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Shanghai center project excavation induced ground surface movements and deformations

机译:上海中心工程开挖引起的地表运动和变形

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Abstract Empirical data on deep urban excavations can provide designers a significant reference basis for assessing potential deformations of the deep excavations and their impact on adjacent structures. The construction of the Shanghai Center involved excavations in excess of 33-m-deep using the top-down method at a site underlain by thick deposits of marine soft clay. A retaining system was achieved by 50-m-deep diaphragm walls with six levels of struts. During construction, a comprehensive instrumentation program lasting 14 months was conducted to monitor the behaviors of this deep circular excavation. The following main items related to ground surface movements and deformations were collected: (1) walls and circumferential soils lateral movements; (2) peripheral soil deflection in layers and ground settlements; and (3) pit basal heave. The results from the field instrumentation showed that deflections of the site were strictly controlled and had no large movements that might lead to damage to the stability of the foundation pit. The field performance of another 21cylindrical excavations in top-down method were collected to compare with this case through statistical analysis. In addition, numerical analyses were conducted to compare with the observed data. The extensively monitored data are characterized and analyzed in this paper.
机译:摘要城市深基坑的经验数据可以为设计人员评估深基坑的潜在变形及其对相邻结构的影响提供重要的参考依据。上海中心的建设涉及在一个厚厚的海洋软粘土沉积层下的场地,采用自顶向下的方法进行超过33米深的开挖。固定系统是通过50米深的隔板壁和六个支撑杆实现的。在施工过程中,进行了持续14个月的综合仪器程序,以监测这种深圆形开挖的行为。收集了以下与地表运动和变形有关的主要项目:(1)墙和周向土壤的横向运动; (2)各层和地面沉降的周边土壤挠度; (3)基坑隆起。现场仪器的结果表明,场地的挠度得到了严格控制,并且没有大的运动,这可能会损害基坑的稳定性。通过统计分析,收集了另一套采用自顶向下方法的21圆柱开挖的现场性能,以与该例进行比较。另外,进行了数值分析以与观察到的数据进行比较。本文对广泛监控的数据进行了表征和分析。

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