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The influence of the construction process on the deformation behaviour of diaphragm walls in soft clayey ground

机译:施工过程对软黏土地基中地下连续墙变形特性的影响

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摘要

Conventional numerical predictions of deep excavations normally neglect the construction process of the retaining structure and choose the earth pressure at rest as initial condition at the beginning of the simulation. The presented results of simulation and measurements during the construction process of the Taipei National Enterprise Center show, that such an assumption leads to an underestimation of the horizontal wall deflection, the surface ground settlements as well as the loading of the struts in case of normally to slightly over-consolidated clayey soil deposits. The stepwise installation process of the individual diaphragm wall panels results in a substantial modification of the lateral effective stresses in the adjacent ground. Especially the pouring process of the panel and the fresh concrete pressure causes a partial mobilization of the passive earth pressure and a distinct stress level increase in the upper half of the wall. As a consequence of the increased stresses prior to the pit excavation, up to 15 percent greater ground and wall movements are predicted. Moreover, the increased stress level due to the installation process of the diaphragm wall leads to substantial higher strut loadings during the excavation of the pit.
机译:深基坑的常规数值预测通常忽略了挡土结构的施工过程,并在模拟开始时选择了静止土压力作为初始条件。台北国家企业中心建设过程中的模拟和测量结果表明,这种假设会导致低估水平墙的挠度,地面沉降以及在正常情况下支柱的荷载。稍微超固结的粘土土壤沉积物。各个隔板墙板的逐步安装过程会导致相邻地面中的侧向有效应力发生重大变化。尤其是面板的浇筑过程和新的混凝土压力会引起被动土压力的部分动员,并且在墙的上半部分会明显增加应力水平。由于基坑开挖前应力增加,预计地面和墙体运动最多可增加15%。此外,由于隔膜壁的安装过程而导致的应力水平增加,导致在基坑开挖过程中出现相当高的支撑载荷。

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