土工基础 ›› 2023, Vol. 37 ›› Issue (3): 414-417.

• 专题论述 • 上一篇    下一篇

膨胀岩巷道在湿度场下围岩变形规律特征

姜大欢1,吴涛2,张文宇3,刘长红1    

  1. (1.中铁二十四局集团南昌铁路工程有限公司,南昌 330002;2.南京军区空军勘察设计院,南京 210018;3.94750部队,福州 366200)
  • 收稿日期:2021-12-01 修回日期:2021-12-15 出版日期:2023-06-30 发布日期:2023-07-03
  • 通讯作者: 刘长红(1990-),男,高级工程师,研究方向为桥梁、隧道、机场工程。
  • 作者简介:姜大欢(1988-),男,工程师,研究方向为桥梁工程。

Deformation Characteristics of Surrounding Expansive Rock Mass in a Highway Tunnel Under Humidity Field

JIANG Dahuan1, WU Tao2, ZHANG Wenyu3, LIU Changhong1   

  1. (1.Nanchang Railway Engineering Co. Ltd., China Railway 24th Bureau Group, Nanchang 330002;
    2.Nanjing Military District Air Force Investigation & Design Institute, Nanjing 210018;
    3.94750 Troops, Fuzhou 366200)
  • Received:2021-12-01 Revised:2021-12-15 Online:2023-06-30 Published:2023-07-03

摘要: 为研究膨胀岩巷道在湿度场下围岩变形破坏规律特征,结合现有湿度场理论,采用正交试验方法对在不同矢跨比和侧压力系数因素下围岩变形规律进行研究。研究表明:左帮变形位移在有无膨胀性巷道中受矢跨比的影响较小,在矢跨比1∶4时顶板沉降量比底板鼓起量大;在侧压力系数影响下,围岩两帮的变形量随着应力比的增大而增大。应力比为1.5和0.5时,底板隆起量会高出4倍之多;在矢跨比和应力比两者在较小或较大情况下,前者在有无膨胀岩因素下顶板下沉量变化较大,达50%左右,后者底板隆起量增加为30%左右;在两种因素中侧压力系数对两帮变形量影响较大,矢跨比对顶底板变形量影响较大。

关键词: 膨胀岩, 湿度场, 围岩变形, 正交试验设计, 数值模拟分析

Abstract: This paper presents a case history of the study the deformation and failure characteristics of the surrounding expansive rock mass of a highway tunnel under the humidity field. The evaluation combines with the existing humidity field theory, the deformation law of the surrounding expansive rock mass under different rise span ratios and the lateral rock pressure coefficient is studied by the orthogonal test method. The results show that the deformation of the left side is less affected by the rise span ratios in the expansive conditions or not, and the roof settlement is greater than the floor heave when the rise span ratio is 1:4; Under the influence of the lateral rock pressure coefficient, the deformation of two sides of the surrounding rock mass increases with the increase of the stress ratio. When the stress ratio is 1.5 and 0.5, the floor heave will be as much as 4 times higher; When the rise span ratio and stress ratio are small or large, the variation of the roof subsidence in the former can reach about 50% with or without expansive rock mass, and the floor uplift in the latter can reach about 30%. In the two factors, the lateral rock pressure coefficient has a great influence on the deformation of the two sides, and the rise span ratio has a great influence on the deformation of the top and bottom plate.

Key words: Expansive Rock, Humidity Field, Surrounding Rock Mass Deformation, Orthogonal Experimental Design, Numerical Analysis

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