土工基础 ›› 2025, Vol. 39 ›› Issue (6): 913-917.

• 专题论述 • 上一篇    下一篇

软土路基换填泡沫轻质土的变形研究分析

陈 韶   

  1. (湖南旭源建筑工程有限公司,长沙 410000)
  • 收稿日期:2023-08-21 修回日期:2023-11-01 出版日期:2025-12-31 发布日期:2026-01-31
  • 作者简介:陈韶(1987-),男,中级工程师,研究方向为市政工程、建筑工程施工管理。

Deformation Analysis of Soft Soil Filled with Foamed Lightweight Aggregate

CHEN Shao   

  1. (Hunan Road &Bridge Construction Group Co. Ltd., Changsha 410000)
  • Received:2023-08-21 Revised:2023-11-01 Online:2025-12-31 Published:2026-01-31

摘要: 为了获取最优轻质土置换回填软土路基(地基)下引起路面沉降变形规律的密度参数,依托某国道一级公路改造工程建立了有限元数值模型,研究软基减荷换填泡沫轻质土问题,分别探讨和比较了泡沫轻质土密度在300 kg·m-3~700 kg·m-3换填工后30 d下路面的最大沉降变形值,其中不同轻质土密度换填下引起路面工后30 d的最大沉降值分别为15.8 mm、23.1 mm、25.4 mm、32.3 mm与37.8 mm,且位置均处于路基中心点;其次,同时在考虑质量安全的前提下,基于降低建设施工成本,确定出依托工程项目路基换填轻质土密度采用400 kg·m-3符合工程建设要求;另外,数值计算表明,相同的轻质土密度下,随着泡沫轻质土换填厚度值增加可以有效地减小路面顶部工后沉降。

关键词: 置换回填, 路面沉降, 泡沫轻质土, 密度

Abstract: To obtain the density parameters for the settlement of pavement over soft soils with the replacement of foamed lightweight aggregate, a finite element numerical model was established. The first-class highway reconstruction project of a national highway is presented in this paper to study the soft subgrade load reduction and replacement with foamed lightweight aggregate. The maximum settlement of the foamed lightweight aggregate with a density between 300 kg·m-3 and 700 kg·m-3 30 days after the replacement was also studied. The maximum settlement values of 30 days after pavement replacement under different densities of lightweight aggregates were 15.8mm, 23.1mm, 25.4mm, 32.3mm and 37.8mm, respectively. The positions of the observed maximum settlement were all at the center point of the roadbed; secondly, under the premise of considering quality and safety, it was determined that the lightweight aggregate density of 400 kg·m-3 was the most cost-effective product to meet the requirements of engineering construction. In addition, numerical analysis shows that under the same lightweight aggregate density, the post-construction settlement of the top of the pavement can be effectively reduced with the increase of the thickness of the foamed lightweight aggregate.

Key words: Replacement and Backfills, Road Settlement, Foamed lightweight Aggregate, Density

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