首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到18条相似文献,搜索用时 460 毫秒
1.
堆载下单桩负摩阻力工作性状非线性数值分析   总被引:1,自引:0,他引:1  
利用三维非线性数值方法对一算例在堆载作用下桩侧负摩阻力进行了计算分析。计算结果揭示了摩擦型、端承型桩负摩阻力工作性状的异同;分析了堆载速度、桩顶荷载对负摩阻力的影响:堆载越快,负摩阻力越小;在无桩顶荷载作用下,由负摩阻力引起的下拉荷载最大,可视为常规方法设计的上限值;桩顶荷载与堆载施工顺序对负摩阻力的影响也很大,先施加桩顶荷载,后进行堆载所产生的负摩阻力最大,反之最小。  相似文献   

2.
扩底楔形桩竖向抗压和负摩阻力特性研究   总被引:1,自引:0,他引:1  
扩底楔形桩是基于结合常规扩底桩和楔形桩的优点而开发的一种新桩型,能同时提高桩侧正摩阻力和桩端阻力,并能有效降低土体沉降引起的负摩阻力对基桩的影响。简要介绍了扩底楔形桩的受力机制和施工方法;基于FLAC3D有限差分软件,通过针对实际工程的数值模拟验证数值模拟的可靠性,对该新桩型在竖向抗压和负摩阻力特性方面的力学特性进行了初步探讨,并与等体积混凝土的常规扩底桩、楔形桩和等截面桩进行了对比分析;进而研究了桩端土体与桩周土体模量比、楔形角、扩大头直径以及桩体模量等因素对扩底楔形桩力学特性的影响。研究结果表明,同等级地面堆载作用下,扩底楔形桩中桩侧负摩阻力引起的桩顶下拽位移最小、桩身下拽力值介于常规楔形桩和扩底桩两者之间。  相似文献   

3.
夏力农  苗云东  廖常斌 《岩土力学》2012,33(4):1217-1222
通过对复合地基在正常使用条件下和地基土沉降后的三维数值模拟,研究了复合地基由地下水位下降引起的地基土沉陷后的沉降、桩体摩阻力分布和桩身轴力分布的变化。分析表明:随着地基土沉降的增加,加固桩体和基础的沉降加大,中性点位置逐渐下降,桩身轴力有所增大;在加强桩中,中心桩的中性点最低,边桩次之,角桩最高;随着地基土沉降的增加,各桩中性点位置差异逐渐减小,桩体上部负摩阻力作用的桩身长度更长,负摩阻力值逐渐增大。  相似文献   

4.
研制异型桩是降低负摩阻力的重要措施之一,对目前能降低负摩阻力的异型桩的种类和特征进行了系统分析与总结,并介绍了作者已授权的一项国家发明专利——一种端部螺纹X形变截面预制管桩及其施工方法。通过FLAC3D软件分别模拟了圆形等截面桩和锥形异型桩在相同地面堆载的情况下桩身轴力的分布情况,结果表明锥形纵截面的设置可以有效降低负摩阻力的影响。阐述了端部螺纹X形变截面预制管桩能更显著降低负摩阻力的机制,研究成果可为端部螺纹X形变截面预制管桩的设计和推广应用提供一定的理论基础。   相似文献   

5.
采用弹塑性有限元法,结合岩土体结构特征,应用接触单元模拟桩土之间的不连续面,分别对单桩传统静载加载方式和自平衡加载方式进行数值模拟。自平衡加载方式的数值模拟结果与实际自平衡测试结果吻合较好,说明选取的模型和参数比较合理。进而采用此模型和参数,对传统静载加载方式进行数值模拟,得出桩上部荷载传递过程中桩及桩周岩土体应力及位移,求出各单元的应力应变,确定出桩侧法向应力,结合桩土之间摩擦试验的参数,根据莫尔-库仑理论求出桩侧摩阻力。最后将有限元数值模拟和自平衡实测侧摩阻力值进行对比,验证了在选用合理的模型和物理力学参数的基础上,有限元计算的侧摩阻力值和实测值较吻合,通过有限元方法计算获得的单桩侧摩阻力值具有一定的可借鉴性和实用性。   相似文献   

6.
攀钢新基地工程区80%为"昔格达"土回填区,回填土将对桩产生负摩阻力。现场负摩阻力试验表明:回填土上部在堆载情况下会有较大的固结沉降,从而使桩基产生负摩阻力。  相似文献   

7.
陈力恺  孔纲强  刘汉龙  金辉 《岩土力学》2012,33(Z1):200-204
软弱土及湿陷性黄土等地区桩基负摩阻力计算是桩基础设计与施工必须考虑的问题之一,目前针对群桩负摩阻力计算方面的研究相对较少。采用有效应力法计算单桩负摩阻力,基于极限平衡原理计算负摩阻力群桩效应系数,从而得到群桩负摩阻力计算公式。结合现场试验结果,对现浇X形桩群桩负摩阻力及桩身下拽力进行计算分析,并讨论了群桩基础中各基桩位置对桩身下拽力的影响,以及群桩效应系数随相关影响因素的变化规律。研究结果表明,文中计算结果与现场实测结果具有良好的一致性;地面堆载等级越高,群桩所受的桩身下拽力越大,且群桩效应系数随着桩间距的增大而增大,随着负摩阻力系数和中性点深度比的增大而减小。  相似文献   

8.
马学宁  付江  王军  王旭 《岩土力学》2018,39(10):3531-3538
在既有桥墩桩基础周围土体堆载时,会引起土体的沉降和侧向变形,进而在桩身产生负摩阻力,对桩基变形及承载性能有很大影响。为研究围载和单侧边载作用下群桩中不同位置桩基的受力差异,以3×3群桩基础为研究对象,进行围载和单侧边载作用下的模型试验,分析了不同位置桩基轴力、侧摩阻力、中性点位置和基桩承载力安全系数等的变化规律及差异。研究结果表明:围载工况下,角桩的轴力、侧摩阻力最大,边桩次之,中心桩最小;中性点位置角桩最深,边桩略高,中心桩距桩顶最近。边载工况下,靠近边载侧和中间一排桩基轴力、侧摩阻力与围载时的变化规律类似,远离边载侧的一排桩基受边载影响较小,无负摩阻力;各桩基中性点位置变化规律类似于围载工况。与围载工况相比,边载时同一位置桩身轴力、负摩阻力均较小,中性点位置较高。与单侧边载工况相比,围载时各基桩承载力安全系数FS均较小且随荷载的增大衰减梯度较大。该研究成果为不同堆载形式下群桩基础的设计提供参考。  相似文献   

9.
负摩阻力问题广泛存在于新建填土地区的桩基工程中,对桩基础承载特性产生较大的影响。基于有效应力法和桩侧摩阻力发挥机理,建立单桩负摩阻力计算的分段模型;通过桩土体系的变形假设和静力学平衡方程,确定桩侧摩阻力分段区间及中性点位置;利用位移和桩截面轴力控制方程,推导分段区间内桩身位移及轴力解析解。验证结果表明:桩侧负摩阻力的传递特征及分布范围可以通过计算公式确定。  相似文献   

10.
基于相互作用系数探讨的群桩简化分析   总被引:3,自引:1,他引:2  
相互作用系数法是群桩分析的一种有效的数值计算方法,该方法关键在于确定群桩的相互作用系数。传统的弹性分析方法所得的相互作用系数值偏大,计算结果与实测值差距不小;采用考虑土体弹塑性特征和桩土界面接触的三维有限元方法计算相互作用系数可以有效减少弹性方法的计算偏差,在此基础上推导了高承台群桩的简化分析方法。根据ABAQUS平台进行了大量三维有限元计算,分析了荷载水平、桩土模量比、桩距径比和桩长桩径比对相互作用系数的影响;比较了不同方法下相互作用系数的变化规律。通过有限元方法确定的相互作用系数对两群桩工程实例进行分析,计算结果表明该方法最接近于实测结果。  相似文献   

11.
A simplified method of numerical analysis has been developed to estimate the deformation and load distribution of piled raft foundations subjected to vertical, lateral, and moment loads, using a hybrid model in which the flexible raft is modelled as thin plates and the piles as elastic beams and the soil is treated as springs. Both the vertical and lateral resistances of the piles as well as the raft base are incorporated into the model. Pile–soil–pile, pile–soil–raft and raft–soil–raft interactions are taken into account based on Mindlin's solutions for both vertical and lateral forces. The validity of the proposed method is verified through comparisons with several existing methods for single piles, pile groups and piled rafts. Workable design charts are given for the estimation of the lateral displacement and the load distribution of piled rafts from the stiffnesses of the raft alone and the pile group alone. Additionally, parametric studies were carried out concerning batter pile foundations. It was found that the use of batter piles can efficiently improve the deformation characteristics of pile foundations subjected to lateral loads. Copyright © 2002 John Wiley & Sons, Ltd.  相似文献   

12.
陈阳  乔仲发 《岩土力学》2012,33(5):1491-1496
疏桩基础作为一种工期短、效果好的软土地基处理方式,在工程中的应用越来越广泛。考虑带桩帽的PTC(预应力混凝薄壁管桩)刚性桩桩侧摩阻力分布规律,将桩侧摩阻力假定为2个三角形拼合的分布形式。联合应用Mindlin-Geddes解答及Boussinesq解答,推导出了疏桩补偿地基中的附加应力的计算公式。结合具体算例,计算复合地基的沉降变形量。研究表明,该联合方法的沉降计算结果比传统方法偏小,与实测数据较为吻合。当桩间距大于8倍桩径时,随着桩间距的增加,疏桩补偿地基的附加应力场基本不变,但沉降量相应增大。对于桩间距较大的疏桩补偿地基,采用长、短桩组合形式较为合理。通过设置深层水泥土搅拌桩来加固软土路堤,能有效控制沉降量。  相似文献   

13.
厚填土场地地基自身固结变形对桩基产生的负侧摩阻力不可忽视。依托实际工程现场监测资料,对厚填土场地的桩基负侧摩阻力的分布规律进行分析,提出了简化的负侧摩阻力沿轴向线性分布理论计算图及负侧摩阻力系数计算方法。通过与监测资料进行的对比分析,得到本工程填土场地基桩的负侧摩阻力系数为0.09~0.15,验证了所提出的计算方法的合理性,为以后类似场地地基桩基的合理设计提供参考依据和工程借鉴。  相似文献   

14.
A simplified method of numerical analysis has been developed to estimate the deformation and load distribution of piled raft foundations subjected to ground movements induced by tunnelling and incorporated into a computer program ‘PRAB’. In this method, a hybrid model is employed in which the flexible raft is modelled as thin plates, the piles as elastic beams, and the soil is treated as interactive springs. The interactions between structural members, pile–soil–pile, pile–soil–raft and raft–soil–raft interactions, are modelled based on Mindlin's solutions for both vertical and lateral forces. The validity of the proposed method is verified through comparisons with some published solutions for single piles and pile groups subjected to ground movements induced by tunnelling. Thereafter, the solutions from this approach for the analysis of a pile group and a piled raft subjected to ground movements induced by tunnelling are compared with those from three‐dimensional finite difference program. Good agreements between these solutions are demonstrated. The method is then used for a parametric study of single piles, pile groups and piled rafts subjected to ground movements induced by tunnelling. Copyright © 2005 John Wiley & Sons, Ltd.  相似文献   

15.
Bridge pile foundations in the midst of water current are often subjected to scour, which induces the loss of soil support around the piles and thus results in a significant decrease of foundation capacities or even the failure of bridges. In the current practice, when the scour-affected behavior of the pile foundations is analyzed, either the whole scour-hole geometry or the possible changes in the stress history of the remaining soils is often ignored. In reality, however, scouring creates scour holes with certain dimensions around the pile foundations and the remaining soils that are not scoured away undergo an unloading process at the same time, which will increase the over-consolidation ratios of the remaining soils and accordingly changes of their mechanical properties. This paper examines the behavior of laterally loaded piles in soft clay under scour conditions by using the p-y method. The conventional p-y curves have been modified appropriately to reasonably reflect the effects of three-dimensional scour-hole geometry as well as the stress history of the soils, with the aid of integration of Mindlin’s fundamental solutions. A field test is used to serve as a reference case and to investigate the effects of stress history, scour depth, scour width, and scour-hole slope angle on the responses of laterally loaded piles in soft clay. The results indicate that neglecting the stress history effect can be unconservative for scour-affected pile foundations in soft clay, whereas neglect of the scour-hole dimensions and geometry would lead to over-conservative predictions/design of the laterally loaded piles under scour condition.  相似文献   

16.
通过对郑州-西安客运专线的关中某地钻孔灌注桩在预湿和后湿状态下的静载试验和同步进行的桩身应力测试,探讨了自重湿陷性黄土中桩侧负摩阻力的发生和发展过程,中性点位置的变化过程及桩侧阻力的发挥规律等,对自重湿陷性黄土中桩侧负摩阻力的理论研究及其工程应用具有重要的参考价值。  相似文献   

17.
A simplified method of numerical analysis based on elasticity theory has been developed for the analysis of axially and laterally loaded piled raft foundations embedded in non‐homogeneous soils and incorporated into a computer program “PRAB”. In this method, a hybrid model is employed in which the flexible raft is modelled as thin plates and the piles as elastic beams and the soil is treated as springs. The interactions between structural members, pile–soil–pile, pile–soil–raft and raft–soil–raft interactions, are approximated based on Mindlin's solutions for both vertical and lateral forces with consideration of non‐homogeneous soils. The validity of the proposed method is verified through comparisons with some published solutions for single piles, pile groups and capped pile groups in non‐homogeneous soils. Thereafter, the solutions from this approach for the analysis of axially and laterally loaded 4‐pile pile groups and 4‐pile piled rafts embedded in finite homogeneous and non‐homogeneous soil layers are compared with those from three‐dimensional finite element analysis. Good agreement between the present approach and the more rigorous finite element approach is demonstrated. Copyright © 2002 John Wiley & Sons, Ltd.  相似文献   

18.
Numerical pile segment analysis is conducted in this study with an advanced soil model to investigate the skin friction behaviour of a drilled Cast‐In‐Place (CIP) pile installed in sand. Although the interface between the sand and pile is considered rough, thin elements adjacent to the pile are used to include effects of localized shear. Unit weights of fluid concrete and accompanied changes in stress are considered as the effects of pile installation. Changes in effective stresses are the most prominent effect due to pile installation with a change in direction of the major principal stress from the vertical to the radial direction. Shear behaviour of the sand at the interface during the early shear stage is related to the contractive tendency of the sand at small strain levels. Changes in the stress field around the pile with little changes in volumetric strain take place during the early shear stage. Stress redistributions during the early shear stage depend on the direction of the major principal stress before shear. Results of the pile segment analyses for drilled CIP piles show good agreement with design methods. Parametric studies are used to characterize the effects of sand density and pile diameter on the skin friction behaviour of drilled CIP piles. Copyright © 2007 John Wiley & Sons, Ltd.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号