首页> 外文期刊>Computers and Geotechnics >Pile and pile group response to tunnelling using a large diameter slurry shield-Case study in Shanghai
【24h】

Pile and pile group response to tunnelling using a large diameter slurry shield-Case study in Shanghai

机译:大直径泥水盾构对桩桩群隧道的响应-以上海为例

获取原文
获取原文并翻译 | 示例
           

摘要

The study investigates the disturbance to piles and pile groups caused by multiple nearby drives of a large diameter slurry shield-driven tunnelling machine in Shanghai. The minimum distance between the slurry shield tunnel (with diameter D = 15.43 m) and the adjacent pile groups of Metro Line 3 and Yixian Elevated Road is 1 m. The nonlinear finite element (FE) software program ABAQUS was used to analyse the movement of the pile groups caused by the process of shield tunnelling. A field investigation was conducted before the multiple crossings to study the impact (movement and excess pore water pressure) on the surrounding soil and piles caused by the tunnelling process. The field investigation is divided into two sections: (ⅰ) free-field tunnelling, and (ⅱ) tunnelling close to trial piles pre-installed in the section. For the full-scale test, tunnelling variable, including slurry pressure and grouting pressure, are adjusted during construction to reduce the disturbance during tunnelling close to pile groups supporting two elevated bridges. The FE simulation of the multiple crossings includes two steps: (a) shield tunnelling along the south bound tunnel approaching the working shaft at the western bank of the Huangpu River, and passing separately between two adjacent pile groups of each bridge; (b) return tunnel passing again between the pile groups of the two bridges along the north bound tunnel. Three different FE models are generated: (1) free-field tunnelling process, (2) tunnelling close to trial piles, and (3) multiple tunnel passes adjacent to pile groups supporting the two elevated bridges. Most of the relevant factors in tunnelling are taken into consideration in the FE models including (a) slurry pressure, (b) grouting pressure, (c) grouting material hardening, and (d) soil-pile interaction.
机译:该研究调查了上海大直径泥浆盾构掘进机附近多次驱动对桩群的干扰。泥水盾构隧道(直径D = 15.43 m)与地铁3号线和义县高架道路的相邻桩群之间的最小距离为1 m。使用非线性有限元(FE)软件程序ABAQUS分析了盾构施工引起的桩群运动。在多次穿越之前进行了实地调查,以研究隧道过程对周围土壤和桩的影响(运动和孔隙水压力过大)。现场调查分为两个部分:(ⅰ)自由场隧道,和(ⅱ)在该部分中预先安装的试验桩附近的隧道。对于全尺寸测试,在施工期间调整包括泥浆压力和灌浆压力在内的隧道变量,以减少在靠近支撑两个高架桥的桩群的隧道施工中的干扰。多次穿越的有限元模拟包括两个步骤:(a)沿南界隧道的盾构隧道接近黄浦江西岸的工作竖井,并在每座桥梁的两个相邻桩群之间分别通过; (b)沿北向隧道在两座桥的桩组之间再次经过的回程隧道。生成了三种不同的有限元模型:(1)自由场隧洞过程;(2)靠近试桩的隧道;(3)与支撑两个高架桥的桩群相邻的多个隧道。在有限元模型中考虑到了隧道中的大多数相关因素,包括(a)泥浆压力,(b)灌浆压力,(c)灌浆材料硬化和(d)土桩相互作用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号