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1.
主要介绍了压桩力与单桩竖向极限承载力的关系,以及利用压桩力估算单桩竖向极限承载力的方法。在试桩阶段,位于饱和软土的摩擦桩,压桩力较低,桩的承载力主要来自土体恢复后桩侧的摩阻力。根据静载荷试验检测结果,用单桩竖向极限承载力除以压桩力,引出一个系数,称为压力比,通过分析比较,得出在昆明地区的正常压力比,静压预制管桩在1.3~2之间,静压预制方桩在2.5~5之间。用压桩力乘以压力比,可以估算单桩竖向极限承载力。还简要介绍了挤土效应和超孔隙水压力对桩的承载力的影响。在工程桩施工时,地层中的土体和孔隙水被挤压,形成孔隙水压力,会产生一个向上的浮力,导致已施工的桩上浮,单桩承载力显著降低。  相似文献   

2.
为了充分考虑桩间距范围内滑体对抗滑桩受力的影响,从单排抗滑桩加固边坡的整体稳定角度出发,在采用传递系数法分析指定设计安全系数情况下抗滑桩的内力时,提出对一个桩间距范围内的加固坡体进行整体分析,将抗滑桩所在部位单独划分条块,该条块包括桩体受荷段及其两侧桩间距范围内的滑体。推导了与此分析模型相应的桩体受荷段底端内力计算公式,并给出了在滑坡推力线性分布条件下作用于受荷段的净滑坡推力计算表达式。分析结果显示,在不考虑与完全考虑受荷段两侧桩间距范围内滑体抗力作用时,得到是桩体内力及位移的上、下边界值。实例分析进一步表明,理论分析与数值模拟结果具有良好的一致性。所提出的方法比传统方法更有利于抗滑桩设计的经济性。  相似文献   

3.
王成华  李全辉  张美娜  苏娟  占川 《岩土力学》2014,35(11):3207-3213
为评价灌注桩在施工过程中因形成缩径、扩径、断桩、泥皮等缺陷导致单桩竖向极限承载力变化的程度,针对缺陷桩单桩开展了现场模型试验研究。进行正常桩和缺陷桩的竖向静载模型试验,测试单桩竖向极限承载力,对比缺陷桩和正常桩的单桩承载特性,分析了缩径、扩径、断桩、泥皮等缺陷对单桩承载性状的影响。对比正常桩和缺陷桩的荷载-沉降关系曲线,得出了基于文中缺陷桩设计方案的结论,缩径缺陷和泥皮缺陷均使单桩竖向极限承载力降低,降幅在正常桩极限承载力的15%范围内;扩径缺陷桩的荷载-沉降关系曲线无明显陡降点,桩顶沉降较正常桩递增缓慢;断桩缺陷影响荷载-沉降关系曲线中反弯点的出现位置,即反弯点出现时的桩顶位移与断桩缺陷距地表的距离有关。  相似文献   

4.
在总结以往研究成果的基础上,对比分析现有的两种计算模型,提出新的计算模式,将双排桩及桩间土体视为空间等代桁架,并将前后排桩的底端视为弹性约束,同时采用对后排桩施加竖向预应力的方法,来平衡桩侧土压力和改善前后排桩的受力性能。利用有限元程序,通过对3种计算模型的对比分析,并与实测数据的对比,对所提出的计算模型和方法进行了必要的验证。结合工程实例,对影响预应力双排支护桩的关键因素进行了分析,计算分析和工程实例都表明:利用空间等代桁架模型和对后排桩施加竖向预应力的方法可以取得满意的结果。  相似文献   

5.
在深入分析密集型静力压入式预制桩挤土效应和群桩效应的机理和不利影响的基础上,建立了确保地基土不因挤土效应而破坏的孔隙水压力监控模型,优化压桩线路和次序的超静孔压监控模型,确保基桩不因桩周土隆起而被拔断的基桩轴力监控模型,确保基桩不因挤土效应而产生弯折破坏以及桩间土不因群桩效应而产生剪切破坏的桩侧土压力监控模型。实测数据表明,在没有采取有效的降排水和卸压预防措施时,沉桩施工容易导致地基土强度失效和基桩拔断破坏。采取袋装砂井排水和碎石桩式降水井降水后。即使是透水性差的软土地基。也可使较大的超静孔压在1d时间内消散70%。  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.
能源桩传热与承载特性研究现状及展望   总被引:1,自引:0,他引:1  
江强强  焦玉勇  骆进  王浩 《岩土力学》2019,40(9):3351-3362
能源桩是一种在传递上部结构荷载的同时获取浅层地热能源的新技术,给桩基结构的设计及安全服役提出了新的挑战。从能源桩实际应用的角度,围绕能源桩传热性能和承载性能两个关键科学问题,从4个方面综述目前的研究现状:(1)能源桩的热传递研究;(2)能源桩的结构响应特征;(3)能源桩的承载变形特性;(4)能源桩的荷载传递机制。在此基础上,对当前能源桩传热模型的适用性、热交换作用下能源单桩及群桩的承载特性以及长期运行条件下的承载性能及结构安全性进行了讨论,最后对能源桩工程下一步研究进行了展望。分析成果对于保证结构安全,合理开发浅层地能具有重要意义。  相似文献   

8.
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   

9.
This paper, under the assumption that the pile–pile interaction showed elasticity, analyzed the pile–pile interaction between two dissimilar piles in layered soils using the shear displacement method and taking the sheltering effect into account to modify the conventional interaction factor between two dissimilar piles. The linear stiffness of single pile was adopted herein to analyze the influence of the pile stiffness factor, the pile length factor, and the diameter of shorter pile on the pile–pile interaction factor between two dissimilar piles. The interaction factor between two dissimilar piles drew from the present method was generally in good agreement with the interaction factor computed by Wong and Poulos. However, this paper intends to provide a different but more convenient means of estimating the interaction factor between piles that have dissimilar diameters, lengths and pile tip conditions, and the settlement of dissimilar piles in pile groups. Copyright © 2010 John Wiley & Sons, Ltd.  相似文献   

10.
李宝建  李光范  胡伟  赵菲  金燦起 《岩土力学》2015,36(Z2):629-632
基于水平荷载作用下桩基的弯矩沿深度呈由上向下骤减的规律,将桩的上部设计为抗弯性能良好的钢管桩而下部为抗弯性能较弱的PHC桩,并选择适当的部位通过焊接等方式连接两种桩型。在现场进行锤击试验、水平承载力试验和连接部位抗弯性能试验,将复合桩的压应力、拉应力和水平承载力与材料允许值对比比较。结果表明,所选择的材料复合型桩充分发挥了材料性能,尤其在水平承载力方面表现突出,且不同材料桩型连接部位性能良好。试验结果为桩基的改进提供了新思路和试验依据。  相似文献   

11.
郭一斌  张立明  郑刚  杨振丹 《岩土力学》2014,35(10):2941-2948
盾构近距离穿越大型立交桥超长桩基础会对桩基础及上部桥梁结构产生不利影响。通过对盾构近距离侧穿超长桩基础过程进行数值模拟,研究了不同深度处盾构掘进对超长桩承载性状、变形和内力的影响。研究表明:盾构近距侧穿超长桩会导致桩身出现较大变形及内力,且隧道轴线与超长桩处于不同相对位置时会对桩的特性产生不同影响。其他条件不变时,盾构从桩身上部的近距离穿越,将引起桩身最大的横向水平位移;盾构从桩身中部近距离穿越则将引起桩身产生沿盾构掘进方向的最大的水平位移;盾构从桩端附近穿越时将引起桩身产生最大的竖向位移;盾构从桩身中下部穿越时将引起桩身产生最大的附加轴力。桩身侧阻在隧道轴线附近呈“S”型,同时桩身轴力最大值也出现在隧道轴线附近。盾构导致桩身产生纵向和横向变形延伸至桥面高度的变形量相当可观。当盾构穿越高架桥梁基础时应该严格控制桩顶水平位移。  相似文献   

12.
李雪  周顺华  王培鑫  李晓龙 《岩土力学》2015,36(Z1):235-240
针对饱和砂土地区盾构隧道超近接高铁桥墩摩擦桩的工程问题,采用钻孔灌注桩及高压旋喷桩组合隔断隧桩间位移。分别对钻孔灌注桩、高压旋喷桩及盾构上下行线近接高铁桥梁桩基引起的高铁桩基的变形及变位开展现场试验,对现场实测数据及规律进行分析。结果表明,钻孔灌注桩施工使高铁桥墩产生沉降,占施工过程最大沉降量的 75%~125%;高压旋喷桩施工导致桥墩产生隆起,占施工过程最大沉降量的-50%,旋喷桩施工完成后将持续一段时间;盾构施工对高铁桥墩竖向变形产生影响,距离高铁桩基越近影响越大,同时累计沉降跟盾构施工控制有较大关系。  相似文献   

13.
抗滑桩加固边坡三维数值分析中的几个问题   总被引:2,自引:0,他引:2  
年廷凯  徐海洋  刘红帅 《岩土力学》2012,33(8):2521-2526
就当前抗滑桩加固边坡三维数值分析中存在的几个问题,开展了有针对性的研究。利用考虑桩-土-边坡相互作用的强度折减有限元程序,结合典型边坡算例,深入探讨了抗滑桩-边坡体系的计算模型尺度、设桩位置、桩间距(S)与桩径(D)之比(S/D)、桩长与桩底接触模式等因素对边坡稳定安全系数及临界滑动面的影响,以及不同桩头约束下抗滑桩内力分布等。研究表明,单桩取半、单桩、双桩取半、双桩、单桩加双桩取半5种尺度计算模型所得边坡的安全系数并无差异,模型尺度为0.5S时的计算工作量最小;抗滑桩加固于边坡中部可获得最大的安全系数,坡顶或坡脚处安全系数略高于无桩状态,总体上其安全系数与设桩位置的变化曲线近似为一抛物曲线;边坡安全系数随S/D的增加而减小,其最优的比值宜为S/D =2~6,此时桩间存在土拱效应;均质土坡中抗滑桩锚固深度宜为2/5桩长;其结果可为抗滑桩工程设计及规范修订提供参考。  相似文献   

14.
通过对某高速铁路特大桥群桩基础进行三维非线性有限元分析,并结合现场试验得出的规律进行相应的对比分析,研究了软土地层桥梁群桩基础桩身轴力、桩侧摩阻力、基底土体附加应力、孔隙水压力分布、超孔隙水压力消散和群桩基础荷载沉降规律。计算结果表明,基桩所承受的轴力,角桩>边桩>中心桩,角桩和边桩的轴力沿桩身减小的幅度较大,而中心桩的轴力沿桩身减小的幅度稍小;各基桩桩侧摩阻力的发挥情况,侧摩阻力值总体上呈角桩>边桩>中心桩,相对滑移量基本呈上大下小的形态,即桩身上部桩-土之间产生的相对滑移量较中下部要大;外荷载作用下产生的土体附加应力和超孔隙水压力主要集中在承台底以下土体的一定范围内,其衰减梯度沿深度方向逐渐降低,随着固结时间的延长,群桩基础沉降达到稳定。  相似文献   

15.
楔形桩与圆柱形桩复合地基承载性状对比研究   总被引:3,自引:0,他引:3  
刘杰  何杰  闵长青 《岩土力学》2010,31(7):2202-2206
基于剪切位移法,引入Mylonakis & Gazetas桩-土相互作用及Winkler地基模型,导出了复合地基中桩-桩、桩-土及土-土相互作用柔度系数;在此基础上,提出了一种综合考虑桩-土-垫层共同作用的复合地基分析方法,并利用Matlab软件编制了相应的计算程序。为了验证该方法的可行性,对楔形桩和圆柱形桩复合地基进行了模型对比试验,并利用该方法对两个模型试验进行了计算分析,试验及理论结果均表明,桩顶平面处的桩间土反力保持着类似天然地基的马鞍形分布,圆柱形桩复合地基的承载力明显低于楔形桩复合地基的承载力,同时,圆柱形桩复合地基的桩土平均应力比明显高于楔形桩复合地基的桩土平均应力比,楔形桩对缓解复合地基中桩顶应力集中,充分利用天然地基的承载能力具有良好的调节作用。  相似文献   

16.
等截面桩与扩底桩抗拔承载特性数值分析研究   总被引:6,自引:1,他引:5  
吴江斌  王卫东  黄绍铭 《岩土力学》2008,29(9):2583-2588
建立了等截面桩与扩底桩的抗拔分析模型。采用直接约束处理的接触算法与库仑摩擦模型来模拟桩-土界面,土体选用抛物线型Mohr-Coulomb本构模型。通过程序的二次开发,实现初始应力场的合理计算,并采用位移边界对扩底抗拔桩的上拔过程进行动态的非线性有限元模拟。以现场足尺试验中的试桩为数值分析对象,通过调整计算参数使计算得到荷载-位移关系曲线与试验结果接近,来验证数值模型的正确性并确定计算参数。在此基础上,研究了上拔过程中轴力、侧摩阻力的大小与分布、桩身与扩大头附近土体变形与塑性区的发展规律。数值分析加深了对扩底桩抗拔承载特性的进一步认识。  相似文献   

17.
将塑性极限分析上限定理与抗剪强度折减技术相结合,建立了考虑孔隙水压力效应的抗滑桩加固土坡的极限平衡状态方程,采用数学优化方法求解桩侧极限有效土压力及相应的潜在破坏模式,其中水对边坡的影响作用通过虚功方程来体现,将孔隙水压力当作外力荷载做功,进一步地,基于获得的桩侧无量纲极限有效土压力,建立了抗滑桩的挠曲微分方程,采用有限差分法求解桩身的反应。在此基础上,针对典型算例边坡进行变动参数计算与对比分析,探讨了孔隙水压力对抗滑桩加固力与最优加固位置的影响。  相似文献   

18.
This paper develops a three‐layer model and elastic solutions to capture nonlinear response of rigid, passive piles in sliding soil. Elastic solutions are obtained for an equivalent force per unit length ps of the soil movement. They are repeated for a series of linearly increasing ps (with depth) to yield the nonlinear response. The parameters underpinning the model are determined against pertinent numerical solutions and model tests on passive free‐head and capped piles. The solutions are presented in non‐dimensional charts and elaborated through three examples. The study reveals the following:
  • On‐pile pressure in rotationally restrained, sliding layer reduces by a factor α, which resembles the p‐multiplier for a laterally loaded, capped pile, but for its increase with vertical loading (embankment surcharge), and stiffness of underlying stiff layer: α = 0.25 and 0.6 for a shallow, translating and rotating piles, respectively; α = 0.33–0.5 and 0.8–1.3 for a slide overlying a stiff layer concerning a uniform and a linearly increasing pressure, respectively; and α = 0.5–0.72 for moving clay under embankment loading.
  • Ultimate state is well defined using the ratio of passive earth pressure coefficient over that of active earth pressure. The subgrade modulus for a large soil movement may be scaled from model tests.
  • The normalised rotational stiffness is equal to 0.1–0.15 for the capped piles, which increases the pile displacement with depth.
The three‐layer model solutions well predict nonlinear response of capped piles subjected to passive loading, which may be used for pertinent design. Copyright © 2016 John Wiley & Sons, Ltd.  相似文献   

19.
本文讨论了沉管灌注桩及打入式桩对场地类别的影响和减轻震害的机理,通过对淮阴工[学院主楼地基在成桩前后的建筑场地的剪切波速对比测试,作者发现沉管灌注桩及打入式桩有改变地类别的可能,最后建议《规范》^[1]应增加对采用桩基础的建筑(特别是打桩较密的高层建筑)在打桩后应再次进行剪切波速测试并对场地类别的重新判定等内容,从提供工程设计的经济效益和社会效益。  相似文献   

20.
This paper studies the displacements behind a row of elastic piles in a homogeneous unbounded poroelastic soil after excitation by the passage of elastic waves. Biot’s theory is employed to describe soil behavior. Using a Fourier–Bessel series expansion with the aid of a translational addition theorem, closed-form expressions for the scattering coefficients are developed by imposing continuity conditions at the pile–soil interfaces. The influence of certain parameters, such as pile rigidity and soil permeability on the screening performance of the pile barrier is investigated. Particular attention is focused on the influence of the soil permeability on the screening effectiveness of a row of piles in the frequency domain.  相似文献   

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