土工基础 ›› 2025, Vol. 39 ›› Issue (6): 811-814.

• 工程实录 •    下一篇

二元复合地基在液化软弱土场地的应用

杨 波1,杨彬彬2,杨 洋1   

  1. (1.四川省川建勘察设计院有限公司,成都 610041;2.西南石油大学,成都 610500)
  • 收稿日期:2023-08-16 修回日期:2023-08-21 出版日期:2025-12-31 发布日期:2026-01-31
  • 作者简介:杨波(1992-),男,工程师,硕士,研究方向为岩土防灾与减灾。

Application of Binary Composite Foundation in Liquefiable Soft Soil Site

YANG Bo1, YANG BinBin2, YANG Yang1   

  1. (1.Sichuan Chuan Jian Geotechnical Survey and Design Institute Co. Ltd., Chengdu 610041; 2.Southwest Petroleum University, Chengdu 610500)
  • Received:2023-08-16 Revised:2023-08-21 Online:2025-12-31 Published:2026-01-31

摘要: 为缓解国家经济发展带来的城市用地压力问题,建筑行业逐渐向修建高层和超高层建筑方向发展,加之我国地质条件复杂,对地基的承载力和变形要求提出了更高标准。以成都地区某液化软弱土场地高层建筑工程为例,基于岩土工程分析软件Midas GTS NX,对复合地基工程状态进行数值模拟,预测了主体建筑工后沉降。对比复合地基载荷试验和主体沉降监测数据,实测数据和数值模拟结果基本吻合,地基承载力及变形均满足要求。结果表明,在砂土、粉土液化软弱土场地,采用碎石桩CFG桩二元复合地基,对消除地基液化和提高地基承载力效果显著。

关键词: 二元复合地基, 数值模拟, 液化软弱土

Abstract: To alleviate the pressure on the urban land caused by national economic developments, the construction industry has gradually developed towards the construction of highrise and super highrise buildings. China’s geological conditions are complicated, which requires a higher standard for the bearing capacity and the deformation of foundation soils. This paper presents a highrise building project of a liquefiable soft soil site in Chengdu area as a case history. A numerical model by using software Midas GTS NX to predict the postconstruction settlement deformation of building is established. After the completion of the project, comparing the load test and the settlement monitoring data of binary composite foundation, the measured data and the numerical simulation results are basically consistent, and the bearing capacity and deformation of foundation soils meet the requirements. The results show that in the field of sandy and silty liquefiable soft soils, the application of gravel columns, the Cement, Fly ash and Gravel (CFG) column composite foundation has remarkable effect on eliminating the liquefaction potential and improving the bearing capacity of foundation soils.

Key words: Binary Composite Foundation, Numerical Model, Liquefiable Soft Soil

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