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1.
曹文贵  谭建辉  胡卫东 《岩土力学》2018,39(6):1955-1962
水平加筋是广泛应用的软土地基处理方法之一,而水平加筋地基极限承载力的确定是其地基处理设计的重要依据。因此,首先结合条形基础下水平加筋地基的工程特点,在探讨其承载机制和破坏特点的基础上,考虑破坏间断面上筋材与地基土体的变形协调,构建出反映加筋参数变化影响的可变破坏模式及机动允许速度场;然后,在此基础上,通过重点研究筋材的能量耗散分析方法,并引入上限极限分析理论,建立出条形基础下水平加筋地基极限承载力分析模型,再引入序列二次规划优化分析理论,建立出条形基础下水平加筋地基极限承载力确定方法,它能充分反映加筋设计参数对地基破坏模式及承载力的影响;最后,通过试验结果与该方法及现有同类分析模型结果的比较分析,表明了该模型与方法的合理性与可行性。  相似文献   

2.
基于传统的极限平衡条分法,利用临界滑动场法计算了条形基础的加筋地基极限承载力。假定土体处于极限平衡状态时,土体与筋材间存在均匀的摩擦力,通过建立土体条块极限平衡方程,推导了地基承载力的递推关系式。首先,设定计算土体范围,并划分条块和离散状态点;其次,根据递推公式计算各个状态点的参数,并搜索临界滑面;最后,根据搜索出的滑面计算地基承载力。通过实例比较进一步验证了计算结果的可靠性,并分析了首层筋带埋深、铺设层数和长度对地基承载力和滑面位置的影响。研究结果表明:地基承载力随着筋带埋深的增加先增大后减小;随着层数和长度的增加先逐渐增大,最后趋于稳定;滑面位置的变化规律主要是垂直影响深度和水平影响范围增大或减小。该方法原理简单、易于编程,为条形基础加筋地基承载力的计算提供了一种新思路,是临界滑动场法在地基承载力计算中的推广应用。  相似文献   

3.
高昂  张孟喜  朱华超  姜圣卫 《岩土力学》2016,37(7):1921-1928
为探究土工格室加筋路堤在循环荷载及静载下的各种性能,利用美国GCTS公司的USTX-2000加载装置进行加载,通过改变加筋层数、格室高度,格室焊距对土工格室加筋路堤进行一系列模型试验。对各种工况下加筋路堤极限承载力、长期循环荷载及固定振次循环荷载后极限承载力的变化进行研究。试验表明,土工格室加筋能显著提高地基极限承载力并能显著减小坡顶和坡中临界破坏时的法向累积变形,在加筋间距一定的情况下,加筋层数增加和格室高度增大均可不同程度提高极限承载力并减小临界破坏时坡顶法向累积变形,格室焊距的减小也可在一定程度提高极限承载力,格室焊距对边坡法向变形影响不大;长期循环荷载下固定间距加筋层数对路堤竖向累积沉降量影响不大,而对边坡坡顶法向累积变形有一定影响,格室高度增大和格室焊距减小均可不同程度减小路堤竖向累积沉降量和坡面法向累积变形;越靠近加载点处,路堤土压力值受加筋影响越显著,加筋提高了土体刚度和密实度,使加筋路堤土压力值较无筋路堤明显增大;对于无筋路堤,改变动载幅值和振次均导致振后极限承载力有不同程度的降低,而对于加筋路堤,当动载幅值≥30 kPa或动载振次≥1 000时,振后极限承载力均有不同程度的提高。  相似文献   

4.
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   

5.
针对侧限条件下加筋对土体沉降的影响问题,开展离心模型试验,设置三组对比试验,即在试验土体中未铺设筋材、铺设竖向间距分别为5 cm和3 cm间距的筋材,记录土体中典型点沉降量。试验发现典型点沉降随加速度增加而增加,未铺设筋材、铺设5cm间距筋材及铺设3cm间距筋材的土体沉降量依次降低。表明侧限情况下加筋也能够减小土体沉降,而且加筋间距越小,控制土体沉降效果越显著。侧限情况下筋材仍能起作用可能与土体变形不均有关。这种发现有利于深入理解加筋的作用机理。  相似文献   

6.
张良  罗强  陈虎  张敏静  裴富营 《岩土力学》2010,31(9):2772-2779
为掌握垫层结构性能对基底压力和垫层筋带拉力的影响,设计了3种不同垫层结构的软土地基路堤离心模型试验,测试了在路堤荷载作用下的基底压力和垫层筋带拉力等数据。试验数据及分析表明,(1)随垫层结构性增强,路堤中心处的基底压力逐渐减小,路基面范围的基底压力分布由“中大边小”的凸型曲线逐渐变为“中小边大”的凹型曲线;(2)随垫层结构性的降低垫层筋带拉力减小,路堤土体也由静止稳定状态变为主动极限状态;(3)随路堤荷载增加,地基土体状态由弹性进入弹塑性直至塑性屈服,垫层筋带拉力的分布也逐渐由双峰的马鞍型向单峰的抛物线型转变。  相似文献   

7.
王家全  张亮亮  刘政权  周圆兀 《岩土力学》2018,39(10):3539-3547
为了研究土工格栅加筋砂土地基在动力荷载作用下的受力变形特性,利用自行设计的300 cm×160 cm×200 cm(长×宽×高)大比例地基模型试验装置,分别针对纯砂地基、土工格栅加筋地基进行了静动荷载破坏试验。分析地基承载力及基础沉降、地基土压力、动力加速度响应、土工格栅应变等参数变化规律,揭示了动力荷载作用下加筋砂土地基的承载力和变形特征,并对比分析静、动荷载对加筋地基承载性能的影响。试验结果表明,与纯砂地基相比,格栅单层加筋地基的承载力提高1.12倍,地基基础中轴线处沉降量减少24%,加筋土体的抗变形能力得到很大提高;加筋作用改变了地基的破坏模式,动载作用下纯砂地基为冲剪破坏而加筋地基为整体剪切破坏;筋材的存在对地基土压力及加速度峰值分别有明显的扩散作用和衰减作用,可有效降低在动力载荷下筋土的瞬态变形。  相似文献   

8.
在水平-垂直加筋体系研究的基础上,对单向土工格栅设置了加强肋,使其具备立体加筋效果。通过大量的拉拔试验,研究了带加强肋土工格栅加筋的筋-土界面特性。通过对汇总得到的36组拉拔试验数据进行分析,探讨了肋间距与肋厚对极限拉拔阻力的影响情况。试验结果表明:在相同法向应力作用下,带加强肋土工格栅的极限拉拔阻力明显高于普通土工格栅,其极限拉拔阻力随着加强肋肋厚的增加而显著增加,并随着加强肋肋距的增加而逐渐减小。在试验基础上,进一步分析了带加强肋土工格栅与砂土的相互作用机制,探讨了极限拉拔阻力的影响因素,建立了拉拔阻力理论公式,并将试验结果与理论值比较,二者基本吻合。  相似文献   

9.
侯娟  张孟喜  张陶陶  陈通 《岩土力学》2011,32(8):2365-2370
分别针对纯砂地基、水平加筋地基和新型三维立体加筋(简称横-竖加筋)地基进行了多组模型试验。主要研究了单层横-竖加筋深度和横-竖加筋层数对地基的影响,并通过与水平加筋地基的比较,结合横-竖地基砂土滑移面的形状,初步分析了横-竖加筋地基的加固机制。试验结果表明,同等试验条件下,横-竖筋的加筋效果较水平筋的好,对于单层横-竖加筋地基,加筋效果随加筋深度的增加而减弱,加筋深度超过一定范围后,加筋对地基受力性能的改善不明显。对于多层横-竖加筋地基,随加筋层数的增加,承载力增加,沉降减小。  相似文献   

10.
加筋土挡墙具有优越的抗震性能,并在土建工程中被广泛应用,因此,加筋土挡墙抗震设计方法的研究尤为重要。为了能够分析加筋体内部筋材布置方式、筋材抗拉强度等对屈服加速度的影响,假定破坏模式为双楔块模式,根据极限分析理论推导了加筋土挡墙屈服加速度系数表达式。与规范计算值相比,计算结果更接近模型测试值与数值模拟结果,同时计算方法可以反映模型的真实破坏模式。参数分析表明:屈服加速度随着筋材抗拉强度的增大而增大,特别是筋材长度较长时;随着筋材竖向间距的增大,屈服加速度逐渐减小;面板的宽度对屈服加速度几乎不产生影响;与面板宽度相比,筋材抗拉强度与竖向间距对加筋土挡墙破裂面形状的影响更大。  相似文献   

11.
通过碎石土和加筋碎石土的大型三轴试验,分析了土工带加筋碎石土的变形特性和土工带加筋对碎石土应力-应变关系的影响,采用双曲线函数拟合加筋土体的应力-应变试验曲线,建立了土工带加筋碎石土的非线性模型以克服经典的刚塑体模型不能反映加筋土体在达到破坏荷载前的变形形态的缺点,提出了土工带加筋土体切线模量的计算公式,该模型能正确反映土工带加筋土体的变形特性,在岩土工程方面有一定的实际应用价值.  相似文献   

12.
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   

13.
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   

14.
土工格栅加筋土地基平板载荷试验研究   总被引:2,自引:0,他引:2  
徐超  胡荣  贾斌 《岩土力学》2013,34(9):2515-2520
在近年来的岩土工程实践中,土工合成材料加筋土技术得到越来越广泛的应用。采用平板载荷板试验方法,进行了多组加筋砂土地基模型试验,监测和分析了不同加筋材料(双向格栅与四向格栅)和加筋层数对土工格栅加筋土地基承载特性的影响。研究结果表明:土工格栅加筋土地基与无筋地基相比,承载性能得到改善,双层加筋明显优于单层加筋;土工格栅加筋限制了浅层地基的侧向变形,相同荷载下地基沉降减小,可恢复变形增大;模型试验中测得加筋材料应变和拉力很小,与土工格栅强度相比,拉伸模量对加筋土地基承载力的贡献更大。  相似文献   

15.
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   

16.
肖成志  陈倩倩  韩杰  陈培 《岩土力学》2013,34(6):1586-1592
针对加筋挡墙顶部受条形基础载荷作用时的工作性能开展试验研究,分析条形基础距挡墙面板距离对基础极限承载力、加筋挡墙变形特点、筋材应变和破坏模式的影响。试验结果表明:基础极限承载力随基础偏移距离 增加呈现先增大后减小的趋势,且在 为 ( 为挡墙高度)时达到最大值;条形基础加载至破坏前一级载荷时,基础沉降与挡墙高度比值均小于2%,面板水平位移与挡墙高度比值均小于1%,且当 小于0.6时,面板顶部水平位移明显大于中底部;各层筋材中应变最大值随 增加而逐渐向远离面板方向发展,且筋材最大应变由最初出现在顶层而转向中间层;顶部受条形基础载荷作用下加筋挡墙破坏以3种模式为主,即顶层面板挤出的浅层破坏、破坏面沿基础边缘发展并向深部推进和加筋挡墙整体破坏。  相似文献   

17.
Bearing capacity tests of strip footings on reinforced layered soil   总被引:1,自引:0,他引:1  
The ultimate bearing capacity of strip footings resting on subsoil consisting of a strong sand layer (reinforced/unreinforced) overlying a low bearing capacity sand deposit has been investigated. Three principal problems were analysed based on results obtained from the model tests as follows: (1) the effect of stratified subsoil on the foundations bearing capacity; (2) the effect of reinforcing the top layer with horizontal layers of geogrid reinforcement on the bearing capacity; (3) effect of reinforcing stratified subsoil (reinforced and unreinforced) on the settlement of the foundation. It has been observed that reinforcing the subsoil after replacing the top layer of soil with a well-graded soil is beneficial as the mobilization of soil-reinforcement frictional resistance will increase.  相似文献   

18.
In the present study, an approximate method has been suggested to calculate the ultimate bearing capacity of a square footing resting on reinforced layered soil. The soil is reinforced with horizontal layers of reinforcement in the top layer of soil only. The pre requisite to the method is the ultimate bearing capacity of unreinforced layered soil, which can be determined from the methods already available in literature. The results have been validated with the model tests conducted on two layered soil compacted at different densities and the top layer reinforced with horizontal layers of geogrid reinforcement.  相似文献   

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