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100-kHz Burst-Mode Particle Image Velocimetry: Space-Time Correlations and Considerations for Spatial and Temporal Resolution

机译:100kHz突发模式粒子图像测速:时空相关性和时空分辨率的注意事项

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100-kHz particle image velocimetry is demonstrated using a double-pulsed burst-mode laser with record length of 100 ms. Pulse doublets with inter-pulse spacing of 1-5 μs and repetition rate of 100 kHz are generated using a fiber-based oscillator and amplified through an all-diode pumped burst-mode amplifier. Pre-compensation of oscillator pulse width and pulse intensity enable control of output pulse energy even for unequally spaced pulse sequences. Spatial and temporal resolution of the velocity measurements is quantified and demonstrated to be sufficient for investigating space-time correlations in highly turbulent diffusion jets with jet-diameter Reynold's Numbers from 14,000-43,000. Quantitative assesments of standard integral time and length scale definitions are made along with highly resolved space-time correlations and compared with Taylor's Frozen Turbulence Hypothesis for turbulent flows.
机译:使用双脉冲猝发模式激光器演示了100 kHz粒子图像测速仪,记录长度为100 ms。使用基于光纤的振荡器生成脉冲间隔为1-5μs,重复频率为100 kHz的脉冲双峰,并通过全二极管泵浦突发模式放大器进行放大。振荡器脉冲宽度和脉冲强度的预补偿甚至可以控制不均匀间隔的脉冲序列,从而控制输出脉冲能量。速度测量的时空分辨率已被量化,并被证明足以研究高度湍流的扩散射流的时空相关性,射流直径的雷诺数为14,000-43,000。对标准积分时间和长度标度定义进行定量评估,以及高度解析的时空相关性,并将其与湍流的泰勒冻结湍流假说进行比较。

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