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跨高速铁路桥梁基础防护桩设计与施工 被引量:3
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作者 黄雄军 王兴国 《工业安全与环保》 北大核心 2015年第7期1-3,17,共4页
武咸城际铁路在咸宁市上跨武广高速铁路,安全风险极大。论述了跨高速铁路桥梁基础承台防护桩的设计和施工,分析了防护桩设计的影响因素,确定了计算桩长。此外,从单桩承载力、桩基内力及基地应力三方面计算进行了安全性验证,确保了桥梁... 武咸城际铁路在咸宁市上跨武广高速铁路,安全风险极大。论述了跨高速铁路桥梁基础承台防护桩的设计和施工,分析了防护桩设计的影响因素,确定了计算桩长。此外,从单桩承载力、桩基内力及基地应力三方面计算进行了安全性验证,确保了桥梁承台施工安全,对类似工程的基础安全防护有较好的借鉴作用。 展开更多
关键词 跨高速铁路桥 承台 防护桩 设计与施工
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CPTU在跨海高速铁路大桥浅层气勘察中的应用
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作者 产运节 张建 张鹏 《中国铁路》 2022年第6期43-48,共6页
浅层气地质是我国沿海、沿江地区工程建设遇到的难题之一。以杭州湾某跨海高速铁路特大桥为研究对象,采取孔压静力触探技术(CPTU)作为工程地质勘察手段,查明工程沿线浅层气地质情况的时空分布规律,获取桥址区域含气土的工程力学特性,探... 浅层气地质是我国沿海、沿江地区工程建设遇到的难题之一。以杭州湾某跨海高速铁路特大桥为研究对象,采取孔压静力触探技术(CPTU)作为工程地质勘察手段,查明工程沿线浅层气地质情况的时空分布规律,获取桥址区域含气土的工程力学特性,探究海底浅层气地层对桥梁设计、施工和运营造成的潜在影响,提出工程设计、建设和运营对策。研究结果表明:CPTU可精确探测出海底浅层气的分布范围,指导海上大型桥梁设计与施工。存在浅层气区域,建议采用打入桩施工工艺;当采用钻孔桩施工时,施工前应提前积极主动采取控制性放气措施,同时增大桩端阻力或侧阻力,以增加桩基的承载力,确保工程安全。项目运营期间应建立运营安全监测系统,实时监测和评估桥梁状态,为桥梁运营维护提供保障。 展开更多
关键词 高速铁路特大 浅层气 孔压静力触探技术(CPTU) 工程灾害防治
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Applicability of small resistance fastener on long-span continuous bridges of high-speed railway 被引量:19
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作者 戴公连 刘文硕 《Journal of Central South University》 SCIE EI CAS 2013年第5期1426-1433,共8页
Ballastless tracks have been widely applied in high-speed railway (HSR). The adaptability research between continuous welded rails (CWR) and long-span bridges of HSR is of great practical engineering significance. Bas... Ballastless tracks have been widely applied in high-speed railway (HSR). The adaptability research between continuous welded rails (CWR) and long-span bridges of HSR is of great practical engineering significance. Based on the HSR long-span continuous bridges, the integrative spatial finite element model of track-bridge-pier-foundation system was established with the nonlinear spring element simulating the longitudinal resistance between track and bridge. Comparative study on the various additional longitudinal forces of CWR using the common fasteners and small resistance fasteners was carried out. Analysis results indicate that the additional expansion forces and additional rail-breaking forces in long-span ballastless continuous girders can be reduced evidently by 40% 50% after adopting small resistance fasteners, but lead to greater rail broken gap. The small resistance fasteners have little influence on the additional force only caused by vertical load, but can reduce the additional force caused by vertical load combined with braking load by over 10%. Besides, transient analysis method is proved to be more accurate and safe in calculating additional longitudinal forces when the train running or braking on the bridge, compared with the traditional static method. 展开更多
关键词 ballastless track small resistance fasteners additional longitudinal force long-span continuous beam high-speed railway
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