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Three-dimensional numerical back-analysis of a monitored deep excavation retained by strutted diaphragm walls

机译:支撑式连续墙连续监测的深基坑的三维数值反分析

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The urban development often requires the use of the underground space and the number of deep excavation pits in city centers is increasing every year. To minimize the effects of excavations on adjacent structures, it is becoming increasingly important to estimate not only the lateral displacement of retaining walls but also the movement of the retained soil. Empirical methods have been developed on the basis of experimental data as to define the displacements field induced by excavation in greenfield hypothesis. However, numerical analyses can be used when more complex situations have to be analyzed. A case study of interaction between a monitored deep excavation and existing buildings is presented in this paper. The Saint-Agne subway station of Toulouse (France) new line B has been realized with a diaphragm wall supported by up to three levels of steel struts and has been built in an overconsolidated molassic geological context. The set of measurements obtained with different monitoring devices have been compared with the 3D numerical analysis using a finite difference code in which the dewatering is taken into account through an uncoupled flow-mechanical calculation. A good agreement is observed between the numerical results and the monitoring data. The model also gives an insight on the 3D behaviour of the excavation and its impact on nearby structures. Short remarks regarding the prediction of the excavation behavior by means of 2D compared to 3D numerical analysis results are briefly issued.
机译:城市发展常常需要利用地下空间,并且城市中心的深基坑数量每年都在增加。为了使开挖对相邻结构的影响最小化,不仅估算挡土墙的横向位移而且估算挡土的运动也变得越来越重要。在实验数据的基础上开发了经验方法,以定义在未开发的假设中开挖引起的位移场。但是,当必须分析更复杂的情况时,可以使用数值分析。本文介绍了一个受监控的深基坑与现有建筑物之间相互作用的案例研究。法国图卢兹新线B的Saint-Agne地铁站实现了隔板墙,该隔板墙由多达三层的钢撑杆支撑,并且是在过度固结的黏液地质环境中建造的。使用不同的监控设备获得的一组测量值已与使用有限差分代码的3D数值分析进行了比较,其中通过无耦合的流-机械计算考虑了脱水。数值结果和监测数据之间观察到很好的一致性。该模型还可以洞悉挖掘的3D行为及其对附近结构的影响。简要介绍了有关通过2D与3D数值分析结果进行的开挖行为预测的简短评论。

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