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Effect of Rail Irregularities and Rail Pad on Track Vibration and Noise

机译:轨道辐射焊盘对轨道振动和噪声的影响

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This paper focuses on the effect of short and long wavelength track irregularities and rail pads on train induced vibration and noise using a train-track interaction model. An Indian rail vehicle is modelled as a spring-mass-damper system, and a ballasted track structure is modelled as an infinite rail resting on the viscoelastic foundation. Long-wavelength track irregularity is obtained from measured field data; however, short-wavelength track irregularity is generated using Sato track spectrum. It is observed that vibration and noise levels are not only higher for short-wavelength compared to long-wavelength but also exceed the limits imposed by the Indian Railway standards. Thus, track properties are modified by varying stiffness and damping of rail pads to reduce vibration and noise levels. The stiffer pads reduced vibration level in the range of 7dB-24dB and noise level in the range of 8dBA-14dBA; hence, stiffer pads are recommended for the ballasted track. Moreover, track properties for short-wavelength also keep vibration and noise levels within the permissible limit for long-wavelength. Thus, modification of track properties based on only short-wavelength irregularity is required.
机译:本文侧重于使用火车轨道交互模型的训练诱导振动和噪声的短期和长波长的效果和轨道焊盘。印度铁路车辆被建模为弹簧 - 质量阻尼系统,并且压载轨道结构被建模为粘弹性基础上的无限轨道。从测量的现场数据获得长波长轨道不规则性;但是,使用佐藤轨道光谱产生短波长轨道不规则性。观察到,与长波长相比,振动和噪声水平不仅适用于短波长,而且还超过印度铁路标准所施加的限制。因此,通过改变轨道垫的刚度和阻尼来修改轨道特性以减少振动和噪声水平。更硬的垫在8dBa-14dBa范围内降低7dB-24dB和噪声水平的振动水平;因此,推荐用于压载轨道的更硬垫。此外,用于短波长的轨道特性也保持在长波长的允许极限内的振动和噪声水平。因此,需要基于仅基于短波长不规则性的轨道特性的修改。

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