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Sizing of irregular particles using a near backscattered laser Doppler system

机译:使用近背散射激光多普勒系统确定不规则颗粒的尺寸

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摘要

A near backscattered laser Doppler system was presented to carry out velocity and size distribution measurements for irregular particles in two-phase flows. The technique uses amplitudes of particles Doppler signals to estimate the particle size distribution in a statistical manner. Holve's numerical inversion scheme is employed to unfold the dependence of the scattered signals on both particle trajectory and orientation through the measurement volume. The performance and error level of the technique were simulated, and several parameters including the number of particle samples, the fluctuation of irregular particle response function, inversion algorithms, and types of particle size distribution were extensively investigated. The results show that the size distributions for those irregular particles even with strong fluctuations in response function can be successfully reconstructed with an acceptable error level using a Phillips-Twomey-non-negative least-squares algorithm instead of a non-negative least-squares one. The measurement system was then further experimentally verified with irregular quartz sands. Using inversion matrix obtained from the calibration experiment, the average measurement error for the mixing quartz sands with a size range of 200-560 (mu)m are found to be about 23.3percent, which shows the reliability of the technique and the potential for it to be applied to industrial measurement.
机译:提出了一种近背向散射的激光多普勒系统,用于对两相流中的不规则粒子进行速度和尺寸分布测量。该技术使用粒子多普勒信号的振幅以统计方式估计粒子尺寸分布。 Holve的数值反演方案用于揭示散射信号对通过测量体积的粒子轨迹和方向的依赖性。模拟了该技术的性能和误差水平,并广泛研究了多个参数,包括颗粒样本数,不规则颗粒响应函数的波动,反演算法和粒径分布类型。结果表明,使用菲利普斯-Twomey-非负最小二乘算法代替非负最小二乘算法,即使在响应函数中存在较大波动,那些不规则粒子的尺寸分布也可以成功地以可接受的误差水平重建。 。然后,用不规则石英砂对测量系统进行进一步的实验验证。使用从校准实验获得的反演矩阵,发现尺寸范围为200-560μm的混合石英砂的平均测量误差约为23.3%,这表明了该技术的可靠性及其潜力应用于工业测量。

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