土工基础 ›› 2025, Vol. 39 ›› Issue (3): 413-416.

• 专题论述 • 上一篇    下一篇

昆倘高速峨眉山组岩石工程特性及变形分析

代文君,吴国斌   

  1. (中铁二院昆明勘察设计研究院有限责任公司,昆明 650200)
  • 收稿日期:2023-02-25 修回日期:2023-06-08 出版日期:2025-06-30 发布日期:2025-08-05
  • 作者简介:代文君(1985-),男,高工,研究方向为岩土工程勘察。

Engineering Characteristics and Deformation Analysis of Emeishan Formation Basalt in Kun-Tang Expressway

DAI Wenjun, WU Guobin   

  1. (CREEC Kunming Survey, Design and Research Institute Co. Ltd., Kunming 650200)
  • Received:2023-02-25 Revised:2023-06-08 Online:2025-06-30 Published:2025-08-05

摘要: 在建昆明至倘甸高速公路穿越二叠系峨眉山组第一至第三段(P2e1-P2e3)玄武岩、凝灰岩地层,玄武岩、凝灰岩在岩石矿物成分、结构、构造上差异较大,玄武岩柱状节理发育,充填黏土、绿泥石,结构面物理力学性质较差,凝灰岩具多期喷发,在强蚀变作用下生成次生黏土、沸石,具膨胀潜势,水敏感性强的物理力学特征,构成了玄武岩地层中的软弱夹层。施工中峨眉山组玄武岩段发生了多处边坡变形,主要发生在傍河区,斜坡区次之,浅层土层圆弧形滑动为主,岩层楔形破坏次之,地层岩性主要发生在凝灰岩内、玄武岩内次之,边坡变形主要受凝灰岩物理力学性质差、不利结构面、地下水作用及边坡坡率较陡等因素影响。


关键词: 昆倘高速, 峨眉山组玄武岩, 工程特性, 边坡变形

Abstract: The under-construction Kunming-Tangdian Expressway passes through the basalt and tuff formations of the first to third sections (P2e1-P2e3) of the Permian Emeishan Formation. The project is mainly pavement engineering. The basalt and tuff have great differences in rock mineral composition, structure and structure. Basalt has developed columnar joints and is filled with clay and chlorite. The physical and mechanical properties of the structural plane are poor. The secondary clay and zeolite, with the physical and mechanical characteristics of swelling potential and strong water sensitivity, constitute the weak interlayer in the basalt stratum. During the construction, many slope deformations occurred in the basalt section of the Emeishan Formation, which mainly occurred in the riverside area, followed by the slope area. The circular sliding mode in the shallow soil layer is the main type, followed by the wedge failure mode in the rock layer. The formation lithology mainly occurs in tuff and basalt are second, and the slope deformation is mainly affected by factors such as poor physical and mechanical properties of tuff, unfavorable structural plane, groundwater action and steep slope rate.

Key words: Kun-Tang Expressway, Basalt of Emeishan Formation, Engineering Characteristics, Slope Deformation

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