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首页> 外文期刊>Journal of Sound and Vibration >Vibration and noise characteristics of an elevated box girder paved with different track structures
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Vibration and noise characteristics of an elevated box girder paved with different track structures

机译:用不同轨道结构铺设电箱梁的振动和噪声特性

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The vibration and noise of elevated concrete box girders (ECBGs) are now among the most concerned issues in the field of urban rail transit (URT) systems. The track structure, belonging to critical load-transfer components, directly affects the characteristics of loading transmission into bridge, as well as the noise radiation from such system, which further determines the reduction of vibration and noise in ECBGs significantly. In order to investigate the influence of different track structures on the vibration and structure-borne noise of ECBGs, a frequency-domain theoretical model of vehicle-track coupled system, taking into account the effect of multiple wheels, is firstly established in the present work. The analysis of track structures focuses on embedded sleepers, trapezoidal sleepers, and steel-spring floating slabs (SSFS). Next, a vibration and noise field test was performed, with regard to a 30m simple supported ECBG (with the embedded-sleeper track structure) of an URT system. Based on the tested results, two numerical models, involving a finite element model for the vibration analysis, as well as a statistical energy analysis (SEA) model for the prediction of the noise radiation, are established and validated. The results of the numerical simulations and the field tests are well matched, which offers opportunities to predict the vibration and structure-borne noise of ECBGs by the proposed modelling methodology. From the comparison between the different types of track structures, the spatial distribution and reduction effect of vibration and noise are lastly studied. The force applied on ECBG is substantially determined by both the wheel-rail force (external factor) and the transmission rate of track structure (internal factor). The SSFS track is the most effective for vibration and noise reduction of ECBGs, followed in descending order by the trapezoidal-sleeper and embedded-sleeper tracks. The above result provides a theoretical basis for the vibration
机译:升高的混凝土箱梁(ECBG)的振动和噪声现在是城市轨道交通(URT)系统领域最有关的问题之一。轨道结构,属于临界负载转移组件,直接影响装载传输到桥梁的特性,以及这种系统的噪声辐射,这进一步决定了ECBG的振动和噪声显着降低。为了调查不同轨道结构对ECBG振动和结构噪声的影响,首先在本作工作中建立了车辆轨道耦合系统的频域理论模型,考虑了多个轮子的效果。轨道结构的分析侧重于嵌入式睡眠机,梯形枕木和钢春浮板(SSF)。接下来,关于30M简单的支持ECBG(具有嵌入式睡眠轨道结构)的URT系统的30M简单的ecbg(与嵌入式卧式轨道结构)进行了振动和噪声场测试。基于测试结果,建立和验证了两个数值模型,涉及用于振动分析的有限元模型,以及用于预测噪声辐射的统计能量分析(SEA)模型。数值模拟和现场测试的结果非常匹配,这提供了通过提出的建模方法预测ECBG的振动和结构传承噪声的机会。根据不同类型的轨道结构之间的比较,最后研究了振动和噪声的空间分布和减少效果。施加在ECBG上的力基本上由轮轨力(外部因子)和轨道结构(内部因子)的传输速率决定。 SSFS轨道是ECBG的振动和降噪最有效的,然后按梯形卧铺和嵌入式卧铺轨道降序。以上结果为振动提供了理论依据

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