土工基础 ›› 2021, Vol. 35 ›› Issue (4): 468-471.

• 专题论述 • 上一篇    下一篇

桥下U型槽基坑开挖对邻近桥梁桩基变形影响分析研究

沈建芳1,杨兰强2,王国权2,孙宝生2,李佳明2   

  1. (1.宁波市鄞城集团有限责任公司,浙江宁波 315010;2.宁波市城建设计研究院有限公司,浙江宁波 315010)
  • 收稿日期:2020-05-05 修回日期:2020-05-18 出版日期:2021-08-31 发布日期:2021-08-19
  • 作者简介:沈建芳(1982-),男,高级工程师,研究方向为市政(园林)工程管理。

Effect of Trench Excavation on the Deformation of Adjacent Bridge Pile Foundations

SHEN Jianfang1, YANG Lanqiang2, WANG Guoquan2, SUN Baosheng2, LI Jiaming2   

  1. (1.Ningbo Yincheng Group Co. Ltd., Ningbo 315010;
    2.Ningbo Urban Construction Design & Research Institute Co. Ltd., Ningbo 315010)
  • Received:2020-05-05 Revised:2020-05-18 Online:2021-08-31 Published:2021-08-19

摘要: 深基坑开挖必将引起周围土体中孔隙水压力和土压力场的改变,导致周围土体变形,从而对其周围环境产生较大影响,严重的还会导致桥梁桩基倾斜、开裂甚至破坏。目前U型槽基坑对邻近桥梁桩基变形影响理论发展尚不完善,有必要大量积累这方面数据研究。基于宁波软土地区U型槽基坑邻近鄞县大桥施工的工程实例,采用MIDAS GTS NX三维有限元数值模拟,结合现场监测分析,研究了U型槽基坑对邻近桥梁桩基的变形影响。研究表明,采用MJS工法桩内插H型钢+一道混凝土内支撑的支护方案在软土深基坑变形控制方面起了良好效果。在土体本构模型选取、土体参数取值合适的情况下,采用三维有限元分析评估软土深基坑对周围环境变形影响是一种较为有效的手段。

关键词: 桥下, U型槽基坑, 变形, 桥梁桩基, 数值模拟, 监测

Abstract: The deep excavation activities will induce the change of pore water pressure and earth pressure fields in the surrounding soils, which might lead to the deformation of the surrounding soil. Therefore, the excavation has a significant impact on the surrounding environment, which will induce the excessive tilting, cracking and even structural damage of the pile supported bridge foundations. Currently, the analytical method for the effect of trench excavation on the adjacent pile supported bridge foundations is not clearly defined so that data collection of the construction monitoring becomes important. This paper presents a case history of a trench excavation near the pile supported bridge foundations in Yincheng of Ningbo soft soils. The effect of the trench excavation on the adjacent bridge foundations was simulated by the three dimensional finite element method using MIDAS GTS NX software and the numerical results were compared with the construction monitoring data. The results indicated that, inserting a hot rolled steel H beams into the soil-cement mixed columns formed by the Metro Jetting System (MJS) plus one row of reinforced concrete waler beam has a good performance in controlling the lateral deflection of the supporting structure and minimizing deformation of the adjacent soils. With the appropriate soil constitutive model and other numerical parameters, using the three-dimensional finite element method for simulating the effect of trench excavation on the adjacent bride structure is effective.

Key words: Under the Bridge, Trench Excavation, Deformation, Pile Supported Bridge Foundation, Numerical Simulation, Construction Monitoring

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