1. 重庆大学 土木工程学院
2. 山地城镇建设与新技术教育部重点实验室,重庆,400045
3. 重庆交通大学 隧道及岩土工程系,重庆,400074
纸质出版:2012
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文竞舟, 张永兴, 王成. 隧道围岩-喷射混凝土界面应力解析[J]. 土木与环境工程学报(中英文), 2012,34(6):67-74.
WEN Jingzhou, ZHANG Yongxing, WANG Cheng. Analysis on Interfacial Stress Between Surrounding Rock and Shotcrete Lining[J]. Journal of Civil and Environmental Engineering, 2012, 34(6): 67-74.
文竞舟, 张永兴, 王成. 隧道围岩-喷射混凝土界面应力解析[J]. 土木与环境工程学报(中英文), 2012,34(6):67-74. DOI: 10.3969/j.issn.1674-4764.2012.06.012.
WEN Jingzhou, ZHANG Yongxing, WANG Cheng. Analysis on Interfacial Stress Between Surrounding Rock and Shotcrete Lining[J]. Journal of Civil and Environmental Engineering, 2012, 34(6): 67-74. DOI: 10.3969/j.issn.1674-4764.2012.06.012.
根据喷射混凝土支护隧道围岩的界面力学特点,考虑喷层与围岩结合界面受力和变形协调关系,并结合围岩承载拱效应,建立了围岩喷层结构的复合曲梁共同承载模型,然后通过各微单元静力平衡推导复合曲梁的径向位移的控制微分方程,得到任意分布荷载作用下喷层与围岩界面应力以及喷层与围岩各自内力的解析式,可迅速获取喷层与围岩结合界面的力学状况,进而判断围岩稳定性与预测安全性,为隧道施工决策提供技术支撑。最后经隧道台阶法开挖的算例研究表明,喷层支护通过其与围岩的结合界面上传递应力使围岩内部形成压应力带,有利于围岩的稳定。
According to the characteristics of interfacial stress between surrounding rock and shotcrete support
mechanical model of composite curved beame for support system of tunnel surrounding rock and shotcrete lining was established
considering the interfacial deformation coordination and the effects of bearing arch of surrounding rock. Then from static equilibrium of two differential elements
the differential equations for the radial displacement of composite curved beam were obtained. All analytic formulas of both interfacial stress and internal forces between surrounding rock and shotcrete lining by arbitrary distribution load were derived. And thus the mechanical condition of interface zone and the stress concentration position were obtained
which is convenient to assess the stability of surrounding rock and predict the safety. Finally
the analysis of tunnel project excavated by bench method showed that shotcrete lining made the formation of compressive stress zone in surrounding rock by transferring stress from the interface between surrounding rock and shotcrete
which is beneficial to improve the stability of surrounding rock.
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