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横风作用下高速列车通过多跨铁路斜拉桥的行车性能分析
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作者 张威振 胡迎新 +1 位作者 曾世钦 谭凌飞 《铁道科学与工程学报》 北大核心 2025年第5期1899-1911,共13页
铁路运输需确保列车行驶的安全性和舒适性。在途经大跨桥梁时,大风时常引起桥梁结构的风致振动,同时,行驶的列车与桥梁间会产生一定的振动,三者会形成特有的风−车−桥耦合效应,对行车安全和舒适性能造成影响。为此,以我国广东省沿海某超... 铁路运输需确保列车行驶的安全性和舒适性。在途经大跨桥梁时,大风时常引起桥梁结构的风致振动,同时,行驶的列车与桥梁间会产生一定的振动,三者会形成特有的风−车−桥耦合效应,对行车安全和舒适性能造成影响。为此,以我国广东省沿海某超大桥宽的公铁同层多跨斜拉桥为例,以一列8车编组的ICE3型列车为研究对象,通过风洞试验获得桥梁主梁及列车的气动三分力系数,并用谐波合成法模拟脉动风场。随后利用ANSYS和SIMPACK进行联合仿真,建立横风作用下列车−轨道−斜拉桥耦合振动分析模型,分析风荷载对车−桥耦合振动的影响,研究车−桥系统动力响应随列车车速和平均风速变化的规律。结果表明:对于此种超大桥宽的公铁同层斜拉桥,列车车速越大,行车安全性和舒适性越低,其中中车最差。当车速从150 km/h增加到250 km/h时,中车的轮重减载率、轮轴横向力、脱轨系数和倾覆系数分别增加96.9%、244.4%、206.0%和154.2%,但仍满足规范要求;中车横、竖向加速度以及横、竖向Sperling指数分别增加95.4%、67.7%和19.7%、14.8%。当风速从0增加到30 m/s时,中车的轮重减载率、轮轴横向力、脱轨系数和倾覆系数分别增加55.8%、203.8%、172.8%和45.1%,此时轮轴横向力将超过规范限值,应当降速行驶;中车横、竖向加速度和竖向Sperling指数分别增加34.3%、91.8%和10.1%,但横向Sperling指数对风速变化不敏感。此外,桥跨各跨中的加速度随车速和风速的增加显著增大。 展开更多
关键词 超大 公铁同层 风−车−桥耦合振动 安全 舒适性
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Effects of fundamental factors on coupled vibration of wind-rail vehicle-bridge system for long-span cable-stayed bridge 被引量:11
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作者 张明金 李永乐 汪斌 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第5期1264-1272,共9页
In a wind-vehicle-bridge(WVB) system,there are various interactions among wind,vehicle and bridge.The mechanism for coupling vibration of wind-vehicle-bridge systems is explored to demonstrate the effects of fundament... In a wind-vehicle-bridge(WVB) system,there are various interactions among wind,vehicle and bridge.The mechanism for coupling vibration of wind-vehicle-bridge systems is explored to demonstrate the effects of fundamental factors,such as mean wind,fluctuating wind,buffeting,rail irregularities,light rail vehicle vibration and bridge stiffness.A long cable-stayed bridge which carries light rail traffic is regarded as a numerical example.Firstly,a finite element model is built for the long cable-stayed bridge.The deck can generally be idealized as three-dimensional spine beam while cables are modeled as truss elements.Vehicles are modeled as mass-spring-damper systems.Rail irregularities and wind fluctuation are simulated in time domain by spectrum representation method.Then,aerodynamic loads on vehicle and bridge deck are measured by section model wind tunnel tests.Eight vertical and torsional flutter derivatives of bridge deck are identified by weighting ensemble least-square method.Finally,dynamic responses of the WVB system are analyzed in a series of cases.The results show that the accelerations of the vehicle are excited by the fluctuating wind and the track irregularity to a great extent.The transverse forces of wheel axles mainly depend on the track irregularity.The displacements of the bridge are predominantly determined by the mean wind and restricted by its stiffness.And the accelerations of the bridge are enlarged after adding the fluctuating wind. 展开更多
关键词 wind-vehicle-bridge system coupled vibration long-span cable-stayed bridge fundamental factors
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