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Quantifying Particle Numbers and Mass Flux in Drifting Snow

机译:量化飘雪中的粒子数和质量通量

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We compare two of the most common methods of quantifying mass flux, particle numbers and particle-size distribution for drifting snow events, the snow-particle counter (SPC), a laser-diode-based particle detector, and particle tracking velocimetry based on digital shadowgraphic imaging. The two methods were correlated for mass flux and particle number flux. For the SPC measurements, the device was calibrated by the manufacturer beforehand. The shadowgrapic imaging method measures particle size and velocity directly from consecutive images, and before each new test the image pixel length is newly calibrated. A calibration study with artificially scattered sand particles and glass beads provides suitable settings for the shadowgraphical imaging as well as obtaining a first correlation of the two methods in a controlled environment. In addition, using snow collected in trays during snowfall, several experiments were performed to observe drifting snow events in a cold wind tunnel. The results demonstrate a high correlation between the mass flux obtained for the calibration studies () and good correlation for the drifting snow experiments (). The impact of measurement settings is discussed in order to reliably quantify particle numbers and mass flux in drifting snow. The study was designed and performed to optimize the settings of the digital shadowgraphic imaging system for both the acquisition and the processing of particles in a drifting snow event. Our results suggest that these optimal settings can be transferred to different imaging set-ups to investigate sediment transport processes.
机译:我们比较了两种最常见的量化质量流量,漂移雪事件的粒子数量和粒度分布的方法,雪粒子计数器(SPC),基于激光二极管的粒子检测器和基于数字的粒子跟踪测速阴影成像。两种方法的质量通量和颗粒数通量相关。对于SPC测量,该设备事先由制造商校准。影影成像方法直接从连续图像中测量粒径和速度,并且在每次进行新测试之前,都要重新校准图像像素长度。用人工分散的沙子颗粒和玻璃珠进行的校准研究为阴影成像提供了合适的设置,并在受控环境中获得了这两种方法的第一关联。此外,利用降雪期间收集在托盘中的积雪,进行了一些实验,以观察冷风洞中的飘雪事件。结果表明,在校准研究中获得的质量通量()与飘雪实验中的良好相关性()之间具有高度相关性。为了可靠地量化飘雪中的颗粒数量和质量通量,讨论了测量设置的影响。该研究的设计和执行旨在优化数字阴影成像系统的设置,以用于飘雪事件中颗粒的采集和处理。我们的结果表明,这些最佳设置可以转移到不同的成像设置中,以研究沉积物的运输过程。

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