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首页> 外文期刊>Experiments in Fluids: Experimental Methods and Their Applications to Fluid Flow >Spectral signal quality of fast pressure sensitive paint measurements in turbulent shock-wave/boundary layer interactions
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Spectral signal quality of fast pressure sensitive paint measurements in turbulent shock-wave/boundary layer interactions

机译:湍流冲击波/边界层相互作用中快速压敏漆测量的光谱信号质量

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摘要

This study presents a critical investigation of the signal quality obtained using candidate fast pressure sensitive paint measurements in realistic, spectrally complex flows. The evaluations focus on characterizing the importance of the paint layer frequency response in conjunction with the fundamental signal-to-noise ratio limitations of the imaging system. Fast fluoro-isopropyl-butyl polymer-based paint is used primarily because of an identified characteristic attenuation pattern. Complementary high-speed pressure sensitive paint and wall static pressure measurements are performed in a turbulent, separated, scooped compression ramp shock-wave/boundary layer interaction at Mach 2.5 using a sampling rate of 4 kHz. The results reveal a systematic underprediction of the RMS pressure due to the limited frequency response of the paint. A simple frequency domain correction methodology utilizing the experimental data and a diffusion-based model of the paint response are employed to compensate for these effects. A method for determining the spectral signal-to-noise ratio of the imaging system is then presented, which is found to impose a major constraint on the upper limit of the resolvable pressure frequency. The correction is observed to provide a significant improvement in the agreement between the pressure sensitive paint and transducers, but only below the noise-dominated cutoff frequency. The relative significance of these factors is then investigated for polymer-ceramic-based, 8 kHz measurements of a planar compression ramp shock-wave/boundary layer interaction in a rectangular channel.
机译:本研究提出了在现实,光谱复杂流中使用候选快速压力敏感涂料测量获得的信号质量的关键研究。评估侧重于结合成像系统的基本信噪比限制的涂层层频率响应的重要性。基于快的氟 - 异丙基 - 丁基聚合物的涂料主要是因为鉴定的特征衰减图案。使用4kHz的采样率,在Mach 2.5的湍流,分离的,铲碎的压缩斜坡冲击波/边界层相互作用中进行互补的高速压力敏感涂料和壁静压测量。结果揭示了由于涂料的频率响应有限的rms压力的系统欠压。利用实验数据的简单频域校正方法和涂料响应的扩散模型来补偿这些效果。然后呈现用于确定成像系统的光谱信噪比的方法,发现对可分辨压力频率的上限施加主要限制。观察到校正以在压敏涂料和换能器之间的协议中提供显着改善,而是仅低于噪声主导的截止频率。然后研究了这些因子的相对意义,用于在矩形通道中的平面压缩斜面冲击波/边界层相互作用的基于聚合物 - 陶瓷的基于8kHz测量。

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