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多因素影响下顶管施工引起土体变形计算研究
引用本文:焦义,梁禹,冯金勇,郑庆坂,蒋凯. 多因素影响下顶管施工引起土体变形计算研究[J]. 铁道科学与工程学报, 2021, 18(1): 192-199. DOI: 10.19713/j.cnki.43-1423/u.T20200177
作者姓名:焦义  梁禹  冯金勇  郑庆坂  蒋凯
作者单位:中铁隧道局集团建设有限公司,广西 南宁 530000;中山大学 航空航天学院,广东 深圳 518107;广西新发展交通集团有限公司,广西 南宁 530000
基金项目:广东省基础与应用基础研究基金资助项目;国家自然科学基金资助项目
摘    要:为解决圆形顶管施工穿越特殊地层(如下穿切割塑料排水板)时引起地层变形的影响分析等问题,考虑刀盘挤土效应产生的正面附加压力、顶管与土体之间非均匀分布的侧向摩擦力,因塑料排水管的切削而不能忽略的顶管机刀盘的正面摩擦力引起的地层变形,基于Mindlin解得到在顶管施工阶段地表竖向位移计算公式;最后结合顶管工程项目实例验证计算...

关 键 词:顶管  竖向位移  Mindlin解  多因素影响  非均布摩擦力

Study on soil deformation caused by pipe jacking construction with multi-factor
JIAO Yi,LIANG Yu,FENG Jinyong,ZHENG Qingban,JIANG Kai. Study on soil deformation caused by pipe jacking construction with multi-factor[J]. Journal of Railway Science and Engineering, 2021, 18(1): 192-199. DOI: 10.19713/j.cnki.43-1423/u.T20200177
Authors:JIAO Yi  LIANG Yu  FENG Jinyong  ZHENG Qingban  JIANG Kai
Affiliation:(China Railway Tunnel Group,Nanning 530000,China;School of Aeronautics and Astronautics,Sun Yat-Sen University,Shenzhen 518107,China;Guangxi Xinfazhan Communication Group Co.,Ltd.,Nanning 530000,China)
Abstract:It is important to solve the problems such as the analysis of the influence of the formation deformation caused by the circular pipe jacking construction when crossing the special formation(for example, the pipe jacking machine passes through and cuts the plastic drain pipe) in engineering. The frontal additional pressure generated by the cutter squeezing effect, non-uniformly distributed lateral friction between jacking and soil, and the frontal friction of the pipe jacking cutter that cannot be ignored due to the cutting of the plastic drain pipe are considered from the Mindlin solution. The resulting formation deformation was obtained by calculating the vertical displacement of the surface during the construction of the pipe jacking. Finally, the rationality of the calculation method was verified with an example of the pipe jacking project, and compared with the measured results. The results show that the surface settlement curve considered by multiple factors in this paper is in good agreement with the measured values in the field, which can reflect the law of vertical surface settlement during jacking of the pipe. It generally manifests as first uplift and then settlement. The maximum settlement is located about 8 m behind the excavation surface. The maximum value of uplift is located about 5 m in front of the excavation surface. Among the influencing factors, the most influential is the additional thrust on the front of the pipe jack, which accounts for about 80% of the maximum settlement deformation and about 56% of the maximum uplift deformation. Different sections were selected to analyze and compare the settlement of the soil at different depths. The sudden changes in settlement and the differences were mainly realized within 12 m on both sides of the pipe jacking axis. The settlement tank curve approximately obeys the normal distribution. The maximum soil settlements at different soil depths are directly below the pipe jacking axis. In deep soil settlement, as the distance from the pipe jacking axis increases, the curve no longer satisfies that the settlement value increases with increasing depth. Instead, a reversal occurs at a distance of 4~6 m from the axis, until the settlement value decreases with increasing depth.
Keywords:pipe jacking  vertical displacement  Mindlin solution  multi-factor influence  non-uniform distribution of friction
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