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Extending the Frequency Limits of 'Postage-Stamp PIV' to MHz Rates

机译:将“邮戳PIV”的频率限制扩展到MHz速率

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Two techniques have extended the effective frequency limits of postage-stamp PIV, in which a pulse-burst laser and very small fields of view combine to achieve high repetition rates. An interpolation scheme reduced measurement noise, raising the effective frequency response of previous 400-kHz measurements from about 120 kHz to 200 kHz. The other technique increased the PIV acquisition rate to very nearly MHz rates (990 kHz) by using a faster camera. Charge leaked through the camera shift register at these framing rates but this was shown not to bias the measurements. The increased framing rate provided oversampled data and enabled use of multi-frame correlation algorithms for a lower noise floor, increasing the effective frequency response to 240 kHz where the interrogation window size begins to spatially filter the data. Good agreement between the interpolation technique and the MHz-rate PIV measurements was established. The velocity spectra suggest turbulence power-law scaling in the inertial subrange steeper than the theoretical -5/3 scaling, attributed to an absence of isotropy.
机译:两种技术扩展了邮票PIV的有效频率限制,其中脉冲突发激光器和非常小的视野结合以实现高重复率。插值方案降低了测量噪声,提高了前400 kHz测量的有效频率响应,从约120kHz到200 kHz。其他技术通过使用更快的相机将PIV采集率增加到非常接近MHz的速率(990 kHz)。在这些框架速率下通过相机移位寄存器泄漏的电荷泄漏,但这显示出不偏向测量值。增加的帧速率提供了过采样的数据并使多帧相关算法能够为较低噪声底层使用,将有效频率响应增加到240 kHz,其中询问窗口大小开始在空间上过滤数据。建立了插值技术与MHz速率PIV测量之间的良好一致性。速度光谱提示围绕理论-5/3缩放的惯性区段陡峭的湍流幂律缩放,​​归因于不存在各向同性。

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