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Research on Shallow Buried and Large-Span Tunnelling Undercrossing a Highway

机译:高速公路浅埋和大跨度隧道的研究

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WenXiang tunnel, one of the tunnels constructed for the ZhengXi Special passenger Railway in china. In this project we have carried out a series of research on optimizing the construction method for shallow and large-span tunnels in loess condition. According to the field monitoring of ground settlement, vault settlement and primary support stress of the tunnel section before tunnelling underneath the LianHuo Highway, the result indicates that soil settlement and primary support stress can not be controlled very well, and current construction program needs to be reformed since it can not meet construction safety requirement. Our synthetical analysis comprises the optimized methods have been used in construction, such as reducing excavation area, increasing excavation steps of pilot tunnel, reserving core soil, closing invert punctually, reinforcing primary support, etc. The security and reliability also has been verified by numerial analysis sofeware FLAC~(3D). From feedback of field implement and monitoring result, the effect of optimized method is significant; and all of these methods ensured this tough project implemented successfully. These results derived from our research are subject to a ceritain value that could be referred for future analogous project, in terms of controlling soil settlement and protecting surrouding building facilities.
机译:温翔隧道是在中国为郑熙特殊乘客铁路建造的隧道之一。在该项目中,我们已经开展了一系列关于优化黄土条件下浅层和大跨度隧道施工方法的研究。根据地面沉降,拱顶沉降和隧道部分的初级支撑压力的田间监测,结果表明,土壤沉降和初级支撑压力不能控制,并且目前的施工计划需要自改革后,它无法满足施工安全要求。我们的综合分析包括已用于结构的优化方法,例如减少挖掘区域,增加先导隧道的挖掘步骤,保留核心土壤,关闭转向标准,加强初级支撑等。还通过数值验证了安全性和可靠性。分析Sofeware Flac〜(3D)。根据现场实施和监测结果的反馈,优化方法的效果是显着的;所有这些方法都确保了这项艰难的项目成功实施。这些结果来自我们研究的结果符合Ceritain值,可以在控制土壤沉降和保护四大建筑设施方面提及未来类似项目。

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