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土层隧道动力分析 被引量:9
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作者 谷拴成 高宗祺 《西安科技学院学报》 北大核心 2002年第4期404-406,410,共4页
考虑土与隧道体的相互作用,忽略结构惯性力,根据反应位移法,将隧道设计过程中各种动荷载(包括地震和爆破荷载)形成的地震波引起的隧道周围的土体位移作为荷载,通过弹簧作用于支护结构体上,推导出较为简单实用的公式来计算隧道在地震中... 考虑土与隧道体的相互作用,忽略结构惯性力,根据反应位移法,将隧道设计过程中各种动荷载(包括地震和爆破荷载)形成的地震波引起的隧道周围的土体位移作为荷载,通过弹簧作用于支护结构体上,推导出较为简单实用的公式来计算隧道在地震中的纵向和弯曲荷载,并讨论了其设计中的塑性问题。 展开更多
关键词 动力分析 土层隧道 反应位移法 纵向荷载 弯曲荷载 地震波 支护构体
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Rapid excavation with a newly developed retaining system: Spiral assembly steel structure
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作者 关成立 杨宇友 王成彪 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第7期2719-2729,共11页
The spiral assembly steel structure, a newly developed retaining wall for the rapid excavation of small-sized foundation pits in unsaturated soil, is presented. This new type of retaining structure is prefabricated in... The spiral assembly steel structure, a newly developed retaining wall for the rapid excavation of small-sized foundation pits in unsaturated soil, is presented. This new type of retaining structure is prefabricated in the factory and is assembled on site in the excavation of a pit. This retaining structure is composed of several prefabricated steel structural units, in which the adjacent steel structural units are joined with connectors. Each steel structural unit has one steel pipe in the radial direction and is welded to a single piece of steel plate. After full installation in situ, the retaining structure becomes a cylindrical steel structure. With the protection afforded by this new type of retaining structure, excavation work can be completed within 24 h to a depth up to 5 m. In order to verify the reliability and effectiveness of this new retaining structure, field construction tests were conducted in Beijing, China. The test construction was monitored. The monitoring program included measuring stress in the structure, lateral earth pressure, and lateral deformation of the surrounding soil. The monitoring data from the field test were compared with the theoretical results. The results show that the proposed new structure is reliable and effective. 展开更多
关键词 working shaft rapid excavation retaining structure field construction monitoring
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Research on Stability Calculation Methods for Grillage Supporting Structure with Pre-stressed Anchor
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作者 Xiangling Zhou 《International Journal of Technology Management》 2014年第7期89-91,共3页
Aiming at prestressed anchor cable frame in the presence of reinforcement landslide problem, through the selection of test points, the paper study and tested soil pressure, frame internal force and prestress losses un... Aiming at prestressed anchor cable frame in the presence of reinforcement landslide problem, through the selection of test points, the paper study and tested soil pressure, frame internal force and prestress losses under prestressed anchor cable frame beam, reveal the law of internal force distribution, and provides a theory basis for the rational design of prestressed anchor cable in landslide. 展开更多
关键词 Frame anchor RELIABILITY lateral pressure coefficient landslide reinforcement
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