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考虑非平稳横风作用的列车-大跨斜拉桥 耦合系统动力响应
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Dynamic Response of Train-Long Span Cable-stayed Bridge Coupling System Considering Nonstationary Crosswind
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    摘要:

    为了研究非平稳横风对列车-大跨斜拉桥耦合系统的动力响应,首先使用 EMD (经验模态分解)方法对已有实测台风数据进行处理,获得台风的时变平均风速,将风谱中的 平均风速替换成时变平均风速,通过谐波合成法模拟得到非平稳横风脉动风速 . 使用有限元 软件 ANSYS和多体动力学软件 SIMPACK 建立列车-轨道-斜拉桥耦合分析模型,非平稳风荷 载包括时变平均风引起的静风力和非平稳脉动风引起的抖振力. 计算了风-列车-大跨斜拉桥 耦合系统的动力响应,对比分析了平稳风与非平稳风作用下列车和斜拉桥的加速度响应以及 桥上列车的安全舒适性指标. 结果表明:对比平稳风,在非平稳风作用下列车的横向和竖向最 大加速度分别增大了12%和23%,桥梁的横向和竖向最大加速度分别增大了16%和7%,列车 的轮重减载率、轮轨横向力、脱轨系数分别增大了9%、14%和4%,列车的横向Sperling指标有 一定的增大,从而降低了桥上行车的安全性和舒适性;频谱图显示在低频区域内,非平稳风作 用下列车的竖向振动、横向振动和桥梁的横向振动会更加强烈.

    Abstract:

    In order to study the dynamic response of a non-stationary crosswind on the train-long span cablestayed bridge coupling system,the EMD(Empirical Mode Decomposition)method is used to process the existing measured typhoon data to obtain the time-varying average wind speed of the typhoon. The average wind speed in the wind spectrum is replaced by the time-varying average wind speed,and the non-stationary crosswind fluctuating windspeed is simulated by the weighted amplitude wave superposition method. The finite element software ANSYS and the multi-body dynamics software SIMPACK are used to establish a train-track-cable-stayed bridge coupling analysis model. The non-stationary wind load includes the static wind caused by the time-varying average wind and the buffeting force caused by the non-stationary fluctuating wind. The dynamic response of the coupled system of wind-train-long-span cable-stayed bridge is calculated,and the acceleration responses of the train and cablestayed bridge under the action of stationary wind and non-stationary wind as well as the safety and comfort indexes of the train on the bridge are compared and analyzed. The results show that compared with the stationary wind,the maximum lateral and vertical acceleration of the train are increased by 12 % and 23 % under the action of nonstationary wind,respectively,and the maximum lateral and vertical acceleration of the bridge are increased by 16 % and 7 %,respectively. The wheel load reduction rate,wheel-rail lateral force and derailment coefficient of the train increase by 9 %,14 % and 4 %,respectively. The lateral Sperling index of the train increases to a certain extent, thus reducing the safety and comfort of driving on the bridge. The spectrum shows that in the low frequency region, the vertical vibration,transverse vibration of the train and the transverse vibration of the bridge are more intense un? der the action of non-stationary wind.

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何旭辉 ,谭凌飞 ,顾建华 ,敬海泉 ,李书昌 .考虑非平稳横风作用的列车-大跨斜拉桥 耦合系统动力响应[J].湖南大学学报:自然科学版,2022,49(5):92~100

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  • 在线发布日期: 2022-06-06
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