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首页> 外文期刊>Experiments in Fluids: Experimental Methods and Their Applications to Fluid Flow >Fast PSP measurements of wall-pressure fluctuation in low-speed flows: improvements using proper orthogonal decomposition
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Fast PSP measurements of wall-pressure fluctuation in low-speed flows: improvements using proper orthogonal decomposition

机译:快速测量低速流动中壁压力波动的PSP:使用适当的正交分解进行改进

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摘要

Fast pressure-sensitive paint (PSP) is very useful in flow diagnostics due to its fast response and high spatial resolution, but its applications in low-speed flows are usually challenging due to limitations of paint's pressure sensitivity and the capability of high-speed imagers. The poor signal-to-noise ratio in low-speed cases makes it very difficult to extract useful information from the PSP data. In this study, unsteady PSP measurements were made on a flat plate behind a cylinder in a low-speed wind tunnel (flow speed from 10 to 17 m/s). Pressure fluctuations (Delta P) on the plate caused by vortex-plate interaction were recorded continuously by fast PSP (using a highspeed camera) and a microphone array. Power spectrum of pressure fluctuations and phase-averaged Delta P obtained from PSP and microphone were compared, showing good agreement in general. Proper orthogonal decomposition (POD) was used to reduce noise in PSP data and extract the dominant pressure features. The PSP results reconstructed from selected POD modes were then compared to the pressure data obtained simultaneously with microphone sensors. Based on the comparison of both instantaneous Delta P and root-mean-square of Delta P, it was confirmed that POD analysis could effectively remove noise while preserving the instantaneous pressure information with good fidelity, especially for flows with strong periodicity. This technique extends the application range of fast PSP and can be a powerful tool for fundamental fluid mechanics research at low speed.
机译:快速压敏涂料(PSP)由于其快速响应和高空间分辨率而在流量诊断中非常有用,但由于涂料的压敏性和高速成像仪的能力有限,其在低速流量中的应用通常具有挑战性。在低速情况下,较差的信噪比使得很难从PSP数据中提取有用的信息。在这项研究中,不稳定的PSP测量是在低速风洞(流速从10到17 m / s)中的圆柱体后面的平板上进行的。通过快速的PSP(使用高速相机)和麦克风阵列连续记录由涡旋板相互作用引起的板上压力波动(ΔP)。比较了从PSP和麦克风获得的压力波动功率谱和相位平均Delta P,总体上显示出良好的一致性。适当的正交分解(POD)用于减少PSP数据中的噪声并提取主要压力特征。然后将从选定的POD模式重建的PSP结果与使用麦克风传感器同时获得的压力数据进行比较。通过将瞬时Delta P和Delta P的均方根进行比较,可以确认POD分析可以有效地去除噪声,同时保持瞬时保压信息的保真度,尤其是对于周期性较强的流动。该技术扩展了快速PSP的应用范围,可以成为低速基础流体力学研究的有力工具。

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