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首页> 外文期刊>Environmental Earth Sciences >Surface settlement predictions for Istanbul Metro tunnels excavated by EPB-TBM
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Surface settlement predictions for Istanbul Metro tunnels excavated by EPB-TBM

机译:EPB-TBM开挖的伊斯坦布尔地铁隧道的地表沉降预测

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In this study, short-term surface settlements are predicted for twin tunnels, which are to be excavated in the chainage of 0 + 850 to 0 + 900 m between the Esenler and Kirazlı stations of the Istanbul Metro line, which is 4 km in length. The total length of the excavation line is 21.2 km between Esenler and Basaksehir. Tunnels are excavated by employing two earth pressure balance (EPB) tunnel boring machines (TBMs) that have twin tubes of 6.5 m diameter and with 14 m distance from center to center. The TBM in the right tube follows about 100 m behind the other tube. Segmental lining of 1.4 m length is currently employed as the final support. Settlement predictions are performed with finite element method by using Plaxis finite element program. Excavation, ground support and face support steps in FEM analyses are simulated as applied in the field. Predictions are performed for a typical geological zone, which is considered as critical in terms of surface settlement. Geology in the study area is composed of fill, very stiff clay, dense sand, very dense sand and hard clay, respectively, starting from the surface. In addition to finite element modeling, the surface settlements are also predicted by using semi-theoretical (semi-empirical) and analytical methods. The results indicate that the FE model predicts well the short-term surface settlements for a given volume loss value. The results of semi-theoretical and analytical methods are found to be in good agreement with the FE model. The results of predictions are compared and verified by field measurements. It is suggested that grouting of the excavation void should be performed as fast as possible after excavation of a section as a precaution against surface settlements during excavation. Face pressure of the TBMs should be closely monitored and adjusted for different zones.
机译:在这项研究中,预测了双线隧道的短期地面沉降,将在伊斯坦布尔地铁线的Esenler和Kirazlı站之间以0 + 850至0 + 900 m的距离进行挖掘,长度为4 km 。埃森勒(Esenler)和巴萨克西希尔(Basaksehir)之间的挖掘线总长度为21.2公里。隧道是通过使用两台土压平衡(EPB)隧道掘进机(TBM)开挖的,该掘进机具有直径为6.5 m的双管并且中心到中心的距离为14 m。右管中的TBM跟在另一根管之后约100 m。目前采用1.4米长的分段衬砌作为最终支撑。通过使用Plaxis有限元程序,使用有限元方法进行沉降预测。有限元分析中的开挖,地面支撑和面部支撑步骤均在现场进行了模拟。对典型的地质区域进行预测,就地表沉降而言,这是至关重要的。研究区的地质从地表开始,分别由填土,非常坚硬的粘土,致密的沙子,非常致密的沙子和坚硬的粘土组成。除了有限元建模外,还可以使用半理论(半经验)和分析方法来预测表面沉降。结果表明,有限元模型可以很好地预测给定体积损失值下的短期表面沉降。发现半理论和分析方法的结果与有限元模型非常吻合。预测结果通过现场测量进行比较和验证。建议在开挖断面后尽可能快地对开挖空洞进行灌浆,以防开挖过程中地表沉降。隧道掘进机的面压应密切监测并针对不同区域进行调整。

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