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拉索减隔震支座抗震性能优化设计研究
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作者 何旭林 张洁 《建筑技术开发》 2018年第21期25-26,共2页
采用减隔震支座对主桥进行减隔震抗震设计,并对减隔震设计方案在E2地震下的动力响应进行了分析。分析结果表明,采用减隔震方案后,主桥所有构件抗震性能均得到了不同程度的优化,拉索支座提高了全结构的抗震性能。
关键词 拉索减隔震支座 设计
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惠州市鹅城大桥总体设计及创新 被引量:1
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作者 赵佳男 曲慧 夏洪 《城市道桥与防洪》 2022年第10期62-65,75,M0008,共6页
对广东省惠州市鹅城大桥的创新设计进行了分析介绍。紧密结合当地自然、人文,进行了极具地域特色的桥梁景观造型设计,呼应了惠州“鹅城”的千年美称。主桥采用四跨连续空间斜跨异型系杆拱桥,主跨跨度为180m,为国内最大的空间斜跨偏态系... 对广东省惠州市鹅城大桥的创新设计进行了分析介绍。紧密结合当地自然、人文,进行了极具地域特色的桥梁景观造型设计,呼应了惠州“鹅城”的千年美称。主桥采用四跨连续空间斜跨异型系杆拱桥,主跨跨度为180m,为国内最大的空间斜跨偏态系杆拱桥。采用拱、塔和梁固结,墩梁分离体系。主梁创新性地采用正交异型钢桥面板与多片梁的结构形式。拱肋由五大系统组成,包括主拱肋、副拱肋、主副拱肋之间的斜杆、两副拱之间的曲杆以及曲杆之间的水平拉索等构件。主拱拱肋中心线为空间斜跨偏态曲线,吊索成空间放射性布置,吊索采用高强度平行钢丝吊索,主梁、拱肋系统和鹅塔均采用Q345qD桥梁结构钢。下部结构采用C40花瓶造型墩柱和水下C35钻孔灌注群桩基础。 展开更多
关键词 景观桥梁 空间斜跨拱桥 异型系杆拱桥 空间偏态拱肋 多片梁结构 钻孔灌注桩基础 拉索减隔震支座 三角金属阻尼器
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Mechanical Analysis and Numerical Simulation for New Type of Dynamic Control Devices
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作者 CHEN Suhua LI Ruiqi +2 位作者 FEI Liang YU Zhiguang DING Jianming 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI CSCD 2022年第6期735-749,共15页
The conventional dynamic control devices,such as fluid viscous damper(VFD)and isolating bearings,are unsuitable for the double-deck cable-stayed bridge due to a lack of sustainability,so it is necessary to introduce s... The conventional dynamic control devices,such as fluid viscous damper(VFD)and isolating bearings,are unsuitable for the double-deck cable-stayed bridge due to a lack of sustainability,so it is necessary to introduce some high-tech dynamic control devices to reduce dynamic response for double-deck cable-stayed bridges under earthquakes.A(90+128)m-span double-deck cable-stayed bridge with a steel truss beam is taken as the prototype bridge.A 3D finite element model is built to conduct the nonlinear time-history analysis of different site categories in fortification intensityⅨ(0.40 g)degree area.Two new types of dynamic control devices-cable sliding friction aseismic bearings(CSFABs)and elasticity fluid viscous dampers composite devices(EVFDs)are introduced to reduce the dynamic responses of double-deck cable-stayed bridges with steel truss beam.The parametric optimization design for the damping coefficient C and the elastic stiffness of spring K of EVFDs is conducted.The following conclusions are drawn:(1)The hybrid support system by EVFDs and CSFABs play a good function under both seismic and regular work,especially in eliminating the expansion joints damage;(2)The hybrid support system can reduce the beam-end displacement by 75%and the tower-bottom bending moment by 60%under the longitudinal seismic excitation.In addition,it can reduce the pier-bottom bending moment by at least 45%under transverse seismic and control the relative displacement between the pier and beam within 0.3 m.(3)Assuming the velocity indexα=0.3,the parametric optimization suggests the damping coefficient C as 2000 kN·s·m-1in siteⅠ0,4000kN·s·m-1in siteⅡ,6000 kN·s·m-1in siteⅣ,and the elastic stiffness of spring K as 10000 kN/m in siteⅠ0,50000 kN/m in siteⅡ,and 100000 kN/m in siteⅣ. 展开更多
关键词 dynamic control device double-deck cable-stayed bridge with steel truss beam cable-sliding friction aseismic bearings(CSFABs) elasticity fluid viscous dampers composite devices(EVFDs)
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