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Application of holography and automated image processing for laboratory experiments on mass and fall speed of small cloud ice crystals

机译:全息术及自动图像处理在实验室实验对小云冰晶的质量和秋季速度的应用

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An ice cloud chamber was developed at the Johannes Gutenberg University of Mainz for generating several thousand data points for mass and sedimentation velocity measurements of ice crystals with sizes less than 150μm. Ice nucleation was initiated from a cloud of supercooled droplets by local cooling using a liquid nitrogen cold finger. Three-dimensional tracks of ice crystals falling through the slightly supersaturated environment were obtained from the reconstruction of sequential holographic images, automated detection of the crystals in the hologram reconstructions, and particle tracking. Through collection of the crystals and investigation under a microscope before and after melting, crystal mass was determined as a function of size. The experimentally obtained mass versus diameter (m(D)) power law relationship resulted in lower masses for small ice crystals than from commonly adopted parameterizations. Thus, they did not support the currently accepted extrapolation of relationships measured for larger crystal sizes. The relationship between Best (X) and Reynolds (Re) numbers for columnar crystals was found to be X=15.3?Re1.2, which is in general agreement with literature parameterizations.
机译:冰云室是在Johannes Gutenberg大学开发的Mainz大学,用于为尺寸小于150μm的冰晶的质量和沉降速度测量的数千个数据点。使用液氮冷手指通过局部冷却从超冷液滴的云开始甲基核。从顺序全息图像的重建获得通过稍饱经图的重建获得逐渐过饱和环境的三维轨道,自动检测全息图重建中的晶体,以及颗粒跟踪。通过在熔化之前和之后的显微镜下收集晶体和研究,确定晶体质量为尺寸的函数。实验获得的质量与直径(m(d))电力法关系导致小冰晶的较低块状,而不是常用的参数化。因此,它们不支持当前接受的对较大晶体尺寸测量的关系的外推。发现柱状晶体的最佳(x)和雷诺(Re)编号之间的关系是x = 15.3?Re1.2,其与文献参数化一致。

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