Department of Environmental and Applied Fluid Mechanics, von Karman Institute for Fluid Dynamics, 72 Chaussèe de Waterloo, Rhode-Saint-Genèse B-1640, Belgium.
J Acoust Soc Am. 2011 Dec;130(6):3788-96. doi: 10.1121/1.3652880.
An anechoic wind tunnel dedicated to fan self-noise studies has been designed and constructed at the von Karman Institute The multi-chamber, mass flow driven design allows for all fan performance characteristics, aerodynamic quantities (e.g., wake turbulence measurements), and acoustic properties to be assessed in the same facility with the same conditions. The acoustic chamber performance is assessed using the optimum reference method and found to be within the ISO 3745 standards down to 150 Hz for pure tone and broadband source mechanisms. The additional influence of installation effects of an aerodynamic inlet was found to create a scattered sound field only near the source location, while still providing good anechoic results at more distant sound pressure measurement positions. It was found to have inflow properties, span-wise uniformity, and low turbulence intensity, consistent with those desired for fan self-noise studies.
已在冯·卡门研究所设计和建造了一个专门用于风扇自噪声研究的无声风洞。多腔室、质量流量驱动设计允许在相同的设施和相同的条件下评估所有风扇性能特性、空气动力量(例如,尾流湍流测量)和声学特性。使用最佳参考方法评估了声学室性能,发现其符合 ISO 3745 标准,在 150 Hz 以下,对于纯音和宽带源机制。发现空气动力入口的安装效应的额外影响仅在声源位置附近产生散射声场,而在更远的声压测量位置仍提供良好的无声效果。它具有进气特性、展向均匀性和低湍流强度,与风扇自噪声研究所需的特性一致。