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1.
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   

2.
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   

3.
A new approach for simulating the excavation and construction of subsequent panels is proposed to investigate the effects from the installation of diaphragm walls on the surrounding and adjacent buildings. The method has been combined with a 3-D nonlinear analysis and a constitutive law providing bulk and shear modulus variation, depending on the stress path (loading, unloading, reloading). From the application of the method in a normally to slightly over-consolidated clayey soil it was found that the panel length is the most affecting factor of ground movements and lateral stress reduction during panel installation. Moreover, from the evaluation of horizontal stress reduction and the variation of horizontal displacements arises that the effects from the construction of a panel are mainly limited to a zone within a distance of the order of the panel length. The effects on an adjacent building have also been investigated by applying a full soil–structure interaction including the whole building. Settlement profiles and settlements are given at specific points as increasing with subsequent installation of panels, providing the ability of specific monitoring guidelines for the upcoming construction of the diaphragm wall in front of the building. Contrary to lateral movements, which mostly take place at the panel under construction, it was found that the effect of settlements covers a larger area leading to a progressive settlement increase. The effect highly depends on the distance from the panel under construction.  相似文献   

4.
南京地铁许府巷站深基坑工程与监测   总被引:4,自引:0,他引:4  
南京许府巷地铁站深基坑工程采用地下连续墙围护,明挖顺做法施工。地下连续墙接头采用预制钢筋砼接头桩连接止水,两端头井辅以深层搅拌桩加固地基。基坑开挖时进行墙体位移、轴力、临近建筑物沉降变形监测,保证了安全施工。  相似文献   

5.
现场测试结果表明:深层搅拌桩施工可以在周围土体中产生很高的超静孔隙水压力,其量值可能超过土体的静水劈裂压力。搅拌桩施工时和周围土体的相互作用可以用受剪的孔穴扩张过程来模拟。针对搅拌桩施工引起的周围土体的劈裂现象,提出了一种基于拉伸破坏原理的劈裂分析方法。分析结果表明:搅拌叶片的旋转对桩周围土体的劈裂起着很重要的作用。通过室内模型桩打设试验可以观测到搅拌桩周围土体的劈裂现象。分析现场搅拌桩施工时桩周土体中的孔隙水压力测试结果,表明现场施工可以引起劈裂。劈裂裂缝对于搅拌桩的性状有如下两方面的正面作用:其一,水泥浆体可以流入劈裂裂缝;其二,超静孔隙水压可以通过劈裂裂缝快速消散。这两者的作用加快了受扰动的周围土体的强度恢复。  相似文献   

6.
在深基坑开挖施工中,钻孔灌注桩加混凝土内支撑具有挡土作用,而水泥土搅拌桩和压密注浆形成的双层止水帷幕则具有止水作用.以苏州市演艺中心二期基坑工程为实例,根据基坑开挖施工过程中的实测数据,分析和研究了支护结构的变形、地下水位以及周边建筑物沉降的变化,对此基坑工程支护结构以及止水帷幕的设计施工方案进行验证.结果表明:利用上述技术措施效果良好,对苏州地区类似基坑围护设计和施工具有一定的借鉴意义.  相似文献   

7.
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   

8.
A series of three-dimensional finite element analyses of deep excavations with the integrated system between buttress walls and diaphragm walls was conducted to investigate the effect of the buttress wall intervals, treatments, locations, height, and thickness on limiting deformations induced by deep excavation. The integrated retaining system was formed by maintaining buttress walls when soil was excavated. The wall deflection control mechanism of the integrated retaining system mainly came from the combined stiffness between the buttress wall and the diaphragm wall. In addition, the ground settlement control mechanism came from the combined stiffness between the buttress wall and the diaphragm wall, and the frictional resistance between the buttress wall and the surrounding soil. For achieving 50% reduction in the wall deflection and the ground surface settlement, the length and intervals of buttress walls that were applied to the integrated retaining system were at least 4 and 8 m, respectively. When the deflection at the diaphragm wall head was well restrained, for example, by the floor slab, the position of the buttress wall head could be located at a depth the diaphragm wall starts to bulge out. In such a case, the performance between the full height and limited height of buttress walls was quite close. Furthermore, a new well-documented excavation project was analyzed to verify the performance of the integrated retaining system. Results showed that the integrated retaining system worked excellently if the joints between buttress walls and diaphragm walls were constructed properly.  相似文献   

9.
In the present study, the large-scale excavation in the construction is numerically back-analyzed using a soil–water-coupled finite element method with an elasto-viscoplastic model which considers the strain-induced degradation. The measurements of the deformation have been performed during the construction of a new railway station in Osaka, Japan, in which a large and deep excavation has been successfully carried out using a special deep mixing type of soil improvement method with earth retaining walls through the thick Holocene Osaka Umeda clay deposit. A comparison between the numerical results and the measurements of the excavation at Osaka shows that the simulation method can reproduce the overall deformation of the soft ground and the earth retaining walls including the time-dependent behaviour during the excavation and a deep mixing soil improvement method as an additional technique for stability are effective.  相似文献   

10.
何军涛  张洁  黄宏伟  张应刚 《岩土力学》2012,33(12):3810-3817
基坑变形的反分析涉及数值模型与优化方法的耦合,常具有计算量大、使用不方便的特点。为此,提出1种可用于基坑变形反分析的多重响应面法,该方法在基坑地下连续墙不同深度处分别采用二次多项式表示地下连续墙水平位移与土层弹性模量之间的隐式关系,在此基础上利用位移观测对基坑土层弹性模量进行反分析。该方法可以解开数值模型和优化算法的耦合,从而具有较高的计算效率。工程应用实例表明,多重响应面法对基坑土层弹性模量进行反分析具有使用方便、计算效率高、计算结果准确的优点,非常适合求解基坑工程的位移反演问题。  相似文献   

11.
朱彦鹏  李元勋 《岩土力学》2013,34(5):1416-1420
深基坑排桩预应力锚杆支护工程中,作用于桩身的土压力与桩身位移呈非线性变化。对于这种非线性变化问题,基于位移土压力模型,考虑支护结构位移的影响,推导了混合法计算公式。混合法可以有效跟踪支护结构的变形过程,反映土体与桩之间的非线性作用关系。结合工程实例,编制了MATLAB计算程序,计算结果较好地反映了土压力与桩身位移之间的非线性变化关系,并与理正软件计算结果进行对比分析,结果表明两者吻合较好,从而证明该计算方法具有较好的适用性,对深基坑支护结构设计有较好的参考价值。  相似文献   

12.
This article presents the observed and simulated lateral movements and strut forces induced in deep cement mixing walls under deep excavation using top-down construction techniques in soft Bangkok clay. The walls are supported laterally by permanent concrete slabs and temporary struts. A three-dimensional numerical model is first calibrated with observed data from a case study. Then, a parametric study is performed to compare this construction method with the bottom-up method and investigate the influence of the DCM wall thickness on lateral movements and strut forces of the wall.  相似文献   

13.
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   

14.
徐平  张天航  孟芳芳 《岩土力学》2016,37(Z2):769-774
河南某基坑最大开挖深度为5.8 m,场地以饱和淤泥质粉质黏土为主,与周边既有建筑最近距离为1.2 m,采用工字钢水泥土搅拌墙和预应力扩大头锚杆进行支护。运用PLAXIS有限元软件对该基坑支护结构进行数值模拟,得到了不同工况的土体位移、工字钢水泥土搅拌墙轴力和弯矩、预应力锚杆的锚固力和各开挖阶段的总乘子 ,结果表明,数值计算的土体水平位移与实际监测数据比较吻合,验证了工字钢水泥土搅拌墙建模的合理性;PLAXIS软件能较好地模拟基坑开挖过程中土层及结构的变形特点,验证了PLAXIS有限元软件在基坑工程的适用性;数值计算的土体水平位移、锚杆轴力、采用强度折减法计算的各开挖阶段的总乘子 均满足基坑设计要求,验证了工字钢水泥土搅拌墙在基坑支护的可行性,为类似基坑设计提供了理论依据。  相似文献   

15.
两侧铰接地下连续墙的试验研究及数值分析   总被引:2,自引:0,他引:2  
裴颖洁  郑刚  刘建起 《岩土力学》2008,29(1):279-284
地下连续墙用于平面不规则形状基坑支护时,对任意直线段墙体,其受力与变形实际上是三维的,而不是一般经验简化方法假设的二维变形与受力,并应考虑相邻墙体之间的相互作用。采用考虑墙土相互影响的地下连续墙与土共同作用的三维有限元方法,研究了墙端铰接和墙端自由两种边界条件对等刚度及变刚度墙体内力与变形的影响,计算结果表明,建议的理论计算方法与模型试验结果吻合较好。通过与模型试验实测值的对比,指出了以往采用平面有限元进行分析的方法的不足,并重点分析了墙端铰接对墙体横向弯矩的影响,研究结果表明,三维变形产生的横向弯矩是可观的,必须加以考虑。  相似文献   

16.
刘庭金  周书扬  蔡仁贤 《岩土力学》2014,35(Z2):370-378
受邻近的深基坑施工影响,某地铁出入口结构出现了整体倾斜、变形缝部位水平错位以及密封胶和衬垫板脱落等严重病害,可能危及到行人安全。为从中吸取教训,为今后类似的地铁安全保护工程实践提供参考,详细介绍该出入口结构病害事故案例:主要包括相关工程概况,如出入口结构、南侧深基坑的设计和工程地质条件;归纳总结了出入口结构的主要病害情况;综合出入口场地周边的施工情况、出入口结构和基坑位移监测数据、地连墙施工和基坑开挖的三维模拟分析、地连墙施工扰动预应力锚索的概念分析和数值模拟分析以及水位下降诱发出入口结构沉降的计算分析,探讨了诱发出入口结构病害的主要原因;从地铁保护角度出发,总结了事故教训。  相似文献   

17.
Finite-element modeling of a complex deep excavation in Shanghai   总被引:2,自引:0,他引:2  
The excavation of the north square underground shopping center of Shanghai South Railway Station is a complex deep excavation using the top-down construction method. The excavation has a considerable size and is close to the operating Metro Lines. In order to predict the performance of the excavation more accurately, 3D finite-element analyses are conducted to simulate the construction of this complex excavation. The effects of the anisotropic soil stiffness, the adjacent excavation, and zone excavation on the wall deformation are investigated. It is shown that the numerical simulation with anisotropic soil stiffness yields a more reasonable prediction of the wall deflection than the case with isotropic soil stiffness. The deformation of the shared diaphragm wall between two excavations is influenced by the construction sequence of the two excavations. The zoned excavation can greatly reduce the diaphragm wall deformation. However, only the zoned excavation at the first excavation stage affects the deformation of the walls significantly. When the depth of the excavation increases, the zoned excavation has minor effect on the deformation of diaphragm walls.  相似文献   

18.
以某软土地区深基坑开挖为背景,运用有限元方法计算模拟了基坑开挖的不同阶段,分析不同工况下基坑及周围土体的变形和受力情况,并对不同施工方式下基坑变形和受力进行了对比分析。数值分析表明软土地区深基坑开挖时,需采取相应的施工措施,控制基坑变形和受力,确保工程安全顺利进行。研究结论可为类似工程提供借鉴与参考。  相似文献   

19.
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   

20.
开挖卸荷状态下深基坑变形特性研究   总被引:1,自引:0,他引:1  
陈昆  闫澍旺  孙立强  王亚雯 《岩土力学》2016,37(4):1075-1082
深基坑开挖时因为卸荷作用会引起土体强度一定程度的降低,土体强度的降低会引起支护结构上土压力的变化,利用卸荷前土体强度指标进行土压力计算势必会小于实际情况,从而导致土体及支护结构变形计算值与实测值有一定的偏差。在深基坑开挖时,仅采用施工监测等手段进行事中控制是不够的,必须预先对变形值的发展规律做出模拟和预测。为探索深基坑开挖时,卸荷作用对基底土体和侧向土体强度特性和变形特性的影响规律,结合天津富力响锣湾大型基坑开挖,对开挖过程中土体基底回弹情况、支护结构以及周边土体的变形情况进行了全过程监测,利用试验结果数据计算出天津市富力响锣湾大型基坑开挖项目的卸荷强度参数,为后续数值模拟计算参数的选取提供了依据;利用ABAQUS有限元软件建立了三维数值模型,分别采用原状土的强度参数和卸荷参数对开挖过程中土体基底回弹、支护结构以及周边土体的变形情况进行了模拟,研究了两种情况下土体基底回弹、支护结构以及周边土体的变形规律,并将有限元模拟结果与监测结果进行了对比。研究发现,本工程土体卸荷后的扰动区在基底以下3~4 m范围,强度折减可达到20%~35%,根据卸荷比确定了周边土体强度折减为10%~15%;有限元模拟结果与实测值基本一致。通过分析可以看到,考虑基坑开挖卸荷作用是符合工程实际情况的,因此,建议在深基坑开挖设计时考虑土体的卸荷效应。该分析方法可为同类深基坑设计提供参考。  相似文献   

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