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1.
The construction of diaphragm wall panels can cause the stress change and soil movements in adjacent ground. In this paper, the construction sequence of a typical diaphragm wall panel in saturated soft clay is simulated with a 3D finite element program. The soil is assumed to behave as an isotropic linear elastic/Mohr–Coulomb plastic material with a soil–water coupled consolidation response. Influence of the pore water pressure is concerned to consider the consolidation behavior of the saturated soft clay. The analysis shows that the changes in effective horizontal stress and pore water pressure during diaphragm wall installation depend on arching mechanism and permeability. The variation in stresses and movements of ground computed by the coupled consolidation analysis and the total stress analysis are compared. Influences of the permeability coefficient on the installation effects are discussed by parametric studies. Finally, a case study of a diaphragm wall construction in Shanghai, in which the ground settlements were monitored, is presented to illustrate the prediction procedure of coupled consolidation analysis.  相似文献   

2.
Conventional numerical predictions of deep excavations normally neglect the construction process of the retaining structure and choose the earth pressure at rest as initial condition at the beginning of the simulation. The presented results of simulation and measurements during the construction process of the Taipei National Enterprise Center show, that such an assumption leads to an underestimation of the horizontal wall deflection, the surface ground settlements as well as the loading of the struts in case of normally to slightly over‐consolidated clayey soil deposits. The stepwise installation process of the individual diaphragm wall panels results in a substantial modification of the lateral effective stresses in the adjacent ground. Especially the pouring process of the panel and the fresh concrete pressure causes a partial mobilization of the passive earth pressure and a distinct stress level increase in the upper half of the wall. As a consequence of the increased stresses prior to the pit excavation, up to 15% greater ground and wall movements are predicted. Moreover, the increased stress level due to the installation process of the diaphragm wall leads to substantial higher strut loadings during the excavation of the pit. Copyright © 2006 John Wiley & Sons, Ltd.  相似文献   

3.
The influence of a diaphragm wall construction on the stress field in a soft clayey soil is investigated by the use of a three‐dimensional FE‐model of seven adjacent wall panels. The installation procedure comprises the excavation and the subsequent pouring of each panel taking into account the increasing stiffness of the placed fresh concrete. The soft clay deposit is described by a visco‐hypoplastic constitutive model considering the rheological properties and the small‐strain stiffness of the soil. The construction process considerably affects the effective earth and pore water pressures adjacent to the wall. Due to concreting, a high excess pore water pressure arises, which dissipates during the following construction steps. The earth pressure finally shows an oscillating, distinct three‐dimensional distribution along the retaining wall which depends on the installation sequence of the panels and the difference between the fresh concrete pressure and the total horizontal earth pressure at rest. In comparison to FE‐calculations adopting the earth pressure at rest as initial condition, greater wall deflections and surface ground settlements during the subsequent pit excavation can be expected, as the average stress level especially in the upper half of the wall is increased by the construction procedure of the retaining structure. Copyright © 2004 John Wiley & Sons, Ltd.  相似文献   

4.
The scopes of this work are to study the mechanisms of load transfer and the deformations of the ground during slurry trenching and concreting in dry sand and to evaluate their effects on service structural loads, wall deflections and ground displacements behind the wall caused by subsequent excavation. A series of three-dimensional finite element analyses was carried out modelling the installation of diaphragm walls consisting of panels of different length. The soil was modelled as either linearly elastic-perfectly plastic or incrementally non-linear (hypoplastic) with elastic strain range. Plane strain analyses of diaphragm walls of identical cross section were also carried out in which wall installation was either modelled or the wall was wished in place (WIP). The analyses predict ground movements consistent with the experimental observations both in magnitude and trend. The results also show that the maximum horizontal wall deflections and structural loads reduce with increasing panel aspect ratio towards a minimum which is about twice the value computed for WIP analyses. Panel aspect ratios should be larger than about three to take advantage of the three-dimensional effects. The pattern and magnitude of surface vertical displacements obtained from linearly elastic-perfectly plastic analyses, no matter whether three- or two-dimensional, are unrealistic.  相似文献   

5.
基于三维数值模拟的深基坑隔断墙优化设计   总被引:2,自引:0,他引:2  
应宏伟  李涛  王文芳 《岩土力学》2012,33(1):220-226
作为一种保护邻近建筑物的措施,隔断墙已经开始在深基坑工程中应用,但目前对其有关参数的设计还缺乏理论指导。以某软土地区深大基坑实例为背景,利用有限元分析软件ABAQUS,建立三维有限元分析模型,土体采用修正剑桥模型,模拟开挖实际工况,深入分析了隔断墙各设计参数对保护基坑邻近建筑物效果的影响,邻近建筑物沉降计算值和实测值验证了隔断墙参数优化分析结果的合理性。研究结果表明:地表位移、建筑物的横向角变量和围护墙最大位移随着隔断墙深度的增加而逐渐减小,但建筑物横向角变量的减小幅度趋缓,隔断墙存在一合理深度;随着隔断墙的位置逐渐从基坑侧壁向邻近建筑物移动,隔断墙外侧地表横向和纵向沉降以及纵向不均匀沉降均减小,建筑物的横向角变量也明显减小。理论上,隔断墙越靠近邻近建筑物,保护建筑物的效果越好;隔断墙的平面设置范围对于邻近建筑的保护效果也有着明显的影响,一般情况下可以取邻近建筑物的范围作为隔墙的合理设置范围;隔断墙刚度对地表位移和建筑物角变量影响不大,实际工程中宜取中等刚度的隔断墙。  相似文献   

6.
The walls of a deep excavation in cohesionless soils below the water table have been supported by a reinforced concrete diaphragm with T-shaped panels. To improve the safety against the risk of local collapse during the panel excavation, the soil surrounding the panels has been treated by deep mixing to a depth of 6?C10?m. The horizontal displacements, induced in the surrounding soil by the installation (deep mixing, slurry supported excavation, placing of the reinforcement cage, concrete casting and curing) of the diaphragm, have been measured by means of inclinometers. It is claimed that they can be a significant fraction of the total displacements induced by the excavation. A back analysis of the observed displacements shows that the deformation process is essentially elastic and can be satisfactorily modelled provided the values of the soil stiffness are properly selected.  相似文献   

7.
This paper presents a numerical analysis of the influence of initial stress state on the response of deep excavation supported by retaining wall. Indeed, the influence of diaphragm wall installation prior to excavation works may affect the soil response and lateral wall deflection induced by excavation process. The first part of this paper gives a short review of the numerical methods aimed to reproduce the retaining wall installation. Numerical analysis of a deep excavation in two‐dimensional and three‐dimensional conditions is then performed according to the methods previously presented. In three‐dimensional conditions, diaphragm wall installation is performed considering a sequence of panels, described by their number and length. Results of three‐dimensional calculations confirm that stress state is disturbed by wall installation, which has a sensitive effect on the ground response induced by soil excavation. It is also noted that these results are not easily reproduced in two‐dimensional conditions. Copyright © 2012 John Wiley & Sons, Ltd.  相似文献   

8.
土体水平位移对邻近既有桩基承载性状影响分析   总被引:1,自引:0,他引:1  
城市建设中经常会遇到由于堆载或基坑开挖所引起的土体水平位移现象,土体水平位移的作用会使邻近建筑物的桩基础产生附加内力或变形,并可能导致邻近桩基的破坏而发生工程事故。针对此类问题,基于Winkler地基模型以及桩-土变形协调条件,建立单桩水平位移控制方程,根据内力与位移的微分关系,采用两阶段方法进行求解。结合典型的工程事故,通过参数分析,研究土体水平位移对邻近桩基承载性状的影响程度。分析表明,基坑工程围护墙体的稳定和开挖深度对邻近桩基的安全有着重要影响,并提出了近期发生在上海的某小高层楼房整体倒覆事故的一种可能原因。  相似文献   

9.
Three-dimensional numerical analysis of deep excavations with cross walls   总被引:4,自引:2,他引:2  
Previous plane strain analysis of a case history has shown that cross walls in an excavation can effectively reduce movements induced by deep excavation. This study performed three-dimensional numerical analyses for 4 deep excavation cases with different installations of cross walls, including different excavation depths, cross wall intervals and cross wall depths. Both the observed and computed wall deflections for the 4 cases were compared with those of the same excavations that were assumed with no cross walls installed to demonstrate the effectiveness of cross walls in reducing lateral wall deflections. The results show that the cross wall also had a corner effect similar to that of the diaphragm wall. The deflection of the diaphragm wall was smallest at the location of the cross wall installed and then increased with the increasing distance from the cross wall, up to the midpoint between two cross walls. Many factors such as in situ soil properties, diaphragm wall properties, construction procedure, cross wall depth and so on may affect the amount of reduction in lateral wall deflections due to the installation of cross walls. Under the same condition, the amount of reduction was highly dependent on the depth of cross walls, distance to the cross walls and the cross wall interval.  相似文献   

10.
徐云福  王立峰 《岩土力学》2015,36(Z2):577-582
近邻桩基施工会对盾构隧道产生较大的不利影响,试桩过程中对试桩周围土体深层水平位移、隧道结构竖向位移和沉降进行了现场监测。监测结果表明,隧道结构竖向位移和水平位移缓慢增加,对桩体周边土体产生扰动;管片位移最大值发生在与试桩相对应的剖面上;随着试桩距离的增加,管片沉降和最大水平位移减小。管片以发生水平位移为主,沉降约为水平位移的0.5倍。在隧道埋深范围内,深层土体水平位移向隧道方向移动;隧道埋深范围以下,土层的水平位移向远离隧道方向移动。试桩实践表明,采用全套管钢套管护壁旋挖取土工艺,并在施工过程中对盾构隧道和周围土体进行动态信息化监测的施工方法能较好地预警、控制施工风险,得到的结论可以为相似工程的施工提供指导和参考。  相似文献   

11.
模块面板式加筋土挡墙结构行为试验研究   总被引:1,自引:0,他引:1  
为研究模块面板式土工格栅加筋土挡墙在墙顶局部荷载作用下的受力和变形状态,并了解其作用机制,通过室内模型试验,进行了包括墙面水平变形和墙顶竖向沉降以及墙体内垂直和水平土压力、附加应力扩散角、侧向土压力系数、土工格栅拉伸应变等分布规律的研究和分析。试验结果表明:墙面累积水平位移沿墙高呈上大下小分布;水平和垂直土压力沿筋长方向均呈从拉筋中部向两端逐渐减小的分布趋势;实测附加应力扩散角较非加筋土体大,基本在40°~75°之间;侧向土压力系数沿墙高的分布在不同断面有所不同;筋材应变沿筋长呈单峰值分布,峰值出现位置距墙脚的水平距离从高到低逐渐减小。  相似文献   

12.
朱宁  周洋  刘维  史培新  吴奔 《岩土力学》2018,39(Z1):529-536
采用三维有限差分软件FLAC3D对地下连续墙施工进行模拟,分析苏州地区粉土地层中地连墙施工对土体扰动及周边建筑物影响。利用UBCSAND硬化规律对外部扰动作用下土体强度逐步发挥的力学特性进行表征,模拟开挖过程中浅层土体变形,并对地连墙施工中成槽开挖、钢筋混凝土施工及混凝土硬化进行全过程模拟。计算结果表明,硬化模型较好地反映地连墙施工扰动下浅层土体力学特性;地连墙成槽阶段地层变形随深度的增加而减小,地表以下20 m范围内地层变形显著,而深部土体变形较小;钢筋混凝土浇筑施工对地层变形起到抑制作用;混凝土硬化阶段地层变形趋于稳定。在该基础上采用硬化模型对苏州某基坑地连墙施工进行数值仿真,模拟结果和现场实测吻合较好。  相似文献   

13.
邻近建筑物的暗挖隧道施工数值模拟   总被引:3,自引:0,他引:3  
魏纲  裘新谷  魏新江  丁智 《岩土力学》2009,30(2):547-552
软土中采用暗挖法开挖隧道往往会引起土体变形,由于城市中暗挖隧道多建在建筑物高度集中的地区,土体变形对邻近既有建筑物的损伤不容忽视。采用二维有限元方法对邻近中、低层建筑物(采用整体基础)工况下的暗挖隧道施工进行了模拟和分析,建筑物长15 m。研究结果表明:建筑物的存在会增大隧道开挖引起的地面沉降和衬砌的受力与变形,同时隧道开挖也会使邻近建筑物产生附加应力和变形。当隧道轴线与建筑物轴线的水平距离 0 m时,建筑物相对安全;当 时,建筑物会产生朝向隧道一侧的倾斜。当 为2.5~20 m时,产生较大的地面沉降,建筑物的首尾沉降差较大,建筑物较危险;当 为30~40 m时,建筑物的存在对隧道施工的影响较小;当 40 m时,建筑物的存在对隧道施工的影响可以忽略不计。由于基础的存在,建筑物的最大弯矩、轴力和剪力的变化量较小,增大量在10 %以内。  相似文献   

14.
地下连续墙施工力学机理三维数值分析   总被引:4,自引:0,他引:4  
采用三维有限差分方法,模拟了地下连续墙成槽开挖及混凝土浇筑施工全过程,研究了连续墙槽段外围土层在地下连续墙施工过程中的应力状态与变形形态,并将计算结果和现场实测结果进行比较。结果表明,数值计算应力结果与实测结果规律基本一致,但槽段底部数值计算应力变化梯度比实测值略大,采用该计算方法模拟地下连续墙施工全过程具有一定的可行性和较强的可靠性。  相似文献   

15.
夏元友  裴尧尧  王震  陈少炎  陈晨 《岩土力学》2012,33(11):3433-3438
对武汉市某超大型超深基坑10幅邻近地连墙跳跃式施工过程进行了三维有限差分数值模拟。数值模拟步骤依次为泥浆护壁成槽开挖、混凝土浇筑及混凝土硬化3个过程。泥浆护壁成槽开挖及混凝土浇筑分别采用常静液压力和变静液压力的方式加载,混凝土的硬化过程采用变弹性模量和泊松比的线弹性实体单元完成。数值计算结果与实测数据吻合较好。对单个跳跃式开挖过程墙上土压力的监测揭示了地下连续墙施工影响应力重分布的变化规律。模拟施工完成后10幅地下连续墙上的土压力值沿墙长度方向随静止土压力值上下波动,波谷出现在槽段连接处附近,波峰接近槽段中心轴,波动幅度大小与土体深度有关。分析表明,泥浆压力、混凝土灌注压力及土压力差值是影响墙后应力重分布波动幅度的主要原因,适当的泥浆重度及合理的注浆方式能避免土体扰动。  相似文献   

16.
何平  徐中华  王卫东  李青 《岩土力学》2015,36(Z1):597-601
等厚度水泥土搅拌墙技术即TRD工法,近年来在深基坑工程中得到了广泛应用。以上海国际金融中心基坑工程开展的0.7 m厚、8 m宽、56.7 m深TRD成墙试验为背景,采用有限元方法,并基于土体小应变本构模型对其成墙过程进行了模拟,得到了土体侧向位移和地表沉降曲线,并与实测数据进行了对比。结果表明,距离墙体5 m处两者的土体侧向位移曲线基本一致,而距离墙体1.4 m处的土体侧向位移在深度大于20 m后的计算结果较实测值偏小;地表沉降在靠近墙体处最大,随着距墙体的距离增大而逐渐减小。最后分析了成墙深度对地表沉降和土体侧向变形的影响,结果表明,深度越深,引起的土体侧向变形和地表沉降也越大。通过不同成墙深度引起的地表沉降归一化曲线可看出,TRD成墙引起的最大地表沉降约为0.05%H(H为成墙深度),沉降影响区域约为1.8H。  相似文献   

17.
陈保国  闫腾飞  王程鹏  宗秋雷 《岩土力学》2020,41(10):3289-3299
深基坑地连墙支护体系中局部应力集中问题,以及施工过程中的实际变形与设计值之间往往存在较大差异造成施工风险。通过设计模型试验,采用可伸缩的内支撑体系来解决上述问题。研究了内支撑体系、地连墙和墙后土体之间的协调变形特性;得出了内支撑的轴力、墙后水平土压力、基坑周围地表位移、地连墙的最大变形量等随支撑体系调节方式的变化规律;提出了地连墙支护体系协调变形智能调节方法。研究发现,相同的位移控制条件下,上部支撑伸缩引起的轴力变化量最大,底部支撑伸缩次之,4道支撑同时伸缩时影响最小;但是,支撑伸缩的位置越深,对地表竖向位移的影响范围越大,4道支撑同时伸缩对地表位移的影响范围和幅度大于单独伸缩某一道内支撑;支撑伸长可明显减小地连墙水平位移,但是会导致支撑轴力急剧增大。结果表明,实际工程中并非基坑水平位移控制越严格,支护体系就越安全,而是应合理控制内支撑伸缩长度,加强支撑轴力和位移监测。  相似文献   

18.

Excavation-induced ground movements and the resulting damages to adjacent structures and facilities is a source of concern for excavation projects in urban areas. The concern will be even higher if the adjacent structure is old or has low strength parameters like masonry building. Frame distortion and crack generation are predictors of building damage resulted from excavation-induced ground movements, which pose challenges to projects involving excavations. This study is aimed to investigate the relation between excavation-induced ground movements and damage probability of buildings in excavation affected distance. The main focus of this paper is on masonry buildings and excavations stabilized using soil nail wall method. To achieve this purpose, 21 masonry buildings adjacent to 12 excavation projects were studied. Parametric studies were performed by developing 3D FE models of brick walls and excavations stabilized using soil nail wall. Finally, probability evaluations were conducted to analyze the outputs obtained from case studies. Based on the obtained results, simple charts were established to estimate the damage of masonry structures in excavation affected distance with two key parameters including “Displacement Ratio” and “Normalized Distance”. The results also highlight the effects of building distance from excavation wall on its damage probability.

  相似文献   

19.
研究盾构隧道施工对周围地面以及建筑物沉降造成的影响,是软土地区盾构隧道安全施工和正常运营的基础课题。为了分析宁波轨道交通5号线同德路站—石碶站区间双线盾构隧道施工对周边地表和建筑物的影响,本文在建立盾构隧道动态施工过程三维有限元模型的基础上,基于地表以及建筑物沉降数值模拟结果与现场监测值的对比,分析了隧道开挖对隧道周围地表沉降与建筑物沉降的影响。结果表明,掘进完成时,开挖方向沉降槽往上行线隧道方向偏移、呈现倒梯形形态,横断面影响区域为距离双线隧道轴线中心小于3倍隧道直径;上行线在下行线开挖后并不会增加地表沉降,但增大了沉降槽宽度;下行线到达前产生的沉降占最终累计沉降的67%;当盾构掘进面刚到达建筑物时、建筑物的倾斜方向与盾构掘进方向一致,当盾构掘进面离开建筑物时、建筑物将沿着盾构掘进的反方向倾斜;建筑物两侧沉降值较中部沉降值降低了83%;双线贯通后建筑物沉降呈“U”形分布,最大沉降量发生在远离隧道一侧距建筑物中心0.5 m处。  相似文献   

20.
水平旋喷桩施工引起周围土体变形分析   总被引:1,自引:0,他引:1  
王志丰  沈水龙  谢永利 《岩土力学》2016,37(4):1083-1088
水平旋喷桩施工期间,大量高压流体注入土层,引起土层内部产生较大的膨胀作用,致使周围一定区域的土体发生变形。水平旋喷桩施工引起土体变形可以归结为压力膨胀和体积膨胀共同作用的问题。依托单根水平旋喷桩施工的现场实例,建立了水平旋喷桩施工引起土体变形的数值模型。将水平旋喷桩施工引起的土体变形问题简化为圆孔的膨胀问题,可以统筹考虑注浆压力和注浆流量的影响。首先需要确定注浆压力的影响半径和注浆流量引起的体积膨胀比,然后可以通过数值模型计算膨胀引起的土体变形。数值分析结果与现场实测值的对比表明,当注浆压力影响半径为成桩半径的6倍时,数值计算结果与现场实测值吻合较好。  相似文献   

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