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沪昆高铁北盘江特大桥导风栏杆防风效果风洞试验研究 被引量:6
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作者 陈列 徐锡江 +2 位作者 谢海清 吕娜 张鹤 《铁道标准设计》 北大核心 2019年第10期76-80,共5页
为满足列车在25 m/s风速下以设计速度350 km/h安全通过桥梁,以沪昆高铁北盘江特大桥为工程背景,研发一种桥梁防风装置-导风栏杆。每根导风栏杆由挡风面、导风角、通风孔、加强肋、安装孔构成,挡风面近似为一个扇形结构,上部有导风角,挡... 为满足列车在25 m/s风速下以设计速度350 km/h安全通过桥梁,以沪昆高铁北盘江特大桥为工程背景,研发一种桥梁防风装置-导风栏杆。每根导风栏杆由挡风面、导风角、通风孔、加强肋、安装孔构成,挡风面近似为一个扇形结构,上部有导风角,挡风面上部均布通风孔。每根导风栏杆以一定的间距排列,通过螺栓与下部预埋组件相连。通过风洞试验和风-车-桥耦合分析对导风栏杆进行防风效果验证。结果表明:导风栏杆的应用解决了列车在大风情况下的全速安全运行问题,同时提高了列车的乘坐舒适性。导风栏杆兼具挡风、导风、栏杆功能于一体,同时发挥了桥梁防风、行人安全防护的功能。大部分风通过带折角的倾斜导风叶片进行转向,减小了风荷载对导风栏杆的受力,同时减小主梁的受力。 展开更多
关键词 高速铁路 梁防风装置 峡谷桥 风屏障 导风栏杆 风洞试验
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Near-source topographic effect on seismic responses of a multi-span continuous railway bridge crossing a symmetrical V-shaped canyon 被引量:2
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作者 LI Shuai WANG Ming-dong +5 位作者 ZHANG Fan ZHANG Yu DAI Deng-hui ZHANG Ning WANG Jing-quan GAO Yu-feng 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第8期2434-2448,共15页
Past earthquakes have revealed that topographic features have significant impacts on the characteristics of ground motions,which may cause the amplification and de-amplification of input seismic waves.The topographic ... Past earthquakes have revealed that topographic features have significant impacts on the characteristics of ground motions,which may cause the amplification and de-amplification of input seismic waves.The topographic effect with the assumption of plane seismic waves on the seismic responses of bridges has been investigated in the existing literature;however,the influence of near-source topographic effects has not been thoroughly understood.The objective of this study is to numerically explore the near-source topographic effects on the seismic behaviors of an existing railway bridge crossing a symmetrical V-shaped canyon.The influence of the source of incident waves is estimated.Numerical results demonstrate that the topographic effects can noticeably amplify the seismic responses of the bridge.Compared to the bridge without crossing a canyon,the peak displacements of the girder,pier,and bearing in the case of the canyon crossing bridge increase by 15.2%,2.9%−14.5%,and 24.2%−229.6%,respectively.The piers at the illuminated side of the canyon experience larger seismic responses compared to the piers at the shaded side of the canyon due to the unequal motion amplitudes at each support.As the source-to-canyon distance increases,the seismic responses of the piers show an increasing trend. 展开更多
关键词 railway bridges V-shaped canyon topographic amplification seismic response parametric analysis
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