out a quantitative assessment of the stability of the rock slopes.  相似文献   

3.
李忠诚  朱小军 《岩土力学》2007,28(Z1):809-814
建立了三维数值模型,进行堆载-弹塑性地基-桩基共同作用有限元数值分析。在地面超载条件下,对自由场土体的侧向位移模式进行了探讨,得出了土体侧向变形规律。在此基础上,对堆载作用下邻近桩基的力学性状进行了分析,包括不同堆载大小、不同堆载距离和不同桩间距等情况下桩基的侧向变形和弯矩的变化规律。分析结果表明:随着堆载的增加,桩基的变形和弯矩都有显著的增长,桩基逐渐弯曲。在同样条件下,增加桩的刚度,桩身弯矩迅速减小,桩身刚度很大时,会发生整体侧移。桩间距和堆载距离对桩身弯矩和变形有重要影响,随着桩间距和堆载距离的增大,桩身的变形和弯矩都将减小。  相似文献   

4.
An analysis is developed to determine the response of laterally loaded rectangular piles in layered elastic media. The differential equations governing the displacements of the pile–soil system are derived using variational principles. Closed‐form solutions of pile deflection, the slope of the deflected curve, the bending moment and the shear force profiles can be obtained by this method for the entire pile length. The input parameters needed for the analysis are the pile geometry and the elastic constants of the soil and pile. The new analysis allows insights into the lateral load response of square, rectangular and circular piles and how they compare. Copyright © 2007 John Wiley & Sons, Ltd.  相似文献   

5.
This work presents analytical solutions for determining lateral force (force per unit length) and centroid location caused by horizontal and vertical surcharge surface loads acting on a cross‐anisotropic backfill. The surcharge loading types are point load, line load, uniform strip load, upward linear‐varying strip load, upward nonlinear‐varying strip load, downward linear‐varying strip load, and downward nonlinear‐varying strip load. The planes of cross‐anisotropy are assumed parallel to the backfill ground surface. The proposed solutions, derived by integrating the lateral stress solutions (Int. J. Numer. Anal. Meth. Geomech. 2005; 29 :1341–1361), do not exist in literature. Clearly, the type and degree of material anisotropy, loading distance from the retaining wall, and loading types markedly impact the proposed solutions. Two examples are utilized to illustrate the type and degree of soil anisotropy, and the loading types on the lateral force and centroid location in the isotropic/cross‐anisotropic backfills generated by the horizontal and vertical uniform, upward linear‐varying and upward nonlinear‐varying strip loads. The parametric study results demonstrate that the lateral force and centroid location accounting for soil anisotropy, loading distance from the retaining wall, dimension of the loading strip, and loading directions and types differ significantly from those estimated using existing isotropic solutions. The derived solutions can be added to other lateral pressures, such as earth pressure or water pressure, required for stability and structural analysis of a retaining wall. Additionally, they can simulate realistically actual surcharge loading problems in geotechnical engineering when backfill materials are cross‐anisotropic. Copyright © 2007 John Wiley & Sons, Ltd.  相似文献   

6.
Recent study indicates that the response of rigid passive piles is dominated by elastic pile–soil interaction and may be estimated using theory for lateral piles. The difference lies in that passive piles normally are associated with a large scatter of the ratio of maximum bending moment over maximum shear force and induce a limiting pressure that is ~1/3 that on laterally loaded piles. This disparity prompts this study. This paper proposes pressure‐based pile–soil models and develops their associated solutions to capture response of rigid piles subjected to soil movement. The impact of soil movement was encapsulated into a power‐law distributed loading over a sliding depth, and load transfer model was adopted to mimic the pile–soil interaction. The solutions are presented in explicit expressions and can be readily obtained. They are capable of capturing responses of model piles in a sliding soil owing to the impact of sliding depth and relative strength between sliding and stable layer on limiting force prior to ultimate state. In comparison with available solutions for ultimate state, this study reveals the 1/3 limiting pressure (of the active piles) on passive piles was induced by elastic interaction. The current models employing distributed pressure for moving soil are more pertinent to passive piles (rather than plastic soil flow). An example calculation against instrumented model piles is provided, which demonstrates the accuracy of the current solutions for design slope stabilising piles. Copyright © 2014 John Wiley & Sons, Ltd.  相似文献   

7.
Uncoupled analysis of stabilizing piles in weathered slopes   总被引:15,自引:0,他引:15  
This paper describes a simplified numerical approach for analyzing the slope/pile system subjected to lateral soil movements. The lateral one-row pile response above and below the critical surface is computed by using load transfer approach. The response of groups was analyzed by developing interaction factors obtained from a three-dimensional nonlinear finite element study. An uncoupled analysis was performed for stabilizing piles in slope in which the pile response and slope stability are considered separately. The non-linear characteristics of the soil–pile interaction in the stabilizing piles are modeled by hyperbolic load transfer curves. The Bishop's simplified method of slope stability analysis is extended to incorporate the soil-pile interaction and evaluate the safety factor of the reinforced slope. Numerical study is performed to illustrate the major influencing parameters on the pile-slope stability problem. Through comparative studies, it has been found that the factor of safety in slope is much more conservative for an uncoupled analysis than for a coupled analysis based on three-dimensional finite element analysis.  相似文献   

8.
叶观宝  张晴雯  张振 《岩土力学》2016,37(12):3356-3364
真空联合堆载预压与混凝土芯砂石桩复合地基相结合是处理深厚软土地基的一种新方法。该方法既能利用预制混凝土芯桩提高地基承载力,又能利用砂石外壳缩短排水路径、传递真空负压,加快固结。根据真空联合堆载预压下混凝土芯砂石桩复合地基的固结特点,将堆载预压和真空预压的固结效应分开考虑,然后再进行叠加,推导出了真空联合堆载预压下混凝土芯砂石桩复合地基的平均固结度解析解,并利用三维数值模拟对平均固结度解析解进行了验证。通过对解析解的参数分析,探讨了置换率、涂抹区大小及渗透系数、混凝土芯砂石桩长径比和芯桩率对混凝土芯砂石桩复合地基固结特性的影响。结果表明,混凝土芯砂石桩复合地基的固结速率随着置换率和芯桩率的增大而增大,随涂抹区和砂石外壳直径之比、未扰动区和涂抹区渗透系数之比、长径比的增大而减小。  相似文献   

9.
滑坡治理中抗滑桩桩位分析   总被引:8,自引:0,他引:8  
采用有限元强度折减法对单排桩、桩间距为4 m的抗滑桩在不同设桩位置加固滑坡进行数值模拟,研究发现不同的桩位影响滑坡的稳定安全系数、滑动面的位置和形状。桩位不同决定了是桩后土体还是桩前土体滑落。桩位选择的一个重要原则是加固后滑坡体的稳定安全系数必须大于设计要求的安全系数,否则就会出现桩端越顶破坏或桩前土体滑落。斜坡在同一稳定安全系数下,桩位不同时抗滑桩所受的滑坡推力、桩的内力(剪力、弯矩)和桩的挠度不同。抗滑桩位于斜坡中部时,桩身长度较长,推力和内力大,是不合理的桩位;但桩身挠度大,提供的桩前抗力也大。按常规方法与按有限元法计算桩前无土体的悬臂桩桩上推力是相近的。把桩视作埋入滑坡体中的梁单元,按有限元法算出的推力比较小,因为它已经充分考虑了桩前土体的抗力。  相似文献   

10.
边坡桩-土相互作用的土拱力学模型与桩间距问题   总被引:5,自引:3,他引:2  
李邵军  陈静  练操 《岩土力学》2010,31(5):1352-1358
桩-土相互作用机制是边坡抗滑桩设计需要考虑的重要因素之一。基于抗滑桩在侧向荷载作用下的受力条件,通过土力学和弹性力学的基本理论,导出了桩-土作用下桩后土体任意点的应力解析解,建立了土拱的力学模型;获得了土拱应力的等值线分布,得出了双曲拱、扩肩拱、马鞍拱和圆弧拱4种土拱形态,分析了不同桩间距、桩宽、桩后距离及土体力学特性对土拱效应的影响及其变化规律,阐明了土拱的作用机制。以拱体内土体破坏时的极限平衡状态为依据,基于Mohr-Coulomb抗剪强度理论建立了最大桩间距控制方程,并给出了具体的工程实例,对桩-土相互作用机制和抗滑桩设计理论研究具有一定的参考价值。  相似文献   

11.
车辆、坡顶堆载等造成的坡顶荷载是影响边坡稳定性的一个重要因素。首先,基于叠合悬臂梁模型和极限平衡理论,建立了坡顶荷载作用下岩质反倾边坡的力学分析模型,推导了坡顶荷载作用下边坡的剩余倾倒力和剩余滑移力计算公式,给出了岩层破坏模式判别条件,并通过大型数学分析软件Matlab将分析方法程序化;然后,通过与离散元模拟结果进行对比分析,验证了所提分析模型的准确性;最后,基于所提分析方法,进行了不同参数的敏感性分析。研究结果表明,坡顶荷载对岩层剩余力的影响较大,但对岩层破坏模式的影响不大;对边坡稳定性较为敏感的切坡角度为50°和岩层倾角为58°,当小于该值时,边坡稳定性将显著提高;层间黏聚力对自重边坡稳定性影响较大;数值模拟与理论分析得到的安全系数较为一致,验证了考虑坡顶荷载作用下弯曲倾倒破坏分析理论解的正确性,可为类似工程稳定性分析提供参考。  相似文献   

12.
This paper presents the analytical methods of slope-stabilising piles using the three-dimensional (3-D) finite element (FE) analysis with the strength reduction method (SRM). This 3-D FE model is employed to overcome the limitations observed in two-dimensional (2-D) FE analysis. The solutions obtained from 3-D FE analyses are verified to be less conservative in this paper. The 3-D analysis is considered to be of particular importance to pile-slope problems. The soil that flows between piles cannot be taken account properly in the 2-D FE analysis. The method adopted in this paper can avoid the assumption of soil movement and the pressure distribution along the piles subjected to soil movement. The numerical analysis employs the Mohr–Coulomb failure criterion with the strength reduction technique for soil and an elastic member for piles. The spacing effect of the pile is considered in the 3-D model, the S/D (S: centre to centre, D: diameter of pile) ratio, equal to 4.0, is found to be equivalent to the single pile stabilisation. The middle portion of the slope is identified as the optimal location to place the piles. The proper length of the pile, which can be used to stabilise the slope, is also examined using 3-D FE analyses. It is concluded that L/H greater or equal 0.70 is recommended (L: pile length, H: slope height). The numerical analyses are conducted based on a coupled analysis, which simultaneously considers both the slope stability and the pile response. The failure mechanisms of the pile-slope system subjected to the pile locations, pile head conditions and pile length are each discussed. The contact pressure, shear force and moment along the piles are presented to illustrate the pile stabilising mechanism herein.  相似文献   

13.
This paper describes the development of a boundary element analysis for the behaviour of single piles and pile groups subjected to general three‐dimensional loading and to vertical and lateral ground movements. Each pile is discretized into a series of cylindrical elements, each of which is divided into several sub‐elements. Compatibility of vertical, lateral and rotational movements is imposed in order to obtain the necessary equations for the pile response. Via hierarchical structures, 12 non‐zero sub‐matrices in a global matrix are derived for the basic influence factors. Solutions are presented for a series of cases involving single piles and pile groups. In each case, the solutions are compared with those from more simplified existing pile analyses such as those developed by Randolph and by Poulos. It is shown that for direct loading effects (e.g. the settlement of piles due to vertical loading), the simplified analyses work well. However, for ‘off‐line’ response (such as the lateral movement due to vertical loading) the differences are greater, and it is believed that the present analysis gives more reliable estimates. Copyright © 2000 John Wiley & Sons, Ltd.  相似文献   

14.
赵文斌  罗文强  冯永 《岩土力学》2006,27(Z1):952-957
抗滑桩设计的常规方法是建立在定值基础上的,未能考虑计算参数的随机性与变异性,故在抗滑桩设计中存在局限性:一是不能给出抗滑桩设计的边坡安全度;二是设计中过分保守,造成浪费。可靠性分析法考虑了计算参数的随机性,用严格的概率来度量边坡的安全度,弥补了上述传统抗滑桩设计中存在的不足。基于可靠性分析法,以传统边坡稳定性计算公式为基础,建立了抗滑桩设计的边坡稳定性评价模型,并且运用蒙特卡罗法,采用单参数敏感性分析方法,分析抗滑桩设计各参数对边坡安全系数及可靠性指标的影响。结果表明,岩土体抗剪强度参数、岩土体重度、抗滑桩直径等因素对可靠性指标影响较明显,边坡安全系数对岩土体重度、抗滑桩有效长度、抗滑桩直径等随机变量较敏感。  相似文献   

15.
近年来,因门架式抗滑桩具有较高的能效比,可以更为经济地实现有效加固,因而在大型滑坡地质灾害的治理中被广泛使用。门架式抗滑桩的设计参数选取是实际工程中的难点,因此本文采用数值模拟的方法对其设计参数的选取进行了优化研究。首先,对门架式抗滑桩的加固机理进行了阐述,详细分析了桩土的耦合作用。然后,基于加固后边坡稳定性的变化以及潜在滑移面的形态演变,对桩的设计参数进行了优化分析。在此基础上考虑到门架式抗滑桩的显著特点是在联系梁作用下桩体结构的受力协调,本文重点量化分析了分级堆载情况下门架式抗滑桩体结构的受力协调性,特别是利用荷载分担比来量化分析前后排桩的受力协调性,根据其在不同设计参数下的变化规律,得出桩体最佳桩间距和桩排距范围分别是3D~5D和3D~4D(D为桩径);最后,建立了最佳桩体设计参数条件下桩顶位移与堆载之间关系的指数函数方程。这一研究将为门式抗滑桩的设计与变形控制提供理论依据。  相似文献   

16.
长期重复荷载作用下土体与邻近桩基相互作用研究   总被引:1,自引:0,他引:1  
杨敏  周洪波  朱碧堂 《岩土力学》2007,28(6):1083-1090
在前人研究的基础上,基于临界状态土力学理论,在Carter模型中引入临界重复应力的概念形成改进Carter模型;该模型概念明确、参数简单,可以合理地反映重复加卸载作用下土体主要特性。利用改进Carter模型,编制平面应变有限元程序,对长期重复加卸载作用下土体与临近桩基相互作用进行系统分析,探讨了长期重复加卸载作用下有桩和无桩时土体沉降和侧移的变化规律,并讨论了软土屈服面衰减系数、临界重复应力水平、临近桩基刚度等变化时桩土相互作用性状的变化,得出一些有益的结论。  相似文献   

17.
An approach based on the category of limiting equilibrium analysis is proposed to consider the reinforcing effect of one row of vertical piles on slope under seismic conditions. The approach is based on an uncoupled formulation in which the pile response and slope stability are considered separately. Closed‐form equations are derived, allowing the yield acceleration coefficient to be determined for giving pile characteristics. Results were compared with those obtained using another limit equilibrium method. The effects of pile location on the effectiveness of increasing seismic stability of the slope–pile system were elucidated. It was found out that the piles should be installed in the middle–upper part of the slope to achieve greatest safety, but the pile length and other possible failure modes should be checked carefully in design. Copyright © 2015 John Wiley & Sons, Ltd.  相似文献   

18.
王鹏斌  阎长虹  万佳佳  郭建强  娄志会  郭书兰 《地质论评》2021,67(6):67120016-67120016
近年来,因门架式抗滑桩具有较高的能效比,可以更为经济地实现有效加固,因而在大型滑坡地质灾害的治理中被广泛使用。门架式抗滑桩的设计参数选取是实际工程中的难点,因此本文采用数值模拟的方法对其设计参数的选取进行了优化研究。首先,对门架式抗滑桩的加固机理进行了阐述,详细分析了桩土的耦合作用。然后,基于加固后边坡稳定性的变化以及潜在滑移面的形态演变,对桩的设计参数进行了优化分析。在此基础上考虑到门架式抗滑桩的显著特点是在联系梁作用下桩体结构的受力协调,本文重点量化分析了分级堆载情况下门架式抗滑桩体结构的受力协调性,特别是利用荷载分担比来量化分析前后排桩的受力协调性,根据其在不同设计参数下的变化规律,得出桩体最佳桩间距和桩排距范围分别是3D~5D和3D~4D(D为桩径);最后,建立了最佳桩体设计参数条件下桩顶位移与堆载之间关系的指数函数方程。这一研究将为门式抗滑桩的设计与变形控制提供理论依据。  相似文献   

19.
不同平衡堆载条件下桩基承载特性的原位试验研究   总被引:1,自引:0,他引:1  
邓会元  戴国亮  龚维明  朱中发 《岩土力学》2015,36(11):3063-3070
沿海吹填围垦地区土质较差,淤泥软弱土层较厚,在后期填土作用下土体会产生很大的固结沉降。后期不同堆载填土方式对桥梁基础影响较大,可降低基桩承载力,同时平衡堆载主要增加基桩的沉降,而不平衡堆载则对基桩水平位移影响较大。结合台州湾大桥工程建设,选取3根基桩进行了平衡堆载(围载)试验,另外,选取了3根基桩进行了不平衡堆载试验,研究不同堆载条件下对桩基承载特性的影响。现场试验结果表明,平衡堆载条件下主要引起桩侧产生负摩阻力,堆载高度达到4 m,堆载面积为24 m×16 m时,负摩阻力总和达到2 687 kN左右,中性点深度约为29.5 m,约为0.36倍桩长,且负摩阻力的发展是随时间而变化的;不平衡堆载条件下主要产生土拱效应,使桩基产生较大的水平位移,试验中不平衡堆载对吹填区的影响主要在距离地面20 m范围之内,土中最大水平位移出现在距离地面4~5 m左右位置,而桩身最大水平位移出现在桩顶。  相似文献   

20.
邻近堆载作用下排桩负摩擦力特性研究   总被引:1,自引:0,他引:1  
屠毓敏  王建江 《岩土力学》2007,28(12):2652-2656
利用三维非线性弹性有限元方法研究了承受邻近堆载作用的排桩的负摩擦力特性,分析了排桩间距以及堆载与排桩之间距离的变化对桩身负摩擦力特性的影响,揭示了该类桩桩身轴力的变化规律。研究表明:随着堆载的增大,桩身轴力也随之增大,当堆载增至一定值时,桩间土产生土拱效应,桩身轴力略为减小,堆载继续增大时,土拱效应遭到破坏,桩身轴力再次增大;当堆载增大到一定值时,桩顶部产生局部拉应力,且随着堆载与桩之间距离的增大而增大,中桩的拉应力比边桩要大;桩身最大轴力点位于0.65~0.75倍的桩长处,边桩的轴力大于中桩;随着桩距的增大,桩身轴力也随之增大,而土拱效应削弱;当堆载距排桩一定距离时,桩身轴力达到最大。  相似文献   

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