土工基础 ›› 2025, Vol. 39 ›› Issue (2): 222-227.

• 专题论述 • 上一篇    下一篇

基于胶结土本构模型的地基加固模拟研究

朱永康1,周亚2,胡笑竹1,冯海华1   

  1. (1.苏州科技大学 土木工程学院,江苏苏州 215009;2.中亿丰建设集团股份有限公司,江苏苏州 215131)
  • 收稿日期:2023-03-22 修回日期:2023-03-26 出版日期:2025-04-30 发布日期:2025-06-03
  • 作者简介:朱永康(1993-),男,助理工程师,硕士,研究方向为岩土力学特性及工程应用。
  • 基金资助:
    江苏省高等学校基础科学(自然科学)研究项目(No. 22KJB170020)

Simulation of Foundation Improvement Using Cemented Soil Constitutive Model

ZHU Yongkang1, ZHOU Ya2, HU Xiaozhu1, FENG Haihua1   

  1. (1.School of Civil Engineering, Suzhou University of Science and Technology, Suzhou 215009;
    2.ZYF Construction Group Co. Ltd., Suzhou 215131)
  • Received:2023-03-22 Revised:2023-03-26 Online:2025-04-30 Published:2025-06-03

摘要: 岩土工程中为了确保土体的安全性与稳定性,常在土中掺入一定量的胶结物,以形成具有较强结构性的人工胶结结构性土(改良土),这被广泛应用于天然地基土的力学特性改良。采用基于胶结土本构模型的有限元程序,对地基加固工程进行模拟计算。研究发现:在基底区域进行胶结加固虽能起到提高地基承载力的效果,但会出现应力集中现象,安全性不能得到很好的保障,而在距离基底较深处进行胶结加固效果有限。选择基底下方合适区域进行胶结加固,基底至胶结加固区域之间的土层能够起到一个“垫层”的作用,将基底压力更加均匀的传递到胶结加固区域,至使胶结区域内部的胶结作用得到最大化利用,显著提高了地基的承载能力,并且即使基础下沉至更深的距离地基的安全性也能得到保障。

关键词: 胶结结构性土, 本构模型, 地基加固, 模拟, 应力集中

Abstract: In the geotechnical engineering, to ensure the safety and stability of soil mass, the Portland cement is often added into soil to form artificially cemented structured soil (improved soil), which is widely used in the improvement of mechanical properties of poor soils. In this paper, the finite element program using the cemented soil constitutive model is used to simulate the soil improvement process. Although the cementation at the bottom of the footing area can improve the bearing capacity of the foundation soils, the stress concentration phenomenon will occur, and the safety of the foundation system cannot be well guaranteed. The effect of the cementation in the distance away from the footing is limited. The suitable area under the bottom of footing is selected for cementation improvement. The soil layer between the footing and the cementation reinforcement area can act as a “cushion”. This cushion transfers the footing pressure to the cementation improvement area more evenly. In this way, the cementation within the improved area can be maximized. The bearing capacity of the foundation can be significantly improved. The safety of the footing is warranted even if the foundation is more deep embedded.

Key words: Cemented Structured Soil, Constitutive Model, Soil Improvement, Simulation, Stress Concentration

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