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Wind tunnel experiments for the validation of numericalmodels for outdoor sound propagation

机译:风洞实验用于验证室外声音传播的数值模型

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摘要

Since regulations concerning traffic noise are becoming more and more demanding, meteorological effects (turbulence, temperature and wind speed gradients) can no more be neglected in noise propagation prediction at long ranges. To validate numerical models such as Parabolic Equation approach or Boundary Elements Methods with modified Green’s functions, it is of high interest to collect experimental data obtained under controlled atmosphere. A measurement campaign has beenrnperformed in the wind tunnel of CSTB, Nantes (France). The objective of this experiment was to characterize the aerodynamic flow and the acoustic pressure during the sound propagation. A number of geometrical configurations (flat ground, embankment, with or without complex noise barrier, thernground surface being absorbing or not) and various wind profiles and turbulence intensities have been tested. A combination of traditional (hot wire probe) and recent (Particle Image Velocimetry, PIV) measurement techniques has been used in order to describe precisely the 2D wind speed field along the propagation as well as in the vicinity of the barrier where recirculation phenomenon occurs. For acousticians, experiments in wind tunnel are a good mean to improve their knowledge on outdoor sound propagation and to develop novel barrier shapes.
机译:由于有关交通噪声的法规要求越来越高,因此在远距离的噪声传播预测中,气象效应(湍流,温度和风速梯度)不再被忽略。为了验证具有修改后的格林函数的数值模型(如抛物线方程法或边界元法),收集在受控气氛下获得的实验数据非常重要。在法国南特的CSTB风洞中进行了一场测量运动。该实验的目的是表征声音传播过程中的空气动力流和声压。已经测试了许多几何形状(平坦的地面,路堤,有或没有复杂的隔音屏障,地面是否被吸收)以及各种风廓线和湍流强度。为了精确描述沿传播方向以及发生再循环现象的屏障附近的二维风速场,已将传统的(热线探针)和最新的(粒子图像测速,PIV)测量技术结合使用。对于声学家来说,在风洞中进行实验是提高他们对室外声音传播的认识并开发出新颖的屏障形状的好方法。

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  • 来源
  • 会议地点 Prague(CZ);Prague(CZ)
  • 作者单位

    Centre Scientifique et Technique du Batiment, 24 rue Joseph Fourier,rn38400 Saint Martin d’Hères, France Centre Acoustique LMFA UMR CNRS 5509 Ecole Centrale de Lyonrn36 Av. Guy de Collongue F-69134 Ecully Cedex, France maud.priour@cstb.fr;

    Centre Scientifique et Technique du Batiment, 24 rue Joseph Fourier,rn38400 Saint Martin d’Hères, France;

    Centre Scientifique et Technique du Batiment, 24 rue Joseph Fourier,rn38400 Saint Martin d’Hères, France;

    Centre Scientifique et Technique du Batiment, 24 rue Joseph Fourier,rn38400 Saint Martin d’Hères, France;

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