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山岭隧道超浅埋段开挖围岩变形分析 被引量:13
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作者 林锦腾 邱洪志 王永祯 《科学技术与工程》 北大核心 2020年第24期9982-9987,共6页
为探究山岭隧道洞口段、山腰、沟谷等浅埋段在开挖过程中围岩的变形规律,采用了数值模拟和现场监测的手段,对超浅埋隧道在开挖条件下围岩的变形进行分析。结果表明:当隧道埋深小于2倍隧道直径时,埋深越浅隧道开挖后拱顶下沉位移越大;超... 为探究山岭隧道洞口段、山腰、沟谷等浅埋段在开挖过程中围岩的变形规律,采用了数值模拟和现场监测的手段,对超浅埋隧道在开挖条件下围岩的变形进行分析。结果表明:当隧道埋深小于2倍隧道直径时,埋深越浅隧道开挖后拱顶下沉位移越大;超浅埋隧道开挖后围岩的变形可分为三个阶段,即变形急增阶段、变形缓慢阶段和变形平稳阶段;其中,第一阶段围岩产生的变形最大,是隧道开挖过程中重点关注的一个阶段。通过对比分析发现,实际监测数据与模拟结果变化趋势基本吻合,模拟结果的累积变形值略大于实际监测结果,这是因为监测工序晚于开挖工序。因此,掌握超浅埋隧道在开挖过程中的围岩变形规律,并制定科学合理的开挖支护措施对隧道的安全十分重要。研究成果对同类工程具有指导意义。 展开更多
关键词 超浅埋隧道 围岩变形 现场监测 数值分析
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Deformation mechanism and collapse treatment of the rock surrounding a shallow tunnel based on on-site monitoring 被引量:1
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作者 qiu hong-zhi CHEN Xiao-qing +3 位作者 WU Qi-hong WANG Ren-chao ZHAO Wan-yu QIAN Ke-jiang 《Journal of Mountain Science》 SCIE CSCD 2020年第12期2897-2914,共18页
When tunnels are constructed at shallow depths in areas with poor geological conditions,such as portal sections,valleys and hillsides in regions with granitic bedrock,considerable excavation-induced deformation of the... When tunnels are constructed at shallow depths in areas with poor geological conditions,such as portal sections,valleys and hillsides in regions with granitic bedrock,considerable excavation-induced deformation of the surrounding rock may occur,potentially resulting in tunnel collapses.The main reason for these problems is the lack of understanding of the deformation mechanism and evolution of the soft granitic rock surrounding the tunnel and the adoption of inappropriate construction technology and methods.This article analyzes the deformation mechanism of the rock surrounding a shallow tunnel based on in situ monitoring data as a case study and suggests that certain measures should be taken to effectively control the deformation of the surrounding rock and to minimize the potential for tunnel collapse.The results show that the deformation of the granitic soil surrounding the tunnel can be divided into three stages:the rapid deformation stage,the slow deformation stage and the stabilization stage.Appropriate construction methods should be carefully selected to ensure safety during tunnel excavation in the first stage.To avoid secondary disasters caused by tunnel collapses,three treatment measures may be implemented as part of safety management:enhancing the monitoring of the surrounding rock deformation,adjusting the construction methods and optimizing the support systems.In particular,accurate monitoring data and timely information feedback play a vital role in tunnel construction.Therefore,engineers with considerable engineering experience and professional knowledge are needed to analyze the monitoring data and make accurate predictions of tunnel deformation to ensure that reasonable measures are taken in the process of shallow tunnel excavation. 展开更多
关键词 Shallow tunnel Surrounding rock deformation Field monitoring Treatment for collapse Information feedback
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水泥土墙在水土保持工程中的应用研究
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作者 胡爱国 邱洪志 董建辉 《四川地质学报》 2018年第2期321-324,共4页
水泥土是一种经济适用的建筑材料,它常被用于大坝防渗与加固、桩基、基坑支护、土基、面垫层等工程中。本文根据水泥土的力学特性,探讨了水泥土墙在水土保持工程中的应用;通过一个工程实例,重点分析了水泥土挡土墙和浆砌石挡土墙建设成... 水泥土是一种经济适用的建筑材料,它常被用于大坝防渗与加固、桩基、基坑支护、土基、面垫层等工程中。本文根据水泥土的力学特性,探讨了水泥土墙在水土保持工程中的应用;通过一个工程实例,重点分析了水泥土挡土墙和浆砌石挡土墙建设成本的差异,验证了水泥土材料用于水土保持工程的可行性。实例分析表明,相同体积的水泥土墙和浆砌石挡土墙相比,水泥土墙的造价不到浆砌石挡墙的一半,并且材料运输距离越远水泥土墙造价越低。 展开更多
关键词 水泥土墙 水土保持 力学特性 应用
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