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DYNAMICS OF WATER DROPLET IMPACT AND SPREAD ON SOYBEAN LEAVES

机译:水滴对大豆叶的影响及传播动力学

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Soybeans are often sprayed to prevent significant yield loss from damage by insect pests and plant diseases. Understanding interactions of spray droplet reactions on soybean plant surfaces can lead to development of improved application strategies to enhance efficacy of pesticides. In this research, dynamics of impact and spread of water droplets of 185 to 693 mu m at 1.85 to 6.4 m s(-1) impact speeds and 28 degrees to 75 degrees impact angles on two soybean leaf surface orientations (horizontal and 30 degrees inclination) were investigated with two high-speed digital video cameras and a mono-sized droplet generator under laboratory-controlled conditions. Within the test ranges of the variables, droplet rebound was not observed after impact on leaf surfaces, while droplets larger than 300 mu m were observed to slide on the 30 degrees inclined surface. Droplet spread factors increased with droplet diameters and impact speeds but decreased with impact angles. Isoline distributions of droplet spread factors on a horizontal surface were established to provide visual observations for estimating spray coverage areas with different droplet impact speeds and impact angles. At similar impact speeds and angles, droplet spread factors on inclined leaf surfaces were greater than those on horizontal surfaces. These discoveries elucidate that careful selection of controllable spray parameters to maximize droplet spread area and retention on soybean plants is possible for efficient soybean spray applications with minimal amounts of spray mixtures.
机译:经常喷洒大豆以防止害虫和植物病害严重损害产量。了解大豆植物表面上的液滴反应的相互作用可以导致开发改进的施用策略以增强农药的功效。在这项研究中,在两个大豆叶片表面方向(水平和30度倾斜)下,以1.85至6.4 ms(-1)的撞击速度和28至75度的撞击角度,185至693μm水滴的撞击和扩散动力学在实验室控制的条件下,使用两台高速数码摄像机和一个微型液滴发生器对烟气进行了研究。在该变量的测试范围内,在撞击叶片表面后未观察到液滴反弹,而观察到大于300微米的液滴在30度倾斜表面上滑动。液滴扩散因子随液滴直径和撞击速度而增加,但随撞击角度而减小。建立了液滴在水平表面上的扩散系数的等值线分布,以提供视觉观察,以估计具有不同液滴撞击速度和撞击角度的喷雾覆盖区域。在相似的撞击速度和角度下,倾斜叶片表面上的液滴扩散因子大于水平表面上的液滴扩散因子。这些发现说明,对于有效的大豆喷雾应用,使用最少的喷雾混合物,仔细选择可控制的喷雾参数以最大化液滴散布面积和在大豆植物上的保留是可能的。

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