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1.
目前计算碎石桩处理软土地基临界填筑高度的方法并不完善,没有考虑软基经碎石桩处理后复合地基强度的增加和地基排水固结能力的提高,基于此,依据固结理论,引入碎石桩复合地基固结计算的简化方法,修正按变形控制的临界填筑高度计算公式;并结合四川省遂-资高速公路软基变形监测数据,得出软基厚度在6.5~11.0 m范围内,观测所得的临界填筑高度为4.5~6.5 m,该观测值与修正公式计算值差异性不显著,证实所推导的解析式是切实可行的;在此基础上,初步探讨影响路堤临界填筑高度变化的因素,得出软基厚度、桩间距对其影响较为明显。  相似文献   

2.
部分排水条件下加筋路堤性状分析   总被引:2,自引:0,他引:2  
使用椭圆帽土质模型分析了部分排水条件下软土地基土工合成物加筋路堤的性状,按照Biot理论模拟了固结行为。在路堤施工期地基土的部分固结和不同初始排水条件下,主要分析加筋体的刚度影响和地基土的强度轮廓面,以及在正常工作情况下和在路堤失效情况下土工合成加筋材料的应变特点。分析了加筋体对于地基土变形的影响。结果显示,加筋体可以提高路堤的破裂高度,可以明显地减小路堤施工期最大侧向变形、竖向变形和地基土隆起,可明显提高施工期路堤的安全系数。  相似文献   

3.
襄荆高速公路软弱地基高路堤填筑控制试验研究   总被引:2,自引:2,他引:2  
软弱地基路堤填筑高度一般小于5 m,需时较长而影响工期,襄荆高速公路软弱地基路堤填筑高达8 m,加快施工进度与保证施工安全成为一大技术难题,为此进行了一系列的试验研究.现场详勘和试验表明该软弱地基存在1~1.5 m厚的硬壳层及下卧砂卵石层且原状土十字板剪切强度较高(Su = 44 kPa),有利于加快填土速率;选取了塑料排水板及砂垫层加土工格栅的软弱地基处理方案;基于排水条件得到了较大改善,经试验,证明适当降低规范要求的沉降控制标准是可行的.据此,根据监测数据进行动态调整后,填土速率得到了较大提高,施工安全也得到了保证;路堤填筑到设计高度后,通过堆载预压试验,对工后沉降预测值进行了验证,取得了良好的效果.  相似文献   

4.
膨胀土斜坡地基路堤失稳破坏有限元极限分析   总被引:1,自引:1,他引:0  
刘明维  黄世武  尹健 《岩土力学》2008,29(Z1):426-430
膨胀土斜坡地基上进行路堤填筑时,由于膨胀土层遇水后强度极度降低,极易形成软弱夹层,造成路堤沿坡体倾斜方向整体滑动甚至垮塌。采用有限元极限分析方法对一般斜坡地基上路堤和易于产生软弱夹层的膨胀土斜坡地基路堤进行稳定性分析。结果表明:采用有限元强度折减法,不需任何假设,即能得出路堤的稳定安全系数和滑动面,是进行膨胀土斜坡地基上路堤稳定性评价的有效方法,适于在复杂地质条件下路堤稳定性分析中推广应用。  相似文献   

5.
试论连云港海相软土路堤沉降规律   总被引:5,自引:0,他引:5  
章定文  刘松玉 《岩土力学》2006,27(2):304-308
根据连云港至徐州高速公路连云港段60多个断面的现场实测沉降资料,分析了在路堤荷载作用下连云港海相软土的沉降和固结规律。实测数据表明,在路堤荷载作用下连云港海相软土地基的沉降曲线符合双曲线形式,故可采用双曲线法预测最终沉降。由此可以分析在不同施工期的地基沉降和固结特性,得到不同地基处理条件下路堤填筑期和预压期地基平均固结度与施工时间的关系。分析亦表明,粉喷桩加固能加速地基的固结速率。最后,针对沉降和固结理论计算中计算参数的难以合理确定的局限性,对现场实测沉降数据采用数理统计方法,提出了适用于连云港地区海相软土路堤沉降和固结估算经验公式。  相似文献   

6.
土工格室加筋垫层路堤破坏模式和稳定性评价   总被引:2,自引:1,他引:1       下载免费PDF全文
采用土工格室加筋垫层提高软土地基上填方路堤的稳定性已得到认可,但其破坏模式和稳定性分析方法仍未取得共识。作者通过室内物理模拟试验,识别软土地基上无筋垫层路堤、土工格栅加筋垫层路堤和土工格室加筋垫层路堤的失效模式,并在此基础上探讨土工格室加筋垫层路堤的稳定性和临界填筑高度分析方法。研究结果表明:软土地基上无筋垫层路堤和土工格栅加筋垫层路堤发生穿过垫层的圆弧滑动破坏;土工格室加筋垫层路堤呈整体破坏模式,滑动面虽呈似圆弧状但未穿过加筋垫层,破裂面在软土地基中形成和发展,而且位置更深。在识别破坏模式的基础上,通过土工格室加筋垫层的工作机理分析,提出了软土地基上土工格室加筋垫层路堤稳定性和临界填筑高度分析方法。  相似文献   

7.
土工织物加固软土路堤的有限元分析   总被引:5,自引:4,他引:5  
采用有限元方法对土工织物加固软弱地基路堤的力学机理进行了研究.通过比较路基加筋和未加筋两种情况研究了土工织物的加固机理,结果表明土工织物对于提高路堤填筑高度、减少路堤侧向位移、均化路堤沉降以及加速超孔隙水压力消散有显著的效果.加筋路堤中土工织物的轴力受填筑高度、超孔压消散速度和接触面系数等因素的影响,路堤填筑高度和施工进度的控制有利于土工织物抗拉强度的发挥.对路堤安全系数的研究分析表明传统的极限平衡法验算路堤稳定性偏于保守,采用有限元方法能较好地反映土工织物的加筋作用,可以优化工程设计.  相似文献   

8.
路堤下土工合成材料加固软土地基的极限分析   总被引:1,自引:0,他引:1  
周志军  陈昌富 《岩土力学》2011,32(10):3014-3018
路堤或堤坝工程中土工合成材料加固软土地基得到广泛应用,但其计算方法仍有不足之处。从极限分析的角度来研究,引入滑移线法来改进极限分析上限法,推导出一种新的地基极限分析方法,并基于推导的极限承载力计算公式,把路堤破坏宽度作为变量,求解出路堤极限高度。工程实例对比分析表明,路堤极限高度计算结果与实测结果相差不大。其研究结论为软土地基路堤设计提供了一个新的和有效的方法。  相似文献   

9.
内撑式支护的软土基坑开挖抗隆起稳定性分析   总被引:1,自引:0,他引:1  
采用强度折减法有限元方法(SSRFEM),分析了不排水条件下软土地基中内撑式排桩支护基坑开挖的抗隆起稳定性,并研究了软土不排水抗剪强度、支护结构条件、基坑尺寸对基底抗隆起的影响。研究表明,以往通常采用的极限平衡公式,对基坑开挖基底抗隆起稳定分析不能完全考虑支护结构的影响,也不能考虑基坑侧壁位移的影响,在一些条件下误差较大,而SSRFEM分析方法是求解基坑极限状态实际而自然的破坏形式,可很好地分析基底隆起稳定性。  相似文献   

10.
软基地段斜坡高填路堤施工数值模拟   总被引:1,自引:0,他引:1  
基于地质目标计算机辅助设计软件GOCAD,建立了郴宁高速公路某软土地基斜坡高填路堤的FLAC3D模型,并应用FLAC3D软件对该路堤的分层填筑作数值模拟,分析了路堤在填筑体重力作用下的变形规律及其稳定性.得出如下结论:地形地貌对路堤位移影响较大;随着路堤填筑高度的增加,路堤沉降逐渐增大,最大沉降约位于填筑体内部填筑高度...  相似文献   

11.
梁程  徐超 《岩土力学》2018,39(8):2984-2990
土工格室能有效减少软土地基上路堤的变形,并增强其稳定性,但对于土工格室加筋土垫层路堤的临界高度还少有研究。采用极限平衡分析方法,假定地基在路堤荷载作用下呈圆弧滑动破坏模式,将格室及其内的填土视为复合体,考虑格室复合体的应力扩散作用和侧向限制作用,提出了路堤临界高度的计算模型,并将该模型值与建立的有限差分模型结果进行对比,然后讨论了格室高度、应力扩散角及格室复合体与地基接触面摩擦系数对路堤临界高度的影响规律。结果表明,理论分析和数值计算结果吻合较好;加筋路堤的临界高度明显大于未加筋路堤的临界高度,并且增加此3种影响因素的取值均能提高路堤的临界高度;同时增强格室的侧向限制作用比提高格室高度和应力扩散角更有利于路堤的稳定。  相似文献   

12.
The case history of a failure of a RE wall has been presented. The wall failed immediately upon completion due to the overestimation of the strengths of the foundation clay layers and due to the underestimation of the self weight of the fill materials. A typical cross-section of the wall along with the stabilizing embankment and the foundation are modeled numerically by the limit equilibrium method and by a finite element method. The strengths of the foundation soils are determined by field tests done after the failure of the wall. Both the analyses predicted failure of the wall. The deformations predicted by the finite element method are found to be comparable to the observed field data. The numerical analyses further indicate that by consolidating a foundation clay layer to a minimum undrained strength of 45 kPa, the required factor of safety for the wall along with the road embankment can be achieved theoretically. Accordingly, prefabricated vertical drains are used to expedite the drainage and consolidation of the foundation clay layers. After the field tests confirm that the required minimum undrained strength is achieved, the RE wall and the embankment have been rebuilt successfully and now in full operation.  相似文献   

13.
The behavior of a reinforced embankment on soft Bangkok clay has been analyzed by plane strain finite element method. The finite element analysis considers the selection of proper soil/reinforcement properties according to the relative displacement pattern of upper and lower interface elements. The large deformation phenomenon is simulated by updating the node coordinates, including those of the embankment elements above the current construction level, which ensures that the applied fill thickness simulates the actual field value. A full scale test reinforced embankment with a vertical face (wall) on Bangkok clay has been analyzed by the proposed finite element method, and the numerical results are compared with the field data. The response of a reinforced embankment on soft ground is principally controlled by the interaction between the reinforced soil mass and soft ground and the interaction between the grid reinforcement and the backfill soil. The tension in reinforcement and lateral displacement of the wall face varied during consolidation of foundation soil. The maximum tension force occurred in the reinforcement layer placed at the base of reinforced mass, due to bending of the reinforced mass resulting from differential settlements. It is considered necessary to account for the permeability variation of the soft ground foundation in the finite element analysis.  相似文献   

14.
Embankment slopes composed of spatially variable soils have a variety of different failure modes that are affected by the correlation distances of the material properties and the geometry and total length of the slope. This paper examines the reliability of soil slopes for embankments of different length and uses parallel computing to analyse very long embankments (up to 100 times the embankment height) for a clay soil characterised by a spatially varying undrained shear strength. Based on a series of analyses using the 3D random finite element method (RFEM), it is first shown that the reliability of slopes of various length can be efficiently computed by combining simple probability theory with a detailed 3D RFEM analysis of a representative shorter slope of length 10 times the slope height. RFEM predictions of reliability indices for longer slopes are then compared with results obtained using Vanmarcke's (1977a) simplified 3D method and Calle's (1985) extended 2D approach. It is shown that these methods can give significantly different results, depending on the horizontal scale of fluctuation relative to the slope length, with RFEM predicting a lower slope reliability than the Vanmarcke and Calle solutions in all cases. The differences in the solutions are evaluated and attributed to differences in the assumed and computed failure surface geometries.  相似文献   

15.
A finite element analysis of a reinforced embankment-foundation system has been conducted using a coupled formulation and elastoplasticity theory. Such important factors as type of reinforcement, the type of clay, depth of foundation and drainage condition affecting the system have been systematically investigated using appropriate constitutive models to depict various components of the system and material parameters of two typical soft clay deposits found in India. The displacements, reinforcement force and maximum heights of the embankments are among the aspects presented and discussed. It is shown that the effectiveness of the reinforcement is dependent on its stiffness and the shear strength of the clay deposit. The foundation depth has significant effect on the nature and magnitude of displacement, the reinforcement force and the height of embankment. Drainage conditions are shown to markedly influence the effectiveness of reinforcement. Copyright © 1999 John Wiley & Sons, Ltd.  相似文献   

16.
Stiffened deep mixed (SDM) column is a new ground improvement technique to improve soft soil, which can be used to increase bearing capacity, reduce deformation, and enhance stability of soft soil. This technique has been successfully adopted to support the highway and railway embankments over soft soils in China and other countries. However, there have been limited investigations on its consolidation under embankment loading. This paper developed an analytical solution for the consolidation of embankment over soft soil with SDM column in which core pile is equal to or shorter than outer DM column. The consolidation problem was simplified as a consolidation of composite soil considering the load shear effect of core pile. The developed solution was verified by a comparison with the results computed by three-dimensional (3-D) finite element analysis. A parametric study based on the derived solution was conducted to investigate influence factors—length of core pile, diameter of core pile, diameter of SDM column, modulus of DM column, and permeability coefficient of DM column—on the consolidation behavior of SDM column-supported embankment over soft soil. The developed solution was applied to a case history of SDM column-supported embankment, and a good agreement was found between the predictions and the field measurements.  相似文献   

17.
软土路基沉降变权重组合S型曲线预测方法研究   总被引:11,自引:0,他引:11  
赵明华  刘煜  曹文贵 《岩土力学》2005,26(9):1443-1447
通过对软土路基沉降发展规律及其沉降曲线特点进行深入研究,在S型单项预测模型基础上,基于5种S型增长曲线模型,引进组合预测的思想,重点探讨了软土路基沉降发展的预测方法与理论,并建立了软土路基沉降预测的变权重组合S型增长模型,通过数学规划方法求解,从而可根据有限的实测沉降观测数据预测软土路基沉降发展过程。工程实例分析表明,利用该模型与方法得到的预测曲线与实测曲线吻合良好,能够满足工程要求,此外,变权重组合预测模型比其它单项模型具有明显的优越性,为软土路基沉降发展预测提供了一种有效而实用的方法。  相似文献   

18.
在湿陷性黄土地区,黄土作为高速公路地基的主要原料其强度和变形特性不能满足要求,主要有振动碾压、冲击碾压和强夯3种有效且实用的处治方法。本文根据原位试验和室内试验的数据,进行有限元模拟,在不同高度路堤和不同加载方式情况下,地基沉降变形随着处治能级的增加而减小,路堤本身的沉降保持不变。对于地基处理的深度和沉降变形减小的效果,强夯最好,冲碾次之,振碾最弱。处治前后地表中心沉降变形值与加载路堤高度之间的关系均可用二阶多项式回归拟合。2~4m高的路堤采用振碾的方式处理地基,5~10m高的路堤采用冲碾方法,大于10m的路堤多用强夯或者直接修桥来代替,对于黄土地区高速公路建设与维护具有重要意义。  相似文献   

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