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首页> 外文期刊>Journal of Sandwich Structures and Materials >Applying constrained layer damping to reduce vibration and noise from a steel-concrete composite bridge: An experimental and numerical investigation
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Applying constrained layer damping to reduce vibration and noise from a steel-concrete composite bridge: An experimental and numerical investigation

机译:应用约束层阻尼以减少钢混凝土复合桥振动和噪声:实验性和数值调查

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摘要

Structure-borne noise from railway bridges has become increasingly severe due to increased train speeds and axle loads. Constrained layer damping can suppress structural vibration and noise considerably across a wide frequency range by dissipating vibrational energy via damping layer shear deformation. This paper proposes a theoretical method of calculating the train-induced vibration and noise of a constrained layer damping-enhanced railway bridge based on the train-track-bridge coupled vibration, the modal strain energy method, and statistical energy analysis. First, the vibration responses of bridge decks were obtained via train-track-bridge coupled vibration calculations. Second, the constrained layer damping subsystem modal loss factors were determined via modal strain energy analysis and converted to damping loss factors in 1/3 octave band. Third, upon substituting the vibration energies of the decks and the damping loss factors of constrained layer damping subsystems into the statistical energy analysis power balance equations, the transmitted vibration energy results from various bridge subsystems were determined by solving the referenced equations. The structure-borne noise from the bridge was finally determined by analyzing the vibratory energies of all of the bridge subsystems using vibro-acoustic theory. Numerical analysis and field measurements of vibration and noise from a three-span steel-concrete composite bridge before and after constrained layer damping installation were performed. The predicted train-induced vibration and noise agreed well with the measured results. The stringer web and flange vibration velocity levels were reduced by 10.5 dB and 6.1 dB, respectively, and the sound pressure level at a measurement point 25 m (horizontal) from the track centerline and 1.5 m off the ground decreased by 4.3 dB(A).
机译:由于火车速度和轴载,铁路桥梁的结构传承噪声变得越来越严重。通过阻尼层剪切​​变形散发振动能量,约束层阻尼可以在宽频率范围内显着抑制结构振动和噪声。本文提出了一种基于火车轨道桥耦合振动,模态应变能量法和统计能量分析来计算约束层阻尼增强铁路桥的训练振动和噪声的理论方法。首先,通过火车轨道 - 桥耦合振动计算获得桥甲板的振动响应。其次,通过模态应变能量分析确定约束层阻尼子系统模态损耗因子,并转换为1/3八度音频带中的阻尼损耗因子。第三,在将约束层阻尼子系统的振动能量替换为统计能量分析功率平衡方程中,通过求解参考方程来确定来自各种桥板子系统的透射振动能量。最终通过使用振动声学理论分析所有桥接子系统的振动能量来实现来自桥梁的结构噪声。进行了三跨钢 - 混凝土复合桥的振动和噪声的数值分析和噪声测量,在约束层阻尼装置之前和之后。预测的火车诱导的振动和噪声与测量结果很好。纵梁幅材和法兰振动速度水平分别减少了10.5dB和6.1dB,以及从轨道中心线的测量点25 m(水平)处的声压水平,从地面偏离1.5米下降4.3 dB(a) 。

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