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1.
The paper presents a model for the analysis of granular foundation beds reinforced with several geosynthetic layers. Such reinforced granular beds are often placed on soft soil strata for an efficient and economical transfer of superstructure load. The granular bed is modeled by the Pasternak shear layer and the geosynthetic reinforcement layers by stretched rough elastic membranes. The soft soil is represented by a series of nonlinear springs. The reinforcement has been considered to be extensible and it is assumed that the deformation at the interface of the reinforcements and soil are same. The nonlinear behavior of the granular bed and the soft soil is considered. Plane strain conditions are considered for the loading and reinforced foundation soil system. An iterative finite difference scheme is applied for obtaining the solution and results are presented in nondimensional form. The results from the proposed model are compared to the results obtained for multilayer inextensible geosynthetic reinforcement system. Significant reduction in the settlement has been observed when the number of reinforcement layer is increased. In case of inextensible reinforcements as the number of reinforcement layer is increased the settlement is decreased with a decreasing rate, but in case of extensible reinforcement the reduction rate is almost constant. Nonlinear behavior of the soft soil decreases as number of reinforcement layer is increased. The effect of the stiffness of the geosynthetic layer on the settlement response becomes insignificant for multilayer reinforced system, but the mobilized tension in the reinforcement layers increases as the stiffness of the geosynthetic layers increases.  相似文献   

2.
This paper addresses the geotechnical engineering problem of evaluating the ultimate bearing capacity of a strip foundation resting upon a reinforced soil, by means of the yield design homogenization approach. The analysis is notably focused on the determination of the macroscopic strength criterion of such reinforced soils, where both constituents are purely cohesive, which can be conveniently expressed through the notion of anisotropic cohesion. A comprehensive comparison is made between the classical configuration of reinforcing columns and the more original one of orthogonal reinforcing trenches. Among the most outstanding results of the analysis is the conclusion that the cross trench configuration is notably more efficient in terms of load bearing capacity than the reinforcement by columns, notably when significantly inclined loading is concerned. Copyright © 2014 John Wiley & Sons, Ltd.  相似文献   

3.
陈昌富  周志军 《岩土力学》2009,30(9):2660-2666
针对双向增强体复合地基,由于桩体与桩间土变形不协调,导致路堤填土内部垂直变形有差异,应力状态发生变化。引入剪切位移法来分析路基填土中水平加筋体的变形和应力传递规律,在综合考虑填土力学性质(c, )和水平加筋体作用的基础上,通过微元体平衡分析推导得到了桩土应力比、桩顶刺入量等计算公式。通过工程实例验证公式的可靠性,并综合分析了相关因素对桩土应力比的影响,得到了一些有益的结论。  相似文献   

4.
In the present study, a mechanical model has been developed to study the behavior of multilayer geosynthetic-reinforced granular fill over stone column-reinforced soft soil. The granular fill and geosynthetic reinforcement layers have been idealized by Pasternak shear layer and rough elastic membranes, respectively. The Kelvin–Voight model has been used to represent the time-dependent behavior of saturated soft soil. The stone columns are idealized by stiffer springs and assumed to be linearly elastic. The nonlinear behavior of the soft soil and granular fill is considered. The effect of consolidation of soft soil due to inclusion of the stone columns on settlement response has also been included in the model. Plane strain conditions are considered for the loading and reinforced foundation soil system. An iterative finite difference scheme is applied for obtaining the solution and results are presented in nondimensional form. It has been observed that if the soft soil is improved with stone columns, the multilayer reinforcement system is less effective as compared to single layer reinforcement to reduce the total settlement as there is considerable reduction in the total settlement due to stone column itself. Multilayer reinforcement system is effective for reducing the total settlement when stone columns are not used. However, multilayer reinforcement system is effective to transfer the stress from soil to stone column. The differential settlement is also slightly reduced due to application of multiple geosynthetic layers as compared to the single layer reinforcement system.  相似文献   

5.
Capturing strain localization in reinforced soils   总被引:2,自引:1,他引:1  
Lade’s single hardening soil model with Cosserat rotation embodied in the finite element method is employed to investigate the behavior of geosynthetic reinforced soils with special attention to the development of shear banding. The ability of the finite element model to detect shear banding in a reinforced soil is examined against three high quality small-scale laboratory plane strain tests on Toyoura sand with and without reinforcement. These three tests were chosen because of the clear failure surfaces that developed in the soil during loading. The FEM analyses were able to reasonably simulate the plane strain laboratory tests including both unreinforced and reinforced cases. The FEM analyses gave reasonably good agreement with the experimental results in terms of global stress–strain relationships and shear band occurrences. Furthermore, and based on FE analyses of a hypothetical geosynthetic reinforced soil (GRS) retaining wall, it is shown that the geosynthetic reinforcements are very effective in hindering the formation of shear bands in GRS retaining walls when small spacing between the reinforcement layers was used. When used properly, the geosynthetic reinforcements made the soil behave as a truly reinforced mass of considerable stiffness and strength.  相似文献   

6.
土工格栅被广泛应用于路堤、边坡、挡土墙等加筋土工程,而筋土界面分析是研究加筋作用机理的关键。根据土工格栅拉拔荷载下的受力状态,分析了拉拔试验实际剪应力与位移关系,发现界面软化阶段剪应力与位移近似呈指数分布,已有计算模型大多高估了界面剪应力,提出了能够考虑界面渐进破坏及非线性特性的弹性-指数软化模型。通过筋土界面基本控制方程,得到了土工格栅拉拔荷载下不同阶段受力状态的计算模型。对界面剪应力发展历程及分布规律展开了较为细致的研究,同时进行了参数分析,包括剪切刚度、抗拉刚度、加筋长度、软化指数衰减特征系数等。结果表明,土工格栅拉拔过程中,当筋土界面处于弹性阶段时,界面剪应力不均匀性及界面最大剪应力随剪切刚度增大而增加,弹性模量则相反;软化阶段内,加筋长度越长,界面软化现象越明显,加筋长度较短时,可近似认为界面剪应力呈均匀分布;软化指数衰减特征系数越大,界面剪应力波动越大,其峰值往拉拔端移动;进入残余阶段后,界面剪应力由拉拔端向自由端增大且逐渐趋于残余应力。研究成果可为加筋土工程土工格栅选取提供理论指导。  相似文献   

7.
侯娟  张孟喜  张陶陶  戴治恒 《岩土力学》2015,36(Z2):702-708
建立了横-竖立体加筋(H-V筋)地基的有限元模型,通过分析地基中的竖向应力分布、水平向位移分布以及筋-土界面相互作用,发现横-竖立体加筋地基中的竖向应力在筋材下方出现扩散和重分布,并逐渐向土体下部传递,使得土体中整体的应力分布更加均匀;同时,横-竖筋材中的竖筋类似于一个侧壁,其提供的垂直侧向力约束了介于竖筋间的土体,限制了土体的侧向水平位移,使得地基中筋材上部土体的侧向水平位移变小。基于有限元模拟对横-竖立体加筋地基加固机制的认识,将横-竖立体筋视为作用在地基上的一维弹性地基梁,通过弹性地基梁理论,根据弗拉曼解推导求解了横-竖立体加筋地基中任意一点竖向附加应力的计算表达式。将模型计算结果与有限元模拟所得结果进行对比发现两者吻合良好。  相似文献   

8.
根据加筋方式的不同,纤维加筋可分为定向分布的纤维加筋和随机分布的纤维加筋两大类。本文针对这两类加筋方式,分别综述了纤维加筋技术在土体抗液化方面的相关研究进展,同时对纤维加筋土抗液化性能的主要影响因素进行了分析。既有针对纤维加筋土进行的动三轴试验、扭剪试验及模型试验等均表明,纤维加筋技术能有效地增强土体的抗液化强度,同时减小液化所引起的变形,是一种具有广泛应用前景的抗液化措施。  相似文献   

9.
杨继位  柴寿喜  王晓燕  魏丽  李敏 《岩土力学》2010,31(10):3260-3264
滨海盐渍土具有盐胀、溶陷和吸湿软化等不良工程地质问题,未经固化处理不能满足工程建设的强度和变形要求。借鉴合成纤维加筋土和草根土的研究成果,初步确定包括加筋长度、质量加筋率、加筋形状和石灰掺加量等因素的麦秸秆加筋盐渍土的加筋条件。通过抗压强度试验和Taguchi正交试验设计优化方法,确定最优加筋条件为:加筋长度为10 mm、加筋率为0.25 %、形状为1/4圆弧状和石灰掺加量为8 %。以麦秸秆作加筋与石灰共同加筋固化滨海盐渍土,其抗压强度试验结果表明,石灰+麦秸秆加筋盐渍土的抗压强度、抗变形能力和水稳性均优于石灰土和盐渍土。初步的研究成果对今后系统研究麦秸秆加筋滨海盐渍土的抗压强度、抗剪强度和变形特性等具有指导意义。  相似文献   

10.
土工格栅加筋垫层加固软土地基模型试验分析   总被引:10,自引:2,他引:8  
王伟  王俭  薛剑豪  薛震  偶丹萍 《岩土力学》2005,26(12):1885-1891
基于压缩、剪切、拉拔、抗拉试验结果分析了土工格栅加筋土的力学特性。通过室内模型试验研究了加土工格栅和不加土工格栅地基土的侧向位移和竖向位移随深度的变化规律、位移场、应力场、应变场。结果表明,土工格栅加筋垫层能有效地改变和阻止塑性区的形成和发展,对下卧软土地基起到扩散应力、均化应力的作用,控制软土地基塑性变形,增强地基延性和刚度,有效地控制地基竖向位移和侧向位移,增强地基的抗剪强度,增强整个地基的稳定性,提高了加筋土体的承载能力,为实际工程应用提供了可靠的理论依据。  相似文献   

11.
The design against failure of an embankment resting upon a soft soil improved by a group of columns is investigated with the help of the yield design homogenization approach. Assuming that both constituents of the reinforced ground are purely cohesive materials (‘lime column’ technique), an upper bound estimate for the macroscopic strength condition of the reinforced soil as a homogenized medium is first obtained, providing definite evidence of a shear strength anisotropy associated with the reinforcement preferential orientation. The kinematic method of yield design is then performed on the basis of such a criterion, making use of rotational failure mechanisms involving slip circles in the reinforced ground. Upper bound estimates are finally obtained for the embankment stability factor, as functions of the degree of reinforcement and relative thickness of the soil layer. These results are compared with those derived from a simplified analysis, where the reinforced soil is assumed to exhibit an averaged isotropic cohesion. This comparison clearly indicates that the latter simplified analysis may produce quite unsafe estimates for the embankment stability, which can be attributed to the fact that it fails to capture the inherent strength anisotropy of the reinforced soil. Copyright © 2010 John Wiley & Sons, Ltd.  相似文献   

12.
彭芳乐  华针  曹延波 《岩土力学》2013,34(11):3277-3283
为分析加筋材料的抗弯刚度对加筋性能的影响,加筋材料采用梁单元形式。基于动态松弛法,通过定义梁单元的刚度矩阵,求解内力矢量,随后定义虚拟质量密度而建立总质量矩阵,将加筋材料的梁单元有限元模型嵌入到已有的动态松弛法求解程序中。通过对简支梁的简单加载模拟验证了该梁单元模型的准确性能。随后,将该有限元模型与已有的动态松弛法计算程序结合(含砂土本构及弱面单元模型),对加筋砂土地基室内模型试验进行了数值模拟。将梁单元的模拟结果与杆单元(梁单元的特例)模拟结果进行了比较,并分别探讨了抗拉刚度和抗弯刚度对加筋砂土地基承载性能的影响。结果表明:抗拉刚度对承载能力的影响较小;抗弯刚度对承载力的影响程度与加筋材料的布置形式有关,特别是当加筋砂土中出现剪切带以后,其影响逐渐增大。因此,在分析加筋砂土结构的增强机制时,建议采用梁单元(具有一定的抗弯刚度)对加筋材料进行模拟。  相似文献   

13.
微生物诱导碳酸盐沉淀(MICP)是一种微生物矿化过程,能够胶结松散土体。将其应用于加固土体坡面提高抗降雨侵蚀能力具有潜在的发展前景。通过模拟降雨冲刷试验,对微生物诱导矿化加固前后粉土坡面的径流水动力与侵蚀特性开展研究,分析和讨论了水动力参数之间的相关性以及对土壤剥蚀率的影响规律。结果显示,加固后与加固前相比,粉土坡面径流的弗劳德数平均下降50%;在降雨前期的阻力系数平均下降66%,径流稳定后二者阻力系数接近;径流剪切力平均提高52%。径流系数与坡面入渗速率呈线性负相关(R2=0.857),与加固层的贯入强度呈指数负相关(R2=0.824);入渗速率与加固层的贯入强度呈二次负相关R2=0.930);径流剪切力与坡度呈指数正相关(R2=0.964)。加固粉土坡面的剥蚀率与加固层的贯入强度呈指数负相关(R2=0.822),与径流剪切力线性正相关(R2=0.912),临界径流剪切力为0.5 Pa。对于坡度10~25°的粉土坡面,微生物加固能将其剥蚀率从58.2~118.4 g/m2s降至2.4~21.2 g/m2s,剥蚀率最大降幅可达95.0%。粉土坡面经微生物诱导矿化加固后,水动力参数值发生显著变化,径流特性与水动力参数、加固层特性及坡度相关,坡面的抗冲刷侵蚀性能得到有效提升。  相似文献   

14.
The pull-out resistance of reinforcing elements is one of the most significant factors in increasing the bearing capacity of geosynthetic reinforced soils. In this research a new reinforcing element that includes elements (anchors) attached to ordinary geogrid for increasing the pull-out resistance of reinforcements is introduced. Reinforcement therefore consists of geogrid and anchors with cubic elements that attached to the geogrid, named (by the authors) Grid-Anchor. A total of 45 load tests were performed to investigate the bearing capacity of square footing on sand reinforced with this system. The effect of depth of the first reinforcement layer, the vertical spacing, the number and width of reinforcement layers, the distance that anchors are effective, effect of relative density, low strain stiffness and stiffness after local shear were investigated. Laboratory tests showed that when a single layer of reinforcement is used there is an optimum reinforcement embedment depth for which the bearing capacity is the greatest. There also appeared to be an optimum vertical spacing of reinforcing layers for multi-layer reinforced sand. The bearing capacity was also found to increase with increasing number of reinforcement layer, if the reinforcement were placed within a range of effective depth. The effect of soil density also is investigated. Finally the results were compared with the bearing capacity of footings on non-reinforced sand and sand reinforced with ordinary geogrid and the advantages of the Grid-Anchor were highlighted. Test results indicated that the use of Grid-Anchor to reinforce the sand increased the ultimate bearing capacity of shallow square footing by a factor of 3.0 and 1.8 times compared to that for un-reinforced soil and soil reinforced with ordinary geogrid, respectively.  相似文献   

15.
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   

16.
It has been widely accepted that reinforcement made of polyethylene and polypropylene is susceptible to creep and soil’s hydraulic conductivity varies with its void ratio. However, unfortunately there is no available sensitivity analysis on time-dependent embankment behaviour taking either reinforcement viscosity or time varying hydraulic conductivity of subsoil into consideration. The influence of geosynthetic reinforcement viscosity and decreasing hydraulic conductivity with consolidation on the time-dependent performance of embankments with floating columns is investigated using a fully 3D coupled model. For an embankment at the working height corresponding to a post-consolidation polypropylene geotextile strain of about 5%, it is shown that the assumption of constant hydraulic conductivity and the failure to consider the viscous behaviour of geosynthetic reinforcement can underestimate time-dependent embankment deformations (including differential crest settlement and horizontal toe movement). The effects of factors including the foundation soil, reinforcement stiffness, column stiffness, column spacing, column type (floating and fully penetrating), and construction rate, on the time-dependent behaviour of column supported embankments are explored.  相似文献   

17.
Summary A review is presented of conceptual approaches that are currently in use for interpreting the operation of reinforced soil. The concepts of enhanced confining pressure and of reduced normal tensile strains are found to be closely related to current experimental and theoretical investigations as well as to the design methodologies available at present for reinforced soil applications. Focusing on the enhanced confining pressure concept, analytical expressions are developed that allow the estimation of the value of equivalent confining stress increase when the properties of soil and reinforcement and the state of stresses acting on a cylindrical reinforced soil element are known. The derived expressions can also be utilized for estimating the soil-reinforcement friction angle from the results of triaxial tests on cylindrical samples reinforced with horizontal layers of reinforcement.  相似文献   

18.
王军  林旭  刘飞禹  潘涛  符洪涛 《岩土力学》2014,35(Z1):113-120
筋材与土体接触面的相互作用较为复杂,它是加筋土工程设计中的关键所在。为了研究筋土界面的作用机制,采用福建标准砂与玻璃纤维土工格栅进行了一系列室内大型直剪试验,较为系统地分析了格栅横肋与纵肋及格栅几何尺寸对于筋土界面强度特性的影响。试验结果表明,格栅的横肋与纵肋在界面强度中均发挥了较大的作用,两者表现为不同的作用机制,当剪切位移较小时格栅横肋的被动阻力和纵肋的摩阻力起到共同承担荷载的作用;随着剪切位移的增大,横肋的被动阻力进一步提升,纵肋发挥了较为显著的提高筋材刚度的框架作用。因此,格栅的纵横肋需要按合理比例搭配才能发挥出较大的筋土界面强度。  相似文献   

19.
土工格栅加筋碎石土大型三轴试验研究   总被引:27,自引:6,他引:27  
赵川  周亦唐 《岩土力学》2001,22(4):419-422
在大型三轴仪上进行了素碎石土和加筋碎石土的三轴排水剪切试验,探讨了加筋碎石土的强度及变形特性;分析了塑料土工格栅的加筋机理,为加筋碎石土的理论计算提供了依据。  相似文献   

20.
黄仙枝  白晓红 《岩土力学》2005,26(9):1464-1468
大型三轴固结排水剪切试验表明:土工带加筋后土体的破坏强度和破坏应变均得到提高。从加筋土和未加筋土的强度包线看出,加筋前后土体的强度曲线基本平行,摩擦角相等,粘聚力提高。通过分析加筋土的应力-应变关系试验曲线,研究土工带加筋素碎石土的抗剪强度特性,提出土工带加筋土的抗剪强度表达式。为进一步研究土工带素碎石土加筋机理提供试验基础。  相似文献   

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