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three-dimensional imaging system for Analyses of Dynamic Droplet Impaction and Deposit Formation on Leaves

机译:叶片动态液滴撞击和沉积物形成的三维成像系统

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摘要

A system was developed to assess the dynamic processes of droplet impact, rebound, and retention on leaf surfaces with three-dimensional (3-D) images. The system components consisted of a uniform-size droplet generator, two high-speed digital video cameras, a constant-speed track, a leaf holder, and light sources. The droplet generator produced uniform droplets of 100 to 800 jum diameter. The video cameras captured droplet impact images from two different angle views for 3-D droplet impaction analyses. The camera speed used to capture images was up to 50,000frames per second, with image resolution up to 1280 x800 pixels. The constant-speed track was used to mount and drive the droplet generator at constant speeds ranging from 1.6 to 10 km K'. The leaf holder supported leaves at various orientations and distances from the droplet generator. Waxy and hairy leaves and water solutions amended with a non-ionic surfactant were used to verify the system functions. Five motion processes of droplets after they impacted on waxy and hairy leaf surfaces were observed: complete retention, split retention, slide retention, splash, and rebound. The droplet motion and deposition process before and after impact were quantitatively analyzed with a 3-D image program. In conclusion, the imaging system was able to precisely observe and quantitatively analyze droplet impaction and deposit formation on waxy or hairy leaves when droplet diameter, droplet discharge speed, droplet discharge height, nozzle travel speed, leaf surface orientation, and spray formulation were variables.
机译:开发了一种系统,用于使用三维(3-D)图像评估液滴撞击,回弹和滞留在叶片表面的动态过程。系统组件包括一个均匀大小的墨滴发生器,两个高速数码摄像机,一个恒速轨道,一个叶片支架和光源。液滴产生器产生直径为100至800 jum的均匀液滴。摄像机从两个不同的角度捕获了液滴冲击图像,以进行3-D液滴冲击分析。用于捕获图像的相机速度高达每秒50,000帧,图像分辨率高达1280 x800像素。等速轨道用于以1.6至10 km K'的恒定速度安装和驱动液滴发生器。叶片支架以不同的方向和距液滴发生器的距离支撑叶片。用非离子表面活性剂修饰的蜡质和毛状叶以及水溶液用于验证系统功能。观察到小滴撞击到蜡质和多毛叶表面后的五个运动过程:完全保留,分裂保留,玻片保留,飞溅和回弹。使用3-D图像程序对撞击前后的液滴运动和沉积过程进行了定量分析。总之,当液滴直径,液滴排放速度,液滴排放高度,喷嘴行进速度,叶片表面方向和喷雾配方是变量时,成像系统能够精确地观察和定量分析蜡质或毛状叶子上的液滴撞击和沉积物形成。

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