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High-speed (20 kHz) digital in-line holography for transient particle tracking and sizing in multiphase flows

机译:高速(20 kHz)数字在线全息术,用于在多相流中进行瞬时粒子跟踪和定径

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High-speed (20 kHz) digital in-line holography (DIH) is applied for 3D quantification of the size and velocity of fragments formed from the impact of a single water drop onto a thin film of water and burning aluminum particles from the combustion of a solid rocket propellant. To address the depth-of-focus problem in DIH, a regression-based multiframe tracking algorithm is employed, and out-of-plane experimental displacement accuracy is shown to be improved by an order-of-magnitude. Comparison of the results with previous DIH measurements using low-speed recording shows improved positional accuracy with the added advantage of detailed resolution of transient dynamics from single experimental realizations. The method is shown to be particularly advantageous for quantification of particle mass flow rates. For the investigated particle fields, the mass flows rates, which have been automatically measured from single experimental realizations, are found to be within 8% of the expected values. (C) 2016 Optical Society of America
机译:高速(20 kHz)数字在线全息术(DIH)用于3D量化碎片的大小和速度,该碎片是由单个水滴撞击到水薄膜上而形成的碎片,而铝的燃烧则燃烧了铝颗粒固体火箭推进剂。为了解决DIH中的景深问题,采用了基于回归的多帧跟踪算法,并且表明平面外实验位移精度提高了一个数量级。将结果与使用低速记录的先前DIH测量结果进行比较,可以显示出更高的位置精度,并且具有从单个实验实现中详细解析瞬态动力学的优势。示出该方法对于定量颗粒质量流率特别有利。对于所研究的粒子场,发现已经从单个实验实现中自动测量的质量流率在预期值的8%之内。 (C)2016美国眼镜学会

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