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Vibration and sound radiation of a rotating train wheel subject to a vertical harmonic wheel–rail force 被引量:7
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作者 Tingsheng Zhong Gong Chen +3 位作者 Xiaozhen Sheng Xueyan Zhan Liqun Zhou Jian Kai 《Journal of Modern Transportation》 2018年第2期81-95,共15页
The rapid development of high-speed railway networks requires advanced methods for analysing vibration and sound radiation characteristics of a fast rotating train wheel subject to a vertical harmonic wheel-rail force... The rapid development of high-speed railway networks requires advanced methods for analysing vibration and sound radiation characteristics of a fast rotating train wheel subject to a vertical harmonic wheel-rail force. In order to consider the rotation of the wheel and at the same time increase the computational efficiency, a procedure is adapted in this paper taking advantage of the axial symmetry of the wheel. In this procedure, a recently developed 2.5D finite element method, which can consider wheel rotation but only requires a 2D mesh over a cross section containing the wheel axis, is used to calculate the vibration response of the wheel. Then, the vibration response of the wheel is taken as acoustic boundary condition and the 2.5D acoustic boundary element method, which only requires a 1D mesh over the boundary of the above cross section, is utilised to calculate the sound radiation of the wheel. These 2.5D methods and relevant programs are validated by comparing results from this procedure with those from conventional 3D analyses using commercial software. The comparison also demonstrates that these 2.5D methods have a much higher computational efficiency. Using the 2.5D methods, we study the wheel rotation speed influences on the factors including the vertical receptance of the wheel at wheel-rail contact point, sound pressure level at a pre-defined standard measurement point, radiated sound power level, directivity of the radia- tion, and contribution of each part of the wheel. It can be concluded that the wheel rotation speed splits most peaks of the vertical receptance at the wheel-rail contact point, sound pressure levels at the field, and the sound power level of the wheel into two peaks. The directivity and power contribution of the wheel are also significantly changed by the wheel rotation speed. Therefore, the rotation of a train wheel should be taken into account when calculating its vibration and sound radiation. 展开更多
关键词 Train wheel Vibration response Soundradiation 2.5d FEM. 2.5d bem Rotation effect
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地铁轨道扣件和减振垫参数的减振性能最优匹配 被引量:5
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作者 张皓迪 何远鹏 +2 位作者 王星欢 姜晓文 圣小珍 《中南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2022年第6期2382-2392,共11页
为探究工程中不同减振结构相互耦合作用下的减振效果,以深圳地铁一号线的某一区间段为例,运用2.5维有限元−边界元法与车辆−轨道耦合动力学,建立环境振动预测模型,计算得到隧道壁振动,并与现场测试结果进行对比验证。在此基础上,以目前... 为探究工程中不同减振结构相互耦合作用下的减振效果,以深圳地铁一号线的某一区间段为例,运用2.5维有限元−边界元法与车辆−轨道耦合动力学,建立环境振动预测模型,计算得到隧道壁振动,并与现场测试结果进行对比验证。在此基础上,以目前工程中最常用的2种减振措施(减振扣件和减振垫)为研究对象,探究轨道扣件刚度、损耗因子和减振垫隔振频率的最优匹配策略。研究结果表明:减振垫的隔振频率对环境振动的影响存在临界值,该临界值在30 Hz附近且与扣件阻尼有关;只有当隔振频率低于临界值时,减振垫才有减振效果,反之则会放大隧道壁振动;当选取较低隔振频率的减振垫时,应配合垂向刚度较大的扣件,能取得较好的减振效果;扣件损耗因子的增大会降低轮轨共振频率附近的振动级,从而降低隧道壁Z振级整体;为了指导工程设计,得到不同减振等级对应的扣件与减振垫的参数区域图。 展开更多
关键词 地铁 环境振动 2.5维有限元−边界元法 参数最优匹配 扣件与减振垫
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