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1.
赵文斌  罗文强  冯永 《岩土力学》2006,27(Z1):952-957
抗滑桩设计的常规方法是建立在定值基础上的,未能考虑计算参数的随机性与变异性,故在抗滑桩设计中存在局限性:一是不能给出抗滑桩设计的边坡安全度;二是设计中过分保守,造成浪费。可靠性分析法考虑了计算参数的随机性,用严格的概率来度量边坡的安全度,弥补了上述传统抗滑桩设计中存在的不足。基于可靠性分析法,以传统边坡稳定性计算公式为基础,建立了抗滑桩设计的边坡稳定性评价模型,并且运用蒙特卡罗法,采用单参数敏感性分析方法,分析抗滑桩设计各参数对边坡安全系数及可靠性指标的影响。结果表明,岩土体抗剪强度参数、岩土体重度、抗滑桩直径等因素对可靠性指标影响较明显,边坡安全系数对岩土体重度、抗滑桩有效长度、抗滑桩直径等随机变量较敏感。  相似文献   

2.
This paper presents the results of three-dimensional, finite element analyses performed with an advanced, two-surface-plasticity, constitutive sand model to investigate the response of non-displacement piles to axial loading. The analysis domain is carefully meshed such that the formation and evolution of shear bands next to the pile shaft and near the pile base can be properly captured. Analyses considering various soil profiles and pile geometries show that the mobilized lateral earth pressure coefficient K along the pile shaft increases with increasing relative density and decreasing initial confining stress. The ultimate unit base resistance is independent of pile diameter, increasing with increasing relative density and increasing initial confining stress at the pile base. Based on the analysis results, design equations are proposed to estimate the limit shaft resistance and ultimate base resistance of non-displacement piles in sandy soil. In proposing these relationships, the pile slenderness ratio is considered. The effect of layer proximity to the base of the pile or pile base embedment in a layer is also considered.  相似文献   

3.
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   

4.
费康  朱志慧  石雨恒  周莹 《岩土力学》2020,41(12):3889-3898
采用双曲线模型模拟桩土界面上的力学行为,利用剪切位移法反映剪应力在土层中的传递,考虑群桩之间的相互作用,建立了热?力耦合作用下能量桩群桩基础工作特性的简化分析方法。该方法能反映桩土界面上的非线性、桩顶的约束条件和能量桩位置的影响,可直接计算所有桩的位移和轴力。与现有方法相比,计算得到的双桩相互作用因子更加合理。通过与文献中试验数据的对比表明,若只有局部桩经历温度变化,能量桩运行过程中各桩之间存在差异变形,基础出现倾斜,桩顶荷载发生重分布。所建立方法计算方便,能合理模拟能量桩群桩基础的主要工作特性,可用于大规模能量桩群桩基础的设计计算。  相似文献   

5.
孙凤玲  刘焕存  刘涛 《探矿工程》2018,45(5):63-66,70
武汉市某项目典型二元结构地层,稳定砂层平均埋深约50 m,合理桩长范围内无较好持力层,灌注桩沉渣控制困难、成桩工效低。选择深度>30 m的粉细砂夹粉质粘土层为桩端持力层,通过14根、2组不同桩径及桩长的试桩验证成桩工艺,对比2组试桩的承载特性,提出按规范经验参数取值的不足,以综合性价比和承载稳定性推选直径800 mm、桩长30 m的后注浆摩擦型灌注桩为工程桩参数,为桩基设计优化提供依据及类似工程提供参考。  相似文献   

6.
This article presents a method for the nonlinear analysis of laterally loaded rigid piles in cohesive soil. The method considers the force and the moment equilibrium to derive the system equations for a rigid pile under a lateral eccentric load. The system equations are then solved using an iteration scheme to obtain the response of the pile. The method considers the nonlinear variation of the ultimate lateral soil resistance with depth and uses a new closed‐form expression proposed in this article to determine the lateral bearing factor. The method also considers the horizontal shear resistance at the pile base, and a bilinear relationship between the shear resistance and the displacement is used. For simplicity, the modulus of horizontal subgrade reaction is assumed to be constant with depth, which is applicable to piles in overconsolidated clay. The nonlinearity of the modulus of horizontal subgrade reaction with pile displacement at ground surface is also considered. The validity of the developed method is demonstrated by comparing its results with those of 3D finite element analysis. The applications of the developed method to analyze five field test piles also show good agreement between the predictions and the experimental results. The developed method offers an alternative approach for simple and effective analysis of laterally loaded rigid piles in cohesive soil. Copyright © 2011 John Wiley & Sons, Ltd.  相似文献   

7.
预制桩的沉桩过程产生了对桩周土体的挤密作用,桩周土体的力学特性发生了相应的改变,这种改变会直接影响预制桩桩基础的承载力。利用有限元计算分析方法对砂性土地基预制桩沉桩过程进行了数值求解,得到了桩周土体的位移和应力变化规律;在应力路径控制的三轴试验中,模拟土体在受到预制桩沉桩影响的应力状态,试验研究了标准砂在再受荷载作用时的力学特性;在荷载传递法中,运用桩周土体性质的变化试验结果,进行了有限差分数值分析,得到了考虑和不考虑挤土作用的单桩P-S曲线。研究结果表明:预制桩的沉桩过程对桩周土中的径向和轴向应力都有明显的影响,对径向应力的影响大于对轴向应力的影响;挤土效应提高了桩周土的剪切模量值和强度,影响范围大致相当;考虑沉桩侧向挤土影响单桩承载特性有明显的提高,现行的预制桩设计偏于安全。  相似文献   

8.
Static load test program was performed on a single pile and two 16-pile groups with equal and different pile lengths. The soil profile consists of sand fill to 0.5 m depth placed on a thick deposit of soft, normally consolidated and compressible clay. The closed end steel pipe piles in 60 mm diameter were installed from 1.5 m through 2.1 m depth within soft clay deposit. The center-to-center distance of piles in group is about 3 times of pile diameter. The strain gages were installed at one level above and two through four levels below ground surface. Tests were carried out about 7 days after driving by method of a series of load increments placed every 5-min until plunging failure occurred. The load at plunging failure for the single pile, the equal-length pile group and the different-length pile group were about 3, 40 and 48 kN, respectively. The movements at start of failure were about 12, 18, and 17 mm, respectively. The analysis of strain gage measurements indicates that the load distribution on piles in the different-length pile group has become significantly uniform.  相似文献   

9.
锚杆静压桩技术在既有建筑物增设地下空间中的应用   总被引:4,自引:2,他引:2  
贾强  应惠清  张鑫 《岩土力学》2009,30(7):2053-2057
运用锚杆静压桩技术在既有建筑物中增设地下空间是可行的,一方面可利用既有建筑物的自重荷载作为压桩的反力,另一方面将压好的桩作为临时托换构件支撑的既有建筑物,建筑物下方的土体才可以开挖。对于黏性土,采用逐根压桩的方案,把所有桩压至设计标高后,待超孔隙水压力消散,才开挖承台下的土体。对于砂性土,可以边开挖土方边压桩,通过控制压桩和挖土速度,很好地控制建筑物的沉降。桩身四周的土体开挖后,其稳定性按照自由长度较大的高承台桩的模型进行分析。锚杆静压桩的压桩阻力是根据土层动力触探的指标确定的,锚杆静压桩的数量根据使用阶段、施工阶段的荷载以及桩身自由段的屈曲稳定性综合确定。按照新旧混凝土界面初始滑移承载力,进行承台的抗冲剪设计是有足够的安全储备的,此时冲剪承载力由几个斜向混凝土柱承担,而承台的下部受拉。锚杆静压桩之间的沉降差会在上部结构中产生附加内力,影响到结构安全。沉降差的计算采用分层总和法,计算时应考虑桩身的重力荷载、桩顶集中荷载等产生的附加应力以及土体开挖附加应力的减少。  相似文献   

10.
柏炯 《工程地质学报》2015,23(2):265-271
冲填软土地基需要经过地基处理后才能投入工程使用,处理方案一般为浅层地基处理如真空预压处理,但对于大面积大荷载堆载场地,浅层地基处理不足以保证地基稳定性,需进一步做深层地基加固。本文针对广州某造船基地大面积堆载场地,对经真空预压处理后的该类深厚冲填软土地基提出了搅拌桩地基、微型桩地基以及搅拌桩微型桩交错布设地基加固方案,并基于Biot固结理论和有效应力原理,采用有限元分析软件PLAXIS进行数值模拟,对土体选取基于修正剑桥模型的软土模型和Mohr-Coulomb模型,对搅拌桩和微型桩依次选取线弹性模型和弹性模型,计算得到不同加固方案的基础沉降量。基于不同桩型加固机理对计算结果进行进一步分析得出,对此类深厚冲填软土地基,相同桩长的搅拌桩地基加固效果较微型桩效果更明显; 另通过对不同桩长搅拌桩地基加固效果的模拟计算,发现桩长为10m到15m的搅拌桩均能有效加固地基,但随着桩长的增加,加固效果未能显著提高。本研究为冲填软土地基深层加固的设计提供了一定的依据。  相似文献   

11.
Static and dynamic lateral load tests were carried out on model aluminium single piles embedded in soft clay to study its bending behaviour. Model aluminium piles with length to diameter ratios of 10, 20, 30 and 40 were used. Static lateral load tests were conducted on piles by rope and pulley arrangement upto failure and load–deflection curves were obtained. Dynamic lateral load tests were carried out for different magnitudes of load ranging from 7 to 30 N at wide range of frequencies from 2 to 50 Hz. The load transferred to the pile, pile head displacement and the strain variation along the pile length were measured using a Data Acquisition System. Safe static lateral load capacity for all piles is interpreted from load–deflection curves. Dynamic characteristics of the soil–pile system were arrived from the acquired experimental data. The soil–pile system behaves predominantly in nonlinear fashion even at low frequency under dynamic load. The displacement amplitude under dynamic load is magnified by 4.5–6.5 times the static deflection for all piles embedded in soft clay. But, the peak magnification factor reduces with an increase in the magnitude of lateral load mainly because of increase of hysteretic damping at very soft consistency. The maximum BM occurs at the fundamental frequency of the soil–pile system. Even the lower part of the pile affects the pile head response to the inertial load applied at the pile head. The maximum dynamic BM is magnified by about 1.5 times the maximum static BM for model piles in tested consistency of clay. The maximum dynamic BM occurs at a depth of about 1.5 times the depth of maximum static BM for model piles, which indicates an increase of active pile length under dynamic load.  相似文献   

12.
The plugging of pipe piles is an important phenomenon, which is not adequately accounted for in the current design recommendations. An open-ended pipe pile is said to be plugged when the soil inside the pile moves down with the pile, resulting in the pile becoming effectively closed-ended. Plugging is believed to result in an increase in the horizontal stresses between the pile and the surrounding soil, which results in an increase in skin friction. A total number of 60 model pile tests are carried out to investigate the behavior of plugs on the pile load capacity and the effects of plug removal. Different parameters are considered, such as pile diameter–to–length ratio, types of installation in sands of different densities, and removal of the plug in three stages (50, 75, and 100 %) with respect to the length of plug. The changes in the soil plug length and incremental filling ratio (IFR) with the penetration depth during pile driving show that the open-ended piles are partially plugged from the outset of the pile driving. The pile reached a fully plugged state for pressed piles in loose and medium sand and partially plugged (IFR = 10 %) in dense sand. For driven piles, the IFR is about 30 % in loose sand, 20 % in medium sand, and 30 % in dense sand. The pile load capacity increases with increases in the length of the plug length ratio (PLR). The rate of increase in the value of the pile load capacity with PLR is greater in dense sand than in medium and loose sand. Based on test results, new empirical relation for the estimation of the load carrying capacity of open-ended piles based on the IFR is proposed.  相似文献   

13.
谢勘 《福建地质》2004,23(2):100-103
通过对上海救捞局福州救助站码头迁建工程水上施工大口径砂桩的实践,阐述了使用砂桩改善软弱粘性土地基的施工工艺,总结水上施工大口径砂桩的工程质量控制,以及处理方法。  相似文献   

14.
我国长江中下游沿岸地基中分布有较厚的砂土层,砂土层是桩基的良好持力层。该地区砂性土埋藏浅,厚度大,往往夹杂粉土或粉质黏土,一般随深度增大,砂土变密实。已有研究成果中,针对桩身穿过多层砂土条件下桩基承载力的研究较少。砂土地基中打入桩试验结果表明,砂性土的状态对打入式预制桩的施工产生很大的影响,在松散或稍密的砂性土中沉桩一般比较容易,而在中密或密实的砂性土中则较为困难。本文通过某电厂工程灌注桩现场静载试验,研究了砂土地基中桩身沉降随荷载变化规律,分析了桩身轴力随地层深度变化特征及不同土层的桩侧摩阻力。设计钻孔灌注桩桩径为800mm,桩长为47.2m,桩身混凝土强度等级为C35,桩身穿过9层土层,由现场3根桩静载试桩结果可知,荷载与沉降关系呈非线性,Q-s曲线分为弹性阶段、弹塑性阶段和整体破坏3个阶段, 15m深度以下的粉细砂层侧摩阻力对桩身轴力影响较大, 15m以上粉质黏土和淤泥质土对桩轴力影响较小。根据Q-s曲线确定单桩极限载荷约为4800~5400kN,平均值为5201kN,可满足设计要求,地基中下部砂土层承载力较大,砂土侧摩阻力大于黏性土的侧摩阻力,最大可达到70kPa。所得结论可为该类地基进一步的理论研究及工程设计提供有益的参考。  相似文献   

15.
Dynamic experiments were carried out on instrumented model aluminium single piles embedded in clay of different consistencies to study its bending behaviour under lateral loads. Piles with different length to diameter ratios were used. Dynamic lateral load of different magnitudes ranging from 7 to 30 N at wide range of frequencies from 2 to 50 Hz were applied. The load transferred to the pile, pile head displacement and the strain variation along the pile length were measured using a dedicated data acquisition system. Static lateral load tests were also performed to investigate the magnification of dynamic response of piles in clay. It is found that the maximum bending moment due to dynamic load is magnified by about 1.5–4 times in comparison to the static load for short piles but about 9 times for long piles. Depth of fixity and effective pile length is also largely amplified under dynamic loads, thus indicating that a pile which behaves as a flexible pile under static load, may not exhibit flexible behaviour under dynamic load.  相似文献   

16.
Hu  Biao  Gong  Quanmei  Zhang  Yueqiang  Yin  Yihe  Chen  Wenjun 《Acta Geotechnica》2022,17(9):4191-4206

It is known that a lot of uncertainties are involved in geotechnical design of energy piles. In this paper, a Bayesian updating framework is presented to characterize those uncertainties. The load-transfer model is developed to predict the thermomechanical response of energy piles. Considering the cross-case variability of the uncertainty in the axial strains of pile, the global model bias is firstly calibrated by establishing a comprehensive database consisting of 12 energy pile cases. Furthermore, the uncertainty in input parameters is considered in the Bayesian updating of model bias in a specific case. The variability of the uncertain parameters is effectively reduced after updating. The coefficient of variation of prediction is decreased from 0.34 to 0.13. The present framework can well quantify uncertain factors and improve the accuracy and reliability of the prediction model.

  相似文献   

17.
打入桩承载力确定方法对安全系数的影响   总被引:1,自引:0,他引:1  
李典庆 《岩土力学》2006,27(10):1733-1738
在传统的容许应力设计方法中桩基承载力安全系数取决于桩基承载力的确定方法,然而,基于经验选择的承载力安全系数缺少理论依据,为此,基于贝叶斯理论和线性回归方法提出了评价桩基承载力确定方法对承载力安全系数影响的方法,给出了现行规范对于不同承载力确定方法采用不同安全系数的理论依据,阐明了桩基动力测试降低安全系数的理论依据,并以7种桩基设计方法为例,分析了承载力确定方法对安全系数的影响。结果表明,采用所提出的方法计算的安全系数基本上与现行的经验值相一致,表明精确的承载力确定方法可以有效地降低承载力安全系数,设计方法、承载力确定方法和水平都对安全系数有影响,但当承载力试验桩的数目足够多时,安全系数对于设计方法的精确性不敏感。  相似文献   

18.
青岛龙湖D2地块基坑支护工程中,支护桩对应土层为素填土、粗砂、粉质粘土。采用PRC-I 600AB110单节预应力管桩作为支护桩,桩径600 mm,桩长分别为7 m和8 m,桩端进入粉质粘土地层约3 m深。该桩刚度大,施工速度快。基坑开挖后,坡顶地面未出现明显裂缝和沉降。基坑经过监测,水平、竖向位移等监测项目均在允许位移范围内,满足设计要求。  相似文献   

19.
Piles socketed into rock are increasingly used to support loads from large-span bridges and heavy buildings. Peak side resistance is typically related to unconfined compressive strength, sidewall roughness and rock mass quality. This paper presents the results of tests on piles socketed in a weak, artificial rock made of sand, cement, gypsum powder and water. The test results are compared with methods of estimation in which the roughness of the pile–rock interface is modeled explicitly by assuming sinusoidal undulations along the interface. The testing program includes 10 model piles. Some of these piles have nonzero base resistance; others are unsupported at the base. The results indicate that both the degree of roughness of the socket sidewall and the base stiffness are of major importance to the load response of rock-socketed piles. The ultimate unit side resistance was observed to increase substantially with both increasing sidewall roughness and increasing base stiffness, but there is an upper limit to socket roughness beyond which very little increase in side resistance can be obtained. Most of the available correlations used to predict the ultimate side resistance of rock-socketed piles produced conservative estimates for the test piles in this study.  相似文献   

20.
天津市某主塔楼桩基选用后压浆超长钻孔灌注桩,为了掌握超长后压浆钻孔灌注桩在该地层的工程特性,共设计了2组(共8根)试桩进行单桩竖向抗压静载试验。试桩中安装了振弦式钢筋计和分层沉降管以反映桩侧摩阻力和桩身分层沉降状态。对试验数据进行对比分析和计算结果表明,桩侧注浆可以明显提高超长桩的侧摩阻力;采用预压加载可以增强超长桩的弹性,减少桩顶的沉降;卸荷稳定后试桩具有桩侧阻力,桩身上段所受阻力为负摩阻力,下段为正摩阻力,同时具有的桩身轴力使试桩产生一定的压缩,其压缩量为残余变形量的重要组成部分  相似文献   

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