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1.
Summary A 5360 m long road tunnel along a fjord with mountains rising steeply up to 1500 meters above sea level has recently been completed in Norway. 3 km of the tunnel was subjected to rockbursting caused by high and anisotropic stresses in the Precambrian gneisses. During the construction it was necessary to install 15 000 rock-bolts. Steelfibre reinforced shotcrete was successfylly applied for the first time to help stabilize the spalling rock. Supporting measures were only needed for the half of the tunnel closest to the fjord. 2600 m3 shotcrete was used.The paper outlines the preinvestigations and the design approach used for tunnels subjected to high and anisotropic stresses, and gives information about the construction and the support works carried out. A tunnel mapping system is described together with a classification of rockbursting activity in tunnels. Stresses in the rock were calculated by the use of finite element models and measured with doorstopper cells and the CSIR three-dimensional gauge. Comparisons of calculated and measured stresses are carried out.Rockbursting activity as observed along the tunnel is related to the estimated and observed stresses as well as to the properties of the rocks. Simple classification systems are used to correlate the results. Experiences from the use of the support are given.  相似文献   

2.
张德华  刘士海  任少强 《岩土力学》2015,36(6):1707-1713
隧道结构的围岩-支护特征曲线理论表明,初期支护强度变化及支护时机将极大地影响隧道周围围岩的变形及应力分布。相应地,作为初期支护重要组成部分的喷射混凝土,其喷射后的强度增长变化规律及硬化速度也极大地影响着围岩的变形及应力重分布。为探明喷射混凝土的强度增长规律及其硬化速度对初期支护性能的影响,结合隧道工程实践,进行了一系列喷射混凝土现场试验,建立了喷射混凝土强度和弹性模量增长规律,确定了喷射混凝土硬化速度对初期支护性能的影响规律。分析表明:(1)隧道喷射混凝土早期强度发展较快、较平稳,24 h抗压强度平均值为6.4 MPa,48 h抗压强度平均值为11.4 MPa。(2)在软弱围岩中提高喷混凝土的早期强度十分重要,是控制围岩变形和稳定的关键,喷混凝土早期强度越大,隧道初期支护作用越明显。(3)喷混凝土硬化速度对控制拱顶沉降变形效果较显著。与慢速硬化相比,喷射混凝土快速硬化时拱顶沉降减少10.4%,拱脚处减小17%,边墙水平收敛减少了30.7%。(4)喷射混凝土硬化速度对控制围岩塑性变形方面差异较小。(5)应充分考虑喷射混凝土的强度硬化过程,不考虑喷射混凝土硬化速度会在一定程度上高估初期支护性能,使其相应支护结构位移明显小于考虑硬化速度时相应的结构位移。  相似文献   

3.
Displacement measurement‐based estimations of loads and utilization degrees in shotcrete tunnel shells as part of the New Austrian Tunneling Method (NATM), have become standard tools in tunnel practice; their quality, however, may crucially depend on the knowledge of the actual shotcrete composition after spraying. To shed light on this issue, we here determine, based on experimentally validated micromechanical representations of shotcrete, the hydration degree‐dependent elastic, creep, and strength properties of different shotcretes, characterized by water cement ratios (w/c) between 0.4 and 0.6, aggregate cement ratios (a/c) between 3.5 and 5, and Young's modulus of aggregates (Eagg) between 40 and 80 GPa. These properties are fed into a structural shell model of the Sieberg tunnel, and this model is subjected to displacement fields approximated from daily displacement measurements at five selected points along the shell's inner surface. Resulting stresses and forces in the tunnel shell allow for analyzing the influence of shotcrete composition on load‐level estimation in NATM tunnel shells: The magnitudes of circumferential and longitudinal normal forces increase significantly with decreasing w/c, while a/c and Eagg have the inverse and relatively minor effect. The utilization degree is virtually insensitive to changes in w/c(especially at early ages), and only slightly decreases with decreasing a/c and Eagg. The location of maximum loading is unaffected by the shotcrete composition underlying the analysis. Conclusively, location and magnitude of maximum utilization degrees are very robust estimates (not affected by limited knowledge on the shotcrete composition), whereas realistic estimation of stresses and forces does require more accurate consideration of shotcrete composition. Copyright © 2011 John Wiley & Sons, Ltd.  相似文献   

4.
陶忠平 《岩土力学》2006,27(Z2):507-510
简要地介绍了对水工地下洞室施工中对围岩不稳定体,即碎裂岩体、松动岩体、软弱结构面、楔形体结构面等围岩喷锚支护结构的作用,喷锚支护结构的使用。  相似文献   

5.
The interactions between perpendicularly crossing tunnels in the Sydney region are investigated using a full three-dimensional (3D) finite element analysis coupled with elasto-plastic material models. Special attention is paid to the effect of subsequent tunnelling on the support system, i.e. the shotcrete lining and rock bolts, of the existing tunnel. The results of the analysis show that in a region such as Sydney, with relatively high horizontal stresses, installation of the new tunnel causes the shotcrete lining of the existing tunnel to be in tension in the side facing towards the tunnel opening and in compression at the crown and invert. The pre-stressed rock bolts are usually tensioned more in the sections closest to the tunnel opening. For this particular study, if a new tunnel is driven perpendicularly beneath an existing tunnel, significant increases are induced in the bending moments in the shotcrete lining at the lateral sides of the existing tunnel and in the axial forces at its crown and invert. The increase in side bending moments causes further tensile cracking but the crown and invert stresses remain within the thresholds for both compressive failure and tensile cracking for shotcrete lining of typical concrete quality. Moreover, the driving of the new tunnel causes the tensile forces in the existing side rock bolts to increase and those in the existing crown rock bolts to decrease. In contrast, if the new tunnel is driven perpendicularly above the existing tunnel, compressive failure of the existing shotcrete lining is induced at the crown of the deeper tunnel for concrete of typical capacity and a significant tensile force increase of the existing rock bolts around the crown. It is concluded that in order to ensure the stability of the existing tunnel, local thickening is needed at the sides of the existing shotcrete lining if the shallow tunnel is installed first and local thickening is needed at the crown if the deep tunnel is installed first.  相似文献   

6.
Summary. Even though ground-support interaction in the vicinity of the tunnel face is a typical 3D problem, tunnel support design is usually based on simplified plane strain models, which are strongly dependent on the assumed degree of ground stress relief at the time of lining installation. The paper focuses on tunnels supported by shotcrete close to the face, where the interaction between the loading process and progressive hardening of the green shotcrete makes the problem time-dependent. A constitutive law characterized by the time-dependent stiffness and strength of the shotcrete is employed herein. The results of an extensive parametric study based on 3D axisymmetric models are presented in the form of non-dimensional design charts, which can provide guidance to a preliminary evaluation of convergences and support loadings. Moreover a strategy is proposed to enhance the capability of simplified design methods (2D models, Convergence-Confinement Method). This consists in a “guided estimate” of stress relief factors, which again is based on the results of 3D time-dependent analyses. Finally, by way of example, the proposed method is applied to two well-documented case-histories.  相似文献   

7.
This paper presents a practical procedure for assessing the system reliability of a rock tunnel. Three failure modes, namely, inadequate support capacity, excessive tunnel convergence, and insufficient rockbolt length, are considered and investigated using a deterministic model of ground-support interaction analysis based on the convergence–confinement method (CCM). The failure probability of each failure mode is evaluated from the first-order reliability method (FORM) and the response surface method (RSM) via an iterative procedure. The system failure probability bounds are estimated using the bimodal bounds approach suggested by Ditlevsen (1979), based on the reliability index and design point inferred from the FORM. The proposed approach is illustrated with an example of a circular rock tunnel. The computed system failure probability bounds compare favorably with those generated from Monte Carlo simulations. The results show that the relative importance of different failure modes to the system reliability of the tunnel mainly depends on the timing of support installation relative to the advancing tunnel face. It is also shown that reliability indices based on the second-order reliability method (SORM) can be used to achieve more accurate bounds on the system failure probability for nonlinear limit state surfaces. The system reliability-based design for shotcrete thickness is also demonstrated.  相似文献   

8.
Hyperstatic Reaction Method considers the interaction between the shotcrete lining and the rock mass modelling half tunnel section by beam elements connected by nodes, which can develop bending moments, axial forces and shear forces. The interaction between ground and support is represented by Winkler type springs in the nodes of the numerical model, in the normal and tangential direction. 1944 analyses were developed considering three different tunnel radius values (2.0, 4.5 and 7.0 m), three different rock types (RMR = 40, RMR = 60 and RMR = 80), three different stress ratios acting on the linings (\(K = 1, \,K = 0.5\) and \(K = 0\)), three different lining thickness values (0.1, 0.2 and 0.3 m) and three values of the average elastic modulus of the shotcrete (6000, 9000 and 12,000 MPa). Besides, also two different stiffness values of the tangential springs at nodes were considered. Results show that the lining thickness and the elastic modulus of the shotcrete have a strong influence on the bending moment values which develop inside. The maximum axial force is not practically influenced by the lining elastic modulus and thickness. Both maximum bending moments and maximum axial forces increase in a linear way with the vertical load value; tunnel radius, \(K\) and RMR values of the rock mass have also a great influence on the maximum bending moment and axial force. Besides, it is possible to note how the absence of shear interaction between the lining and the rock mass causes bending moment values in the lining higher with respect to the case where the stiffness of the tangential springs at nodes equals to half the stiffness of the normal springs. For this reason, the neglectance of the shear interaction between the lining and the tunnel wall leads to an overdesign of the SC lining.  相似文献   

9.
隧道复合式衬砌初期支护极限状态模型试验研究   总被引:1,自引:0,他引:1  
冯冀蒙  仇文革  王航 《岩土力学》2012,33(11):3345-3351
当前既有以及新建的隧道结构大多采用复合式衬砌形式,在长期使用过程中,初期支护不可避免会出现劣化甚至失效的情况,会对隧道结构整体的承载力及耐久性造成影响。通过室内模型试验,采用可劣化的石膏模型制作初期支护的各构件,对其劣化失效过程进行模拟,记录二衬结构的状态变化,再通过增加荷载确定隧道结构整体承载力的变化情况。试验结果显示,钢架和喷射混凝土层的劣化对二衬结构的影响要比锚杆劣化的影响大得多,然而单纯的初期支护失效并不会造成二衬结构的破坏,且二衬结构还有较大的安全余度;初期支护构件劣化都会造成隧道结构整体承载力的降低,锚杆的影响最为明显,钢架及喷射混凝土失效对整体承载力降低影响不大。  相似文献   

10.
Determining in-situ soil or rock geotechnical properties is a difficult task for a design engineer. Back analysis is a helpful technique for evaluating soil property by considering and measuring the convergence of an underground opening. Back analysis was performed by matching numerical modeling results with the measured tunnel convergence. The main purpose of this study was to determine optimum rock mass properties using back analysis in order to suggest the best and most economical support system. Accordingly, the difference between measured and calculated convergence values was minimized by using an error function (objective function). In this paper, through the parameters obtained from back analysis, a support system based on a set consisting of shotcrete, wire mesh, and lattice girder was suggested for the Babolak water conveyance tunnel in Mazandaran, Iran. Therefore, the suggested design was based on decreasing shotcrete thickness from 25 to 20?cm and eliminating of rock bolts.  相似文献   

11.
隧道钢纤维喷射混凝土单层衬砌试验研究   总被引:4,自引:0,他引:4  
为了解决隧道施工中采用单层喷射混凝土作为隧道永久衬砌的问题,对不同钢纤维及外添加剂掺量的混凝土分别进行了抗压、抗拉、抗渗以及弯曲强度等室内试验。结果表明,在喷射混凝土中加入钢纤维材料,其抗拉、抗弯以及抗渗水性能分别提高了65.6 %、94.7 %、98.1 %;并通过现场试喷,选定符合设计要求、经济合理的配合比,在摩天岭隧道通风斜井施作了湿喷钢纤维混凝土,以单层衬砌代替原设计的复合式衬砌。工程实践证明,钢纤维湿喷混凝土,其支护强度达到了设计要求,喷射作业回弹损失量减少7 %~15 %。研究成果可为类似隧道纤维喷射混凝土单层衬砌技术的应用提供参考。  相似文献   

12.
文竞舟  张永兴  王成 《岩土力学》2011,32(8):2467-2472
利用现场监控量测的数据及时分析和评价支护结构的内力是隧道动态设计和施工的关键问题,对保证隧道施工的安全具有重要意义。根据初期支护中喷射混凝土自身特点,将喷层结构视为弹性地基曲梁,并运用弹性地基曲梁理论,通过喷射混凝土与围岩接触应力推求喷层结构内力的解析解,从而得到喷层结构的应力集中部位,方便后续制定施工安全措施。经台阶法开挖的隧道工程实例分析表明,从喷层与围岩接触应力出发来求解喷层结构内力解析式是隧道内力分析一种新的有效方法,为隧道结构的安全评估提供比较可靠的依据  相似文献   

13.
For tunnel constructed by New Austrian Tunnelling Method, the crown is the upper part of tunnel section, constructed during excavation process and supported by shotcrete. The stability of the crown has great influence on the safety of tunnel itself and the buildings above, which correlates, among others, with geometrical setup of tunnel and material properties of shotcrete and soil/rock. In this paper, aiming at analyzing the stability of shotcrete supported crown, a recently presented numerical method discontinuity layout optimization is adopted, which introduces a great amount of potential discontinuities cross over one another and provides a wide search space for efficient upper limit analysis. In the analysis, a well‐established hydration model of cementitious material is implemented for accounting the hydration of shotcrete. Then assumptions based on convergence‐confinement method are used for accounting the 3‐dimensional effect in 2‐dimensional analysis, finally providing time‐space–dependent assessments of stability of shotcrete supported crown.  相似文献   

14.
软弱围岩隧道取消系统锚杆的现场试验研究   总被引:1,自引:0,他引:1  
在软弱围岩隧道中,提出初期支护结构由钢架+喷射混凝土+钢筋网+锁脚锚杆+纵向连接筋组成,即取消系统锚杆用钢架联结处的锁脚锚杆代替。以包家山隧道为依托工程,采用现场试验的方法,选取2个试验段,进行锁脚锚杆取代系统锚杆后,有、无拱部锚杆的对比试验研究。对比试验的内容包括:隧道初期支护的净空收敛、围岩压力、钢架应力、喷射混凝土应力、锚杆轴力和纵向连接筋应力等。研究结果表明:2个试验段初期支护变形趋于稳定,结构受力安全,说明取消系统锚杆不影响初期支护结构的安全与稳定;拱部锚杆有受拉,也有受压,但受力都不大,最大拉应力仅为钢材极限强度的11.8%,其支护作用不明显;锁脚锚杆大部分受拉,最大值达到191 MPa,钢架支护作用明显,在支护体系中发挥着重要作用。取消系统锚杆减少了施工工序,降低了工程造价,缩短了工序循环时间,有利于及早封闭围岩以形成完整的支护结构。经济价值和社会效益显著。  相似文献   

15.
公路隧道型钢喷射混凝土初期支护安全评价研究   总被引:5,自引:0,他引:5  
公路隧道常采用复合式衬砌,按“新奥法”原理进行设计和施工。对于软弱围岩段,采用型钢拱架(或格栅拱架)+注浆+锚喷网联合初期支护形式,型钢喷射混凝土初期支护的安全性评价方法是实现支护动态设计的关键。对初期支护安全性评价进行系统研究,建立了型钢喷射混凝土安全性评价数值计算方法。首先,根据监测数据分析围岩最终沉降量、水平收敛值,作为围岩力学参数反演的依据;其次,采用反演的力学参数,通过地层-结构法数值计算型钢拱架喷射混凝土初期支护内力;最后,采用型钢混凝土安全系数计算方法计算和评价初期支护安全性。研究发现,型钢拱架喷射混凝土初期支护能发挥型钢强支护作用,而喷射混凝土达到设计强度后,混凝土起主要支撑作用,型钢间距对提高初期支护安全系数不显著。  相似文献   

16.
隧道喷射混凝土支护的曲线结构单元模拟   总被引:1,自引:0,他引:1  
吴洪词 《岩土力学》1998,19(1):38-44
将一种新的曲线结构单元引入到块体一弹簧算法中,对圆形断面隧道围岩表面喷射不同混凝土衬砌的支护作用机理以及开挖速度对喷射混凝上材料早期强度的影响等进行分析,得出了一些有意义的结论。  相似文献   

17.
刘志春  王梦恕 《岩土力学》2015,36(Z2):281-288
隧道对地下水环境影响科学评价一直是隧道工程界难以回避又备受困扰的技术难题之一,掌握工程因素对地下水资源流失量及水位变化的影响规律是开展地下水环境影响评价的理论基础。以350 km/h高速铁路双线隧道V级围岩“半包”防水复合式衬砌为计算原型,通过隧道瞬态渗流模型分析了地下水资源流失量及水位变化随时间的变化规律。进一步研究了工程因素中水位埋深、施工方法、施工时间、喷射混凝土厚度、喷射混凝土抗渗性能、喷射混凝土开裂渗漏、地层注浆加固方式、地层注浆加固范围、注浆体抗渗性能及隔断墙对地下水资源流失量及水位变化的影响规律。根据工程因素的影响规律,探讨了施工期及运营期地下水环境保护的控制方法和技术措施。  相似文献   

18.
Engineering classification of rock masses for the design of tunnel support   总被引:63,自引:10,他引:63  
SummaryEngineering Classification of Rock Masses for the Design of Tunnel Support An analysis of some 200 tunnel case records has revealed a useful correlation between the amount and type of permanent support and the rock mass qualityQ, with respect to tunnel stability. The numerical value ofQ ranges from 0.001 (for exceptionally poor quality squeezing-ground) up to 1000 (for exceptionally good quality rock which is practically unjointed). The rock mass qualityQ is a function of six parameters, each of which has a rating of importance, which can be estimated from surface mapping and can be updated during subsequent excavation. The six parameters are as follows; theRQD index, the number of joint sets, the roughness of the weakest joints, the degree of alteration or filling along the weakest joints, and two further parameters which account for the rock load and water inflow. In combination these parameters represent the rock block-size, the interblock shear strength, and the active stress. The proposed classification is illustrated by means of field examples and selected case records.Detailed analysis of the rock mass quality and corresponding support practice has shown that suitable permanent support can be estimated for the whole spectrum of rock qualities. This estimate is based on the rock mass quality Q, the support pressure, and the dimensions and purpose of the excavation. The support pressure appears to be a function ofQ, the joint roughness, and the number of joint sets. The latter two determine the dilatency and the degree of freedom of the rock mass.Detailed recommendations for support measures include various combinations of shotcrete, bolting, and cast concrete arches together with the appropriate bolt spacings and lengths, and the requisite thickness of shotcrete or concrete. The boundary between self supporting tunnels and those requiring some form of permanent support can be determined from the rock mass qualityQ. With 8 Figures  相似文献   

19.
Experiences gained on the building of the City Railway turning loop, Stuttgart, Section 12, are described, where the new Austrian tunneling method is used in connection with the freezing technique. The Metro-tunnel lies in leached-out gypsum marl and unleached zones, respectively.

In a section of this tunnel within the leached-out gypsum marl the excavation was protected by a frozen soil roof in order to keep away any water seepage which could be dangerous for the excavation itself and for the buildings superimposed as well The drilling for the freeze pipes, the installation and operation of the freezing system and the tunnel driving including the erection of the final support are described. A point of special interest is the application of the shotcrete method as the shotcrete has to adhere to the frozen soil and has to harden sufficiently before the hardening process is interrupted by frost penetration.  相似文献   


20.
通过抗爆模型试验,研究了爆炸平面波作用下大跨度毛洞和锚喷衬砌支护洞室的受力变形和稳定状态。介绍了模型试验原理及方法,根据试验实测数据分析了洞室围岩的受力特征、洞壁的运动变形特征、洞室的破坏形态及承载能力等。研究表明:设计工况和超载工况下,锚喷衬砌支护洞室侧墙部位垂直应力、拱顶加速度正峰值、拱顶位移峰值及残余值、洞壁环向应变峰值均明显小于毛洞;超载试验后,毛洞破坏严重,丧失了承载能力,而锚喷衬砌支护洞室破坏明显轻微,承载能力可提高约60%。  相似文献   

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