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EPB tunneling in cohesionless soils: A study on Tabriz Metro settlements

机译:凝聚土壤中的EPB隧道:Tabriz Metro定居点研究

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A case study of monitoring and analysis of surface settlement induced by tunneling of Tabriz metro line 2 (TML2) is presented in this paper. The TML2 single tunnel has been excavated using earth pressure balanced TBM with a cutting-wheel diameter of 9.49 m since 2015. Presented measurements of surface settlements, were collected during the construction of western part of the project (between west depot and S02 station) where the tunnel was being excavated in sand and silt, below the water table and at an average axis depth of about 16 m. Settlement readings were back-analyzed using Gaussian formula, both in longitudinal and transversal directions, in order to estimate volume loss and settlement trough width factor. In addition to settlements, face support and tail grouting pressures were monitored, providing a comprehensive description of the EPB performance. Using the gap model, volume loss prediction was carried out. Also, COB empirical method for determination of the face pressure was employed in order to compare with field monitored data. Likewise, FE simulation was used in various sections employing the code Simulia ABAQUS, to investigate the efficiency of numerical modelling for the estimating of the tunneling induced-surface settlements under such a geotechnical condition. In this regard, the main aspects of a mechanized excavation were simulated. For the studied sections, numerical simulation is not capable of reproducing the high values of insitu-measured surface settlements, applying Mohr-Coulomb constitutive law for soil. Based on results, for the mentioned case study, the range of estimated volume loss mostly varies from 0.2% to 0.7%, having an average value of 0.45%.
机译:本文介绍了塔博尔德地铁2号线2(TML2)隧道隧道诱导的表面沉降监测和分析的案例研究。 TML2单隧道采用地球压力平衡TBM挖掘,自2015年以来的切削轮直径为9.49米。在项目的西部(West Depot和S02站之间)的建造期间收集了表面沉降的测量。隧道在水台下方的沙子和淤泥中挖掘出来,平均轴深度为约16米。在纵向和横向方向上使用高斯公式进行沉降读数,以估计体积损失和沉降槽宽度因子。除了定居点外,监测面部支撑和尾部灌浆压力,提供了对EPB性能的综合描述。使用间隙模型,进行体积损耗预测。此外,采用COB用于确定面部压力的仿真方法,以便与现场监测数据进行比较。同样,在采用代码Simulia ABAQUS的各个部分中使用Fe模拟,研究了在这种岩土状况下估算隧道诱导表面沉降的数值模拟的效率。在这方面,模拟了机械化挖掘的主要方面。对于研究的部分,数值模拟不能再现Insitu测量表面沉降的高值,适用于土壤的MoHR-Coulomb本构法。基于结果,对于所述案例研究,估计体积损失范围大部分为0.2%至0.7%,平均值为0.45%。

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