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A Note on Equilibrium Turbulent Boundary Layer Wall Pressure Models

机译:有关均衡湍流边界层壁压模型的说明

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Turbulent boundary layers are a significant source of vibration and noise for vehicles moving through a fluid medium. Describing the forcing function for this noise source is an active area of research. Empirical models are commonly used in system noise models. Two common models as discussed by Mellen are separable and non-separable models. The separable models are in a class generally known as Corcos models. The separable models postulate that the wall pressure space time statistics are a function of time times a function of downstream separation times a function of cross stream separation. The non-separable models postulate that the space time statistics are a function of time times a function of space with the downstream and cross stream separation being coupled. Two examples of the non-separable models are Chase and Smol-yakov-Tkachenko. These models were used to compare to existing data from the MIT Low-Noise/Low-Turbulence Wind Tunnel as reported by Martini. Martini made an effort to make low wavenumber measurements using both microphone arrays and plate structures similar to Martin and Jameson. The performance of the separable and nonseparable models are compared and contrasted.
机译:湍流边界层是通过流体介质移动的车辆的重要振动和噪声来源。描述该噪声源的强制功能是一个有效的研究领域。经验模型通常用于系统噪声模型。由Mellen讨论的两个常见模型是可分离和不可分散的模型。可分离模型在一般称为CORCOS模型的课程中。假设壁压空间时间统计的可分离模型是时间乘以下游分离时间的函数交叉流分离的函数。假设空间时间统计的不可分级模型是时间乘以空间与下游的函数的函数和交叉流分离。不可分离模型的两个例子是Chase和Smol-Yakov-Tkachenko。这些模型用于与Martini报道的MIT低噪声/低湍流风隧道的现有数据进行比较。马蒂尼尼致力于使用与Martin和Jameson类似的麦克风阵列和板结构进行低波浪测量。将可分离和不可分割模型的性能进行了比较和对比。

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