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A hybrid methodology for the assessment of railway-induced ground-borne noise and vibration in buildings based on experimental measurement in the ground surface

机译:基于地表实验测量的建筑物中铁路引起的地面噪声和振动评估的混合方法

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In this paper, a hybrid experimentalumerical methodology for the assessment of railway-induced ground-borne noise and vibration in buildings based on experimental measurement in the ground surface is presented. This methodology is specifically designed for the prediction of railway-induced vibration in buildings to be constructed close to operative railway infrastructures. A set of virtual forces applied in the ground, as a model of the incident wave field induced by the railway infrastructure, are obtained from vibration experimental measurements in the surface of the ground close to the future building foundation. These virtual forces can be subsequently applied on a model of the building/soil system to obtain a prediction of the vibration that will be induced by the existing railway track to the studied building. In the present work, this methodology is presented and validated numerically by a two-dimensional example and a two-and-a-half-dimensional one. The proposed hybrid model simplifies the usual numerical procedure for these problems, since a model of the railway infrastructure is not longer required. Moreover, it reduces the uncertainty of the prediction due to the use of experimental measurements of the particular site to be studied. In addition, it provides a higher accuracy and flexibility than empirical models based on experimental transmissibility functions between the ground surface and the building.
机译:本文提出了一种混合的实验/数值方法,用于基于地面的实验测量来评估建筑物中铁路引起的地面传播的噪声和振动。该方法是专门为预测将在运行中的铁路基础设施附近建造的建筑物中的铁路引起的振动而设计的。通过对靠近未来建筑物基础的地面进行振动实验测量,可以得到一组施加在地面上的虚拟力,作为铁路基础设施引起的入射波场的模型。随后可以将这些虚拟力施加到建筑物/土壤系统的模型上,以获得对将由现有铁路轨道引起的到所研究建筑物的振动的预测。在本工作中,将通过二维示例和二维半示例来介绍和验证此方法。由于不再需要铁路基础设施的模型,因此提出的混合模型简化了解决这些问题的常用数值程序。而且,由于使用了要研究的特定位置的实验测量结果,它减少了预测的不确定性。此外,与基于地面和建筑物之间的实验传递函数的经验模型相比,它提供了更高的准确性和灵活性。

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