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Prediction of atmospheric sound propagation subject to parameter variability of atmospheric turbulence

机译:大气湍流参数变异性的大气声音传播预测

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As part of the project "WEA-Akzeptanz" an atmospheric sound propagation model is developed to predict the sound immission from a wind turbine. The CNPE (Crank Nicolson Parabolic Equation) method, based on the Helmholz equation is chosen as the sound propagation model. Complex environmental conditions such as atmospheric turbulence can be implemented with a random number generator in this model. Atmospheric turbulence is characterized by temporal fluctuating wind speed and temperature, which has an impact on the sound propagation and leads to scattered sound waves due to the turbulent eddies. Accordingly, the input of the model contains parameter variability. As a result, the sound pressure level at the point of immission also has a high variability and is not entirely deterministic. In this work, the influence of random input variables due to atmospheric turbulence on the uncertainty of the resulting sound pressure level is investigated. Using this, the probability of the predicted sound pressure level can be quantified to get a better idea of sound immission under complex atmospheric conditions.
机译:作为项目的一部分,“Wea-Akzeptanz”是开发了大气声音传播模型,以预测风力涡轮机的声音。基于亥姆霍尔斯方程式的CNPE(曲柄尼古尔森抛物线方程)方法作为声音传播模型。复杂的环境条件,例如大气湍流,可以在该模型中用随机数发生器实现。大气湍流的特征在于时间波动的风速和温度,这对声音传播产生了影响,并且由于湍流漩涡而导致散射的声波。因此,该模型的输入包含参数变异性。结果,免疫点处的声压级也具有高变异性并且不完全确定。在这项工作中,研究了由于大气湍流引起的随机输入变量对所得声压级的不确定度的影响。使用这一点,可以量化预测声压水平的概率,以便在复杂的大气条件下更好地了解声音。

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