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A new multi-graph approach for selecting the sequential excavation method of civil tunnels

机译:一种选择民用隧道顺序挖掘方法的新型多图形方法

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摘要

Growth of urban population, traffic congestion and global warming emissions, have caused the experts to design and construct large span tunnels even in the complex geotechnical conditions where the selection of tunnel excavation method in view of its effect on the stability on the one hand and the cost, allocation of the resources, and project scheduling on the other hand are of vital significance. Two methods of Hoek (2001) and Yu and Chern (2007) have been proposed to predict the sequential excavation method so far. Nevertheless, the cornparison made among the results pertaining to the application of these methods with actual cases, indicates that there is no more accurate method for predicting the excavation method. This study includes a practical multigraph, based on some parameters such as failure strain, modified secant modulus, strength factor and the tunnel span to determine the sequential excavation method of the tunnels. The comparison made on the predicted results using the proposed multi-graph in 21 constructed and/or under construction tunnels suggests that the accuracy of the proposed method is 15% and 47% more than that of the previous methods. In addition, the tunnel stability status, type of probable failure and the supporting system can be foreseen making use of the proposed multi-graph. The proposed method is an efficient tool for selecting the sequential excavation method (SEM) and predicting the ground behavior in the primary phase of design of tunnels and also during the excavation.
机译:城市人口的增长,交通拥堵和全球变暖排放,使专家甚至在复杂的岩土工程中设计和构建大跨度隧道,鉴于其对一方面的稳定性的影响和隧道挖掘方法成本,资源分配和另一方面的项目调度具有至关重要的意义。已经提出了两种Hoek(2001)和Yu和Chern(2007)的方法,以预测到目前为止的顺序挖掘方法。然而,在与实际情况下,与应用这些方法有关的结果的玉米酰胺表明,没有更准确的方法来预测挖掘方法。该研究包括一种实用的多粘土,基于一些参数,例如失效应变,修改的SECANT模量,强度因子和隧道跨度,以确定隧道的顺序挖掘方法。在建造和/或建筑隧道中使用所提出的多曲线图对预测结果进行了比较表明,所提出的方法的准确性为15%,比以前的方法的准确性为47%。此外,可以预见使用所提出的多图形,可以预见隧道稳定性状态,可能的故障类型和支撑系统。该方法是用于选择顺序挖掘方法(SEM)的有效工具,并在挖掘过程中预测隧道设计的主要阶段中的地面行为。

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