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Calculation of noise from railway bridges and viaducts: Experimental validation of a rapid calculation model

机译:铁路桥梁和高架桥的噪声计算:快速计算模型的实验验证

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The noise emitted by a railway bridge or viaduct under traffic can, in principle, be calculated using finite element techniques that take account of the specific geometry of the bridge, but for high frequencies, where the modal density is large, this can be very computationally intensive. This means that the benefits of performing large parametric design studies are often overshadowed by the time taken to complete them. Here, a rapid calculation model is described for the vibration power transfer from the rail into the bridge that is coupled with the SEA method for vibration power propagation and noise radiation. This relies less on the exact geometry of the bridge and more on its general characteristics. The model has recently been developed to represent the coupling between the rail and bridge at low frequencies and the mobility of the support girder at high frequencies with greater detail. It is used here to evaluate the noise and vibration of a concrete-steel composite viaduct. The predictions are then compared with real experimental noise and vibration data taken from the viaduct under traffic. (c) 2006 Elsevier Ltd. All rights reserved.
机译:原则上,铁路桥梁或高架桥在交通中产生的噪声可以使用有限元技术来计算,该技术应考虑桥梁的特定几何形状,但对于模态密度较大的高频,这可以通过计算实现密集的。这意味着执行大型参数设计研究的好处常常被完成它们所花费的时间所掩盖。在此,描述了一种用于从轨道到桥的振动功率传递的快速计算模型,该模型与SEA方法结合用于振动功率传播和噪声辐射。这较少地依赖于桥梁的确切几何形状,而更多地取决于其一般特性。最近开发了该模型,以更详细地表示低频下的铁路和桥梁之间​​的耦合以及高频下的支撑梁的移动性。在此用于评估混凝土-钢复合高架桥的噪声和振动。然后,将预测结果与从高架桥交通中获取的真实实验噪声和振动数据进行比较。 (c)2006 Elsevier Ltd.保留所有权利。

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