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1.
The main purpose of this study was to provide a three-dimensional numerical model, which would allow the tunnel lining behaviour and the displacement field surrounding the tunnel to be evaluated. Most of the processes that occur during mechanized excavation have been simulated in this model. The influence of the lining joint pattern, including segmental lining joints and their connections, has in particular been taken into consideration. The impact of the processes during mechanized excavation, such as the grouting pressure and the jacking forces in the structural forces induced in the tunnel lining, has been presented. These values depend on the tunnel advancement. However, a negligible influence of the joint pattern on the ground displacement field surrounding the tunnel has been observed. Generally, a variation in the structural forces in successive rings along the tunnel axis has been found in a staggered segmental lining, indicating the necessity of simulating the joints in the tunnel lining and using a full three-dimensional numerical model to obtain an accurate estimation. In addition, the considerable influence of the coupling effect between successive rings on the lining behaviour has been highlighted.  相似文献   

2.
In this technical note, a consistent finite element formulation of the Hyperstatic Reaction Method (HRM) for tunnel linings design is proposed by introducing a variational consistently linearized formulation. It permits to consider a nonlinear interaction between a lining structure and the surrounding ground. Recent advances of the HRM in regard to the consideration of the nonlinear response of the segmented tunnel lining exposed to design loads use an iterative algorithm for solving the nonlinear system of equations. In the proposed Variationally consistent Hyperstatic Reaction Method (VHRM), a distributed nonlinear spring model representing the interaction between the lining and the ground soils is considered in a variationally consistent format. Computing the tangential spring stiffness via consistent linearization, and using Newton-Raphson iteration, requires significantly smaller number of iterations as compared to the original HRM model based on nodal springs. Furthermore, the method is applicable for simulations using solid finite elements (2D and 3D), as well as beam or finite shell elements, respectively.  相似文献   

3.
This paper presents an analytical solution for the prediction of internal forces and displacements of a jointed segmental precast circular tunnel lining. The effects of joint stiffness on the performance of the tunnel lining are discussed. The ‘force method’ is used to determine the internal forces and displacements of jointed tunnel lining. Five shield‐driven tunnel cases are adopted to study the effects of joint stiffness, soil resistance, joint distribution and joint number on the internal forces and displacements of circular tunnels. Laboratory model tests are conducted to verify the proposed analytical solution. Copyright © 2001 John Wiley & Sons, Ltd.  相似文献   

4.
Tunnel excavation is a three-dimensional (3D) problem. However, despite recent advances in computing resources, 3D models are still computationally inefficient and two-dimensional (2D) simulations are therefore often used. Modelling the tunnelling process in a 2D plane strain analysis requires a specific approach that allows a 3D tunnelling effect to be taken into consideration. As far as the urban tunnels are concerned, most cases reported in the literature have focused on estimating the applicability of these equivalent approaches that are based on the evaluation of the settlement that develops on the ground surface, without considering the influence of segment joints. The main objective of this study was to provide a 2D numerical investigation to highlight the influence of two equivalent approaches, that is, the convergence-confinement method (CCM) and the volume loss method (VLM), on the behaviour of a tunnel built in an urban area, in terms of not only the surface settlement but also the structural lining forces, taking into account the effect of segment joints. A technique that can be used to simulate the tunnel wall displacement process, based on the principles of the VLM, has been developed using the FLAC3D finite difference program (Itasca in FLAC fast Lagrangian analysis of continua, version 4.0; User’s manual, http.itascacg.com, 2009). A comparison with 3D numerical results has been introduced to estimate the precision of these 2D equivalent approaches. The results have shown a significant influence of the tunnel boundary deconfinement technique and segment joints on the tunnel lining behaviour and surface settlements. The structural forces obtained by means of the CCM are often smaller than those determined with the VLM for the same surface settlement. Generally, the structural lining forces determined by the CCM are in better agreement with the 3D numerical results than the ones obtained with the VLM. However, in order to obtain an accurate estimation of the structural forces, the impact of the construction loads during tunnelling should be taken into account.  相似文献   

5.
This paper presents a new analytical solution to the circular segmental tunnel lining subjected to overburden and surrounding earth pressures. The governing equations are derived by adopting the curved Euler beam theory and the principle of minimum potential energy. Based on the state space method, the displacements and the relevant energy-conjugated internal forces are treated as the fundamental unknown state vector and can be obtained by solving the state function. The inter-segment joints on the lining are modeled by a set of linear springs, including shear, compression, and rotation. The presented method allows for the arbitrary distribution of the segmented joints and loads along the circumferential direction. The most striking advantages of the proposed method include the rigid body displacement treatment, lining-displacement-dependent soil reaction, and internal force direction dependency of the joint stiffness. Using this method, the displacements and internal forces of the entire lining can be obtained conveniently and simultaneously under the arbitrary loading and joint distribution conditions. The verification of the analytical solutions is provided by several examples.  相似文献   

6.
考虑接头力学特性的盾构隧道衬砌结构计算方法研究   总被引:4,自引:0,他引:4  
张冬梅  樊振宇  黄宏伟 《岩土力学》2010,31(8):2546-2552
基于盾构隧道衬砌结构接头的构造特征,建立了接头的力学模型,将接头位置管片间的相互作用离散为一系列由剪切弹簧和法向弹簧组成的组合弹簧,根据得到的节点弹簧应力或法向位移在计算过程中动态调整弹簧刚度参数,将接头模型应用到衬砌结构计算中。该方法可以综合考虑衬砌结构的横向和纵向结构性能,计算管片和接头的内力与变形以及接缝的张开量。采用上海长江隧道衬砌结构整环试验结果对计算模型进行了验证,结果表明该模型能比较合理地模拟衬砌结构的变形特性。  相似文献   

7.
8.
刘扬  王明洋  李杰 《岩土力学》2014,35(4):1056-1062
盾构隧道衬砌由于各种类型接头的存在而与整体式衬砌的力学特性存在较大差异。将盾构隧道衬砌结构看作由弹塑性铰链连接的刚性管片组成,考虑围岩介质的黏弹性,提出了爆炸地震波作用下盾构隧道动力分析的简化计算方法。采用该方法对南京地铁盾构段典型横断面进行了动力分析,研究了爆炸地震波入射角度、围岩介质特性及管片厚度对结构受力与变形的影响规律。分析结果表明:波入射角度对盾构隧道有很大影响,斜入射时结构的动力响应要大于垂直入射时结构的动力响应;围岩介质等级越高,围岩对隧道结构的约束越强,隧道的抗爆性能越好;管片厚度的增大会增大结构的内力,合理设置管片厚度有利于提高盾构隧道抗爆性能。  相似文献   

9.
盾构隧道衬砌结构受力分析的梁—弹簧系统模型   总被引:44,自引:6,他引:38  
盾构隧道衬砌结构由若干管片及其间的连接螺栓组成。在其断面受力的工程设计中,目前普遍采用梁-弹簧系统模型来模拟其受力性态。其中,梁可分成直梁和曲梁两类。本文在考虑弹簧刚度的轴向、切向和转动效应的同时,从卡氏(Castigliano)第二定理出发,给出了梁-弹簧模型的矩阵式,并论证了直梁-弹簧模型与曲梁-弹簧模型的一致性关系。在数值模拟计算过程中,还考虑了地层反作用力非线性情形和管片接头转动刚度正、负弯矩时的非对称性问题。  相似文献   

10.
Measurements on a 14.5‐m diameter bored tunnel have shown that the mechanised assembly of a segmented tunnel lining results in a permanent longitudinal bending moment in the tunnel lining. An analytical model for the beam action of the tunnel lining during the construction phase of bored tunnels is presented. The model incorporates many of the essentials in staged beam construction. It takes into account the influence of forces from the TBM, the loading of the tunnel lining by the grout in the liquid phase, and linear elastic properties of the tunnel lining and soil. Calculations are compared with measurements at the Groene Hart Tunnel (GHT), 20 km south of Amsterdam: the bending moment curve and vertical inclination of tunnel lining segments were compared. The measured bending moment curve is well reproduced. The measured vertical inclination of the lining segments is found to be governed by the beam action of the tunnel lining plus the influence of shear force in the lining. Copyright © 2011 John Wiley & Sons, Ltd.  相似文献   

11.
盾构隧道管片衬砌的平板壳-弹性铰-地基系统模型   总被引:8,自引:3,他引:5  
胡志平  罗丽娟  蔡志勇 《岩土力学》2005,26(9):1403-1408
从Reissner-Mindlin板单元入手,研究了盾构隧道管片衬砌结构之间的连接特征及土层与管片衬砌结构的共同作用,提出了盾构隧道管片衬砌结构的平板壳-弹性铰-地基系统模型,在此基础上研制了相应的有限元计算程序。该模型考虑了管片衬砌本身的弯曲、剪切和薄膜作用,考虑了纵向接缝在正负弯矩作用下的转动刚度差异和环向结缝对结构刚度的削弱作用,以及土层与衬砌结构的共同作用。能解决盾构隧道管片衬砌结构的三维受力分析,并能计算出结构的内力和变形,弥补了二维计算模型的某些不足。验证了程序的可靠性,最后给出了工程算例的三维计算分析结果。  相似文献   

12.
Summary The mechanical behaviour of a shotcrete lining is analysed in this paper using the convergence-confinement approach. A calculation procedure is presented which is able to provide the reaction curve of a lining with increasing stiffness, by taking into account the variability due to time of the shotcrete stiffness and strength, as well as the face advancement rate. The proposed procedure is also able to provide the change of the safety factor of the lining in time. This results to be a very useful tool for understanding the behaviour of this widely used support and for assigning its thickness to guarantee stability (also in transient conditions), with a known safety factor, during tunnel excavation. Received May 25, 2001; accepted July 18, 2002; Published online January 21, 2003 Acknowledgements The author would like to thank Prof. S. Pelizza and Dr. S. Xu for the help given during the preparation of this paper. The help of the Editor G. Barla is also acknowledged. Authors' address: Dr. P. P. Oreste, Department of Earth Resources and Land, Politecnics di Torino, corso Duca degli Abruzzi 24, 1-10129 Torino, Italy; e-mail: oreste@polito.it  相似文献   

13.
盾构法隧道衬砌施工阶段受力特性的三维有限元模拟   总被引:5,自引:1,他引:4  
拼装衬砌是盾构隧道主要承重结构,其受力性能的好坏直接影响到隧道安全,因此,正确分析拼装衬砌的受力特征,对于衬砌的合理设计非常重要。而且,施工阶段作用在盾构衬砌的荷载与使用阶段相比存在很大差异。通过运用可以考虑接触问题的三维有限元对连续模型及通、错缝拼装的隧道衬砌在施工阶段的受力性能进行了分析,得出衬砌的应力变形规律,为盾构隧道衬砌的设计提供有益的参考。  相似文献   

14.
盾构衬砌管片土压力反分析研究   总被引:3,自引:0,他引:3  
钟小春  朱伟 《岩土力学》2006,27(10):1743-1748
作用在管片上的土压力是影响管片设计的关键因素之一。目前松弛土压力的计算理论存在较多假定,与实际受力状态存在很大的差异,而且由于壁后注浆使得盾构隧道管片土压力实测比较困难,普遍存在土压力实测数据可靠性不高的问题。针对以上问题,建立了一种管片土压力反演分析方法,根据相对易于测定的管片内力实测数据,采用最优化方法反演作用在管片上的土压力的大小和分布。反演计算结果表明,深埋与浅埋条件下隧道土压力有较大的不同,且与目前设计土压力假定的分布也有很大的区别。  相似文献   

15.
叶超  肖明  杨亚玲 《岩土力学》2008,29(Z1):21-25
针对地震作用下的深埋多岔圆形调压井,采用三维非线性有限元对其洞室开挖及衬砌结构受力特性进行了计算分析。引入岩石弹塑性损伤本构关系模拟地下调压井洞室的开挖效应;基于模拟结构支护的隐式锚杆、锚索单元,提出了复杂体型的调压井洞室开挖支护及衬砌开裂的计算方法;采用波动场拟静法对地震波作用下混凝土衬砌结构受力、变形特性进行了计算,给出了衬砌开裂的裂缝宽度和结构配筋的计算公式。通过小湾水电站调压井的工程实例计算,分析了空间多岔调压井衬砌结构在地震作用下的变形、开裂特性和应力分布规律,验证了模型的合理性与计算方法的可行性,为强震地区大型复杂调压井结构设计施工和安全校核提供了新思路和参考依据。  相似文献   

16.
闫高明  申玉生  高波  郑清  范凯祥  黄海峰 《岩土力学》2019,40(11):4450-4458
数次大地震震害调查表明,隧道穿越断层处是受地震破坏较为严重的区域。为此,基于地震动能量的传播与释放特征,建立了一种穿越断层隧道结构抗减震的设计理念,并提出了一种穿越断层隧道节段接头形式。以跨断层龙溪隧道为依托,采用振动台模型试验研究了单一错动方式与断层错动-震动综合加载方式下带有接头的衬砌结构响应。研究结果证明:强震作用下,地震波对穿越断层隧道的影响是不可忽略的,断层错动-震动综合加载方式是合理的;新型接头能够自身适应性变形协调减轻隧道结构震害,节段间接头的设置改变了隧道的变形形态,提高隧道整体抗震能力;同时减小了衬砌的环向破坏,消弱了节段间地震力的传递,实现了衬砌震害的局部化。由于接头的设置,上盘隧道结构震害集中在距断层1.8倍洞径的范围内,下盘处隧道衬砌震害集中在距断层1.2倍洞径范围内;上盘的衬砌震害主要是由错动-震动联合作用造成的,而下盘衬砌震害主要受地震动的影响。  相似文献   

17.
针对有压盾构隧道中接缝水力劣化所引发的内外水力交互渗流问题,基于水力开度理论,通过数值和解析方法研究局部渗流下隧道衬砌与周围地层的渗流特性和力学响应。结果表明:基于镜像法推导的衬砌隧洞多点渗漏下渗流场解析解与数值解吻合良好,验证了给出的局部渗漏数值模型的有效性;局部外水内渗与内水外渗诱发的衬砌与地层共同作用存在较大差异,前者导致局部孔隙水压力降低引起土体挤压衬砌,衬砌轴力减小而弯矩增大从而产生衬砌外凸,后者则相反;多点局部渗漏对渗流场和衬砌响应的影响存在耦合作用,当内水压接近地层水头时可能出现外水内渗与内水外渗并存的特殊水力交互情况;地层渗透系数对局部渗漏行为的影响较大,复合地层下当局部渗漏发生于高渗透性地层时,其诱发的衬砌响应不显著,当渗漏处于下部低渗透性地层时,在地层交界面存在渗流折射现象,上部高渗透性地层起到补(排)水作用。  相似文献   

18.
采用FLAC3D软件建立了交叉隧道的三维有限差分模型,以人工数定激励力模拟列车荷载,计算列车动荷载作用下土体的变形和应力。采用修正动偏应力长期沉降计算模型,结合分层总和法计算软土的沉降,预测交叉隧道的长期沉降规律。分析3种不同行车工况下地基长期沉降,工况1为一辆列车单独通过1#隧道,工况2为一辆列车单独通过2#隧道,工况3为两辆列车同时通过1#和2#隧道。对比不同的列车行驶速度、隧道衬砌刚度及厚度对隧道地基的长期影响。结果表明,由列车荷载引起的地基沉降主要集中在距隧道中心轴20 m范围内;在工况3下土体沉降大于工况1、2沉降之和;车速越快,沉降越小;衬砌刚度和厚度越小,沉降越大,且衬砌厚度对沉降的影响较大,衬砌刚度影响较小。  相似文献   

19.
盾构衬砌管片接头力学分析及双直线刚度模型研究   总被引:8,自引:2,他引:6  
朱伟  钟小春  秦建设 《岩土力学》2006,27(12):2154-2158
盾构管片接头弯曲刚度K? 是盾构衬砌结构计算中的一个重要参数。根据管片接头构造特征,在传力衬垫和弹性密封橡胶试验资料的基础上,对管片接头进行受力分析,得到管片接头弯曲刚度与接头内力的非线性关系。为了应用方便,建立了实用的管片接头弯曲刚度的双直线模型。该接头刚度模型为梁-弹簧模型法和修正惯用法中的关键参数确定提供了基础,管片的内力计算也更加合理。  相似文献   

20.
盾构隧道衬砌CAD软件的设计及应用   总被引:1,自引:1,他引:0  
基于荷载-结构法并采用面向对象的设计方法,介绍了盾构隧道衬砌计算机辅助设计(GeoFBA)软件编制的理论依据、软件的适用范围及特点。软件考虑了各种可能的线性和非线性模式以及规范验算方法,实现了计算的图形化输入,适用于管片通缝和错逢拼装计算。该软件已经得到了广泛的应用,为工程设计人员和科研人员提供了有力的工具,极大地提高了设计人员的生产效率。  相似文献   

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