Grouting lifting numerical methods based on numerical simulation and model experiment
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(1.Geotechnical and Structural Engineering Research Center, Shandong University, Jinan 250061, China; 2.Shandong Institute of Architectural Design Co., Ltd., of China Railway First Design Institute Group, Qingdao 266031, Shandong, China)

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TV543

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    Abstract:

    To solve the problem of surface lifting caused by grouting in urban shallow underground projects, grouting lift calculation method and simplified algorithm were established based on the theory of stochastic medium, and effects of compaction grouting and fracture grouting on surface uplift were studied. Through PFC simulation and laboratory model experiments, the suffering area of the surface uplift by ball compaction grouting and horizontal fracture grouting were studied, and the accuracy of the grouting lift calculation method of surface uplift displacement was verified. Effects of grouting depth, soil dry density, and soil water content on surface uplift during grouting were investigated by introducing the grouting uplift coefficient γ. Results show that the simplified method of theoretical prediction of surface uplift displacement was accurate when the depth of grouting was greater than 2 m, and it was not applicable when the depth of grouting was less than 2 m. The surface uplift caused by the two grouting methods was consistent with the results of the numerical simulation and the mathematical model calculation. Single hole grouting changed the displacement field of the overlying inverted cone soil. The maximum surface displacement caused by compaction grouting was large, so was the influence range of fracture grouting on the surface. Factors such as grouting depth, soil dry density, and soil water content all influenced the maximum surface displacement caused by grouting, among which grouting depth was the most important factor.

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History
  • Received:July 30,2018
  • Revised:
  • Adopted:
  • Online: July 29,2019
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