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Performance of a Deep Excavation and Its Effect on Adjacent Tunnels in Shanghai Soft Clay

机译:上海软土深基坑施工性能及其对邻近隧道的影响

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摘要

A 267-m-long, 54-m-wide, and 14.9-16.4-m-deep multipropped deep excavation with three cross walls in Shanghai soft clay was constructed at a side of an existing metro station. To investigate the performance of this deep excavation and the effect of this deep excavation on adjacent metro station and shield tunnels, the ground deformation and structure responses were extensively monitored. Based on the field observations, the deflections and vertical movements of diaphragm walls, surface settlements, vertical and horizontal displacements of the up track and the down track within the station and nearby shield tunnels, as well as tunnel convergence were extensively analyzed. By adopting cross walls, jet grouting and large dimension concrete struts, the measured maximum lateral wall deflection and ground deformation were much smaller than those at other sites without installing cross walls in Shanghai soft clay. The maximum excavation-induced lateral wall movements and ground settlement behind the retaining wall were 0.11% He (final excavation depth) and 0.12% He, respectively. Because of stress relief resulting from the deep excavation, the metro station experienced heave with a maximum value of 9.6mm. Due to horizontal stress relief resulting from the adjacent basement excavation, the existing tunnel moved as much as 5.5mm toward the basement. Affected by the horizontal stress reduction around the tunnel lining, the existing tunnel became horizontally elongated by up to 4.9mm.
机译:在上海地铁的一侧,建造了一个长267米,宽54米,深14.9-16.4-m的多支撑深开挖技术,该技术具有三个软墙。为了研究该深基坑的性能以及该深基坑对邻近地铁站和盾构隧道的影响,对地面变形和结构响应进行了广泛的监测。根据现场观察,对车站和附近盾构隧道内隔板墙的挠度和竖向运动,表面沉降,上,下轨道的垂直和水平位移以及隧道收敛性进行了广泛的分析。通过采用横墙,喷射灌浆和大尺寸混凝土支柱,所测得的最大侧壁挠度和地面变形要比在上海软黏土中未安装横墙的其他地方要小得多。开挖引起的最大侧壁移动和挡土墙后面的地面沉降分别为0.11%He(最终开挖深度)和0.12%He。由于深层开挖可减轻应力,因此地铁站经历了最大9.6mm的升沉。由于相邻地下室开挖产生的水平应力释放,现有隧道向地下室移动了5.5mm。受隧道衬砌周围水平应力减小的影响,现有隧道在水平方向上拉长了4.9mm。

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