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Experimental prediction of the vibration response of panels under a turbulent boundary layer excitation from sensitivity functions

机译:灵敏度函数湍流边界层激励下面板振动响应的实验预测

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摘要

This study aims at validating an experimental method for characterizing the vibration behavior of panels excited by a turbulent boundary layer (TBL) excitation as a possible alternative to standard means like wind tunnels or in situ tests. The approach takes advantage of an explicit separation of the excitation contribution from the dynamic behavior of the panel. Based on the measurement of deterministic transfer functions on the panel, called "sensitivity functions," which are then combined with either measurements or a model of the wall-pressure fluctuations induced by the TBL excitation, the vibration response under such an excitation can be retrieved. For validation purposes, the wall-pressure fluctuations of the turbulent flow generated in an anechoic wind tunnel are measured with a flush-mounted microphone array. The decay rates and the convection velocity, which mainly characterize the excitation, are extracted from these measurements. The plate velocity response to this excitation is estimated following the proposed method using the measured sensitivity functions and the model of Mellen fed with experimentally estimated decay rates and convection velocity. A comparison between a directly measured vibration auto-spectrum under the actual flow and the one predicted following the suggested method shows satisfactory agreement. (C) 2018 Acoustical Society of America.
机译:本研究旨在验证的实验方法用于表征通过湍流边界层激发板的振动特性(TBL)激发作为一种可能的替代标准手段像风洞或原位测试。该方法利用从面板的动态行为的激励贡献的明确分离的优点。基于面板上确定性传递函数,被称为“灵敏度函数,”然后将其与任一测量或通过TBL激发引起的壁的压力波动的模型相结合的测定中,这样的激励下的振动响应可以检索。出于验证的目的,在消声风洞产生的紊流的壁压力波动与齐平安装麦克风阵列测量。衰减速率和对流速度,主要表征激励,从这些测量中提取。板速度响应于该激励来估计使用所测量的灵敏度函数和梅伦与实验估计的衰减率和对流速度供给的模型以下所提出的方法。实际流量下直接测量振动自动光谱和所提出的方法示出了令人满意的协议之后的一个预测之间的比较。 (c)2018年声学学会。

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