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HU Yun, WANG Wei-dong, SHEN Jian. Field monitoring and analysis of stresses for dual-purpose pile wall[J]. Chinese Journal of Geotechnical Engineering, 2015, 37(zk2): 197-201. DOI: 10.11779/CJGE2015S2038
Citation: HU Yun, WANG Wei-dong, SHEN Jian. Field monitoring and analysis of stresses for dual-purpose pile wall[J]. Chinese Journal of Geotechnical Engineering, 2015, 37(zk2): 197-201. DOI: 10.11779/CJGE2015S2038

Field monitoring and analysis of stresses for dual-purpose pile wall

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  • Received Date: March 25, 2015
  • Published Date: July 24, 2015
  • The dual-purpose bored pile wall, which serves as a retaining wall in the construction period and the outside wall of the permanent underground structures, has been used in some projects. The stresses and load sharing features for this type of wall have been investigated, but field monitoring data are limited. The stresses in the dual-purpose bored pile wall for an excavation in Hongqiao District of Shanghai are monitored from the commencement of excavation to the completion of underground structures. The measured stresses agrees fairly well with the calculated results by the simplified method. In addition, most of the pore water pressures and earth pressures are undertaken by the bored piles during the entire monitoring period. Therefore, the load sharing assumption taken in the simplified method is considered to be reasonable. The dual-purpose bored pile wall has been proved to be feasible and can be widely used in similar excavations.
  • [1]
    王卫东, 沈 健. 基坑围护排桩与地下室外墙相结合的“桩墙合一”的设计与分析[J]. 岩土工程学报, 2012, 34(增刊): 303-308. (WANG Wei-dong, SHEN Jian. Design and analysis of unity of support piles and basement external walls[J]. Chinese Journal of Geotechnical Engineering, 2012, 34(S0): 303-308. (in Chinese))
    [2]
    沈 健, 王建华, 高绍武. 基于“m”法的深基坑支护结构三维分析方法[J]. 地下空间与工程学报, 2005, 1(4): 530-533. (SHEN Jian, WANG Jian-hua, GAO Shao-wu. 3-D Analysis method of retaining structure of deep excavation based on “M” Method[J]. Chinese Journal of Underground Space and Engineering, 2005, 1(4): 530-533. (in Chinese))
    [3]
    杨生贵, 杨 斌. 圆形截面钢筋混凝土桩正截面受弯承载力计算[J]. 建筑科学, 2004, 20(1): 43-46. (YANG Sheng-gui, YANG Bin. Calculat ion on bending capacity of normal round- sect ion in R. C. Pile[J]. Building Science, 2004, 20(1): 43-46. (in Chinese))
    [4]
    黄太华, 谭 萍, 王原琼. 圆形截面正截面受弯承载力计算[J]. 结构工程师, 2005, 21(5): 16-19. (HUANG Tai-hua, TAN Ping, WANG Yuan-qiong. Calculation on flexural capacity of normal section of the circular section[J]. Structural Engineers, 2005, 21(5): 16-19. (in Chinese))
    [5]
    魏巍巍, 贡金鑫, 李 龙. 使用荷载下圆形截面钢筋混凝土构件钢筋应力的计算[J]. 水利水运工程学报, 2008, 2: 29-37. (WEI Wei-wei, GONG Jin-xin, LI Long. Calculation of steel stress in reinforced concrete members with round section[J]. Hydro Science and Engineering, 2008, 2: 29-37. (in Chinese))
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