土工基础 ›› 2025, Vol. 39 ›› Issue (3): 387-391.

• 工程实录 • 上一篇    下一篇

绿色全钢支护在软土基坑中的应用

汪 杰   

  1. (湖北和盛岩土工程有限公司,武汉 430000)
  • 收稿日期:2025-02-27 修回日期:2025-03-06 出版日期:2025-06-30 发布日期:2025-08-05
  • 作者简介:汪杰(1993-),男,工程师,研究方向为岩土工程。

Application of Reusable All Steel Support in Deep Excavation in Soft Soils

WANG Jie   

  1. (Hubei Hesheng Geotechnical Engineering Co. Ltd., Wuhan 430000)
  • Received:2025-02-27 Revised:2025-03-06 Online:2025-06-30 Published:2025-08-05

摘要: 针对软土深基坑工程中传统支护体系存在的施工效率低、材料不可循环及环境影响突出等问题,提出基于全钢支护的绿色基坑支护方法。通过构建有限元数值模型与多维度方案比选机制,深入解析钢支护体系在软土中的协同承载机理与生态效益特征。研究表明,钢支撑与桩体协同作用形成的“弓形”位移分布模式,可有效约束基坑变形并降低对周边环境扰动;对比传统混凝土支护工艺,新型体系在施工组织效率、材料循环使用性及碳排放等维度均呈现突破性提升,该技术通过模块化设计与钢构件循环利用,实现了安全控制、资源节约与低碳施工的多目标协同。工程实践验证,该体系通过力学性能与可持续属性的有机融合,为高敏感环境下的软土基坑工程提供了兼具结构安全性与生态友好性的创新解决方案。

关键词: 绿色, 基坑支护, 软土

Abstract: A green deep excavation support method based on all steel support structure is proposed to address the problems of low construction efficiency, non-recyclable materials, and adverse environmental impact of traditional support systems of deep excavation in soft soils. By establishing a finite element numerical model and a multi-dimensional plan comparison mechanism, the collaborative bearing mechanism and the ecological benefits of the steel support system in soft soils are analyzed in detail. Research has shown that the “bow shaped” displacement distribution pattern formed by the synergistic effect of steel supports and piles can effectively control the deformation of the deep excavation and reduce disturbance to the surrounding environment; Compared with the traditional concrete support technology, the new system shows breakthrough improvements in construction organization efficiency, the material recycling, and the carbon emissions. Through the modular design and the steel component recycling, this technology achieves multi-objective coordination of safety control, resource conservation, and low-carbon construction. Engineering practice has verified that this system provides an innovative solution for the deep excavation in soft soils in highly sensitive environments that combines structural safety and ecological friendliness through the effective integration of mechanical properties and sustainable attributes.

Key words: Reusable, Excavation Support, Soft Soils

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