土工基础 ›› 2022, Vol. 36 ›› Issue (2): 127-130.

• 工程实录 • 上一篇    下一篇

高压旋喷桩在深基坑地基处理中的应用研究

朱兴旺,史景革,李春秀   

  1. (中冀建勘集团有限公司,石家庄 050227)
  • 收稿日期:2020-10-26 修回日期:2020-11-03 出版日期:2022-04-30 发布日期:2022-04-26
  • 作者简介:朱兴旺(1982-),男,高级工程师,研究方向为岩土工程。

Application of HighPressure Jet Grouting in the Soil Improvement of a Deep Excavation Project

ZHU Xingwang, SHI Jingge, LI Chunxiu   

  1. (Zhongji Jiankan Group Co. Ltd., Shijiazhuang 050227)
  • Received:2020-10-26 Revised:2020-11-03 Online:2022-04-30 Published:2022-04-26

摘要: 高压旋喷桩能有效改善土体的抗剪切强度,评估和分析高压旋喷桩的加固效果已成为深基坑工程中重要的工作内容。结合南京某基坑工程项目实例,通过建立基坑三维有限元模型,分析加固前后支护结构弯矩、侧向位移以及剪力,研究不同加固体厚度对支护结构最大侧向位移、基底最大隆起量以及地表最大沉降量。研究结果表明:高压旋喷桩加固后,支护结构弯矩、侧向位移和剪力有效减低,支护结构侧向位移下降幅度约50%;随着加固体厚度的增加,围护结构最大侧向位移、基底最大隆起量以及地表最大沉降量呈指数衰减,并逐渐趋于收敛。


关键词: 高压旋喷桩, 深基坑, 地基处理, 力学参数, 数值模拟

Abstract: The high-pressure jet grout formed column in soils can effectively improve the overall shear strength of soft soils. It is an important content to evaluate and analyze the reinforcement effect of the high-pressure jet grout formed columns in deep excavation projects. In this paper, throughout a deep excavation project in Nanjing, a three-dimensional finite element models were established before and after the soil improvement using high pressure jet grout method. The bending moment, lateral displacement and the shear force in the supporting structures before and after reinforcement were compared. Further, the maximum lateral displacement at the supporting structure, the maximum rebound at the excavated base and the maximum settlement of the ground surface behind the excavation with studied with different jet grout formed wall thicknesses. The results show that after the high-pressure jet grout reinforcement, the moment, lateral displacement and establishment in the support structure are effectively reduced, and the lateral displacement in the support structure decreases by about 50%; with the increase of the column wall thickness, the maximum lateral displacement of the support structure, the maximum rebound at the base of the excavation and the maximum surface settlement behind the excavation decrease exponentially, and tend to converge gradually.

Key words: high pressure jet grouting columns, deep excavation, soil improvement, mechanical parameters, numerical simulations

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