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Study on collapse mechanism at tunnel export and its prevention measure

机译:隧道出口塌方机理及防治措施研究

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Collapse accident frequently occurs at tunnel export. In order to reveal the mechanism of this kind of tunnel collapse, three-dimensional elastic-plastic calculation model is established according to Maanshan mountain tunnel. Thick soft overburden, untimly support and rainwater infiltration are considered as the main influencing factors of the tunnel collapse. Its special geological condition is determinative factor and rainwater infiltration is inducing factor. The study shows that collapse at tunnel export is induced by tunnel face instability and loose rock and soil mass collapse at tunnel roof. This kind of tunnel collapse belongs to the failure model which is induced by the combined action of shearing and tension. The support behind excavating face can prevent plastic zone extending to ground surface. It is better that the distance from excavating face is shorter. So the primary support should be constructed timely and advanced support is necessary. The best length of advanced support is 5 m. At the end of this paper, the influence of rainfall to surrounding rock is analyzed through field monitoring data of surface settlement and surrounding rock pressure. It is presented that rainwater infiltration can accelerate the failure of surrounding rock and its influence effect mainly reflects on 1 to 2 days after rainfall. So waterproof and drainage measures should be done to prevent the collapse for rainy season construction.
机译:隧道出口经常发生塌方事故。为了揭示这种隧道倒塌的机理,根据马鞍山隧道建立了三维弹塑性计算模型。较厚的软覆盖层,不适当的支护和雨水的渗入被认为是影响隧道倒塌的主要因素。其特殊的地质条件是决定因素,而雨水的渗透是诱发因素。研究表明,巷道出口失稳是由巷道面不稳定性和巷道顶板松动的岩土塌陷引起的。这种隧道倒塌属于破坏模型,是由剪切和拉力共同作用引起的。开挖面后面的支撑可以防止塑料区域延伸到地面。距开挖面的距离越短越好。因此,应及时构建主要支持,并且有必要提供高级支持。高级支持的最佳长度是5 m。最后,通过地面沉降和围岩压力的现场监测数据,分析了降雨对围岩的影响。研究表明,雨水的渗入可以加速围岩的破坏,其影响作用主要体现在降雨后1-2天。因此,应采取防水​​和排水措施,以防止雨季施工时倒塌。

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