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Influence of droplet size and velocity on droplet impact process on waxy leaf surfaces

机译:液滴尺寸和速度对蠕动叶片表面的液滴冲击过程的影响

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A custom-designed system consisting of two high-speed digital cameras, a uniform-size droplet generator, a constant-speed linear track unit, light sources and a 3-dimensional (3-D) image analytical program was used to investigate the impact processes.Leaves of Dracaena deremensis, Euphorbia pulcherrima and Tea mays and glass slides were targets for the droplets. Distilled water amended with a non-ionic surfactant at concentrations of 0.25, 0.50 and 0.75% (v/v) were used as spray solutions. The control treatment was distilled water. When water droplets impacted the glass slides and D. deremensis leaf surfaces, rebound or splashes were not observed, but were observed on E. pulcherrima and Z. mays surfaces. Droplet spread area on D. deremensis leaf surfaces increased 47% when droplet diameters and impact speeds increased from 175 to 490 pm and 3.5 to 7.0 m/s, respectively. However, the droplet spread area on D. deremensis leaf surfaces decreased 15% when impact angles increased from 50 to 81°. Non-ionic surfactant amendments improved droplet spread area on glass slides and D. deremensis and reduced droplet rebound or splashes on E. pulcherrima and Z. mays leaf surfaces. Percentage of droplets that either splashed on or bounced offZ. mays leaf surfaces decreased from 56 to 37, 2 and 0% for surfactant concentrations of 0, 0.25, 0.50 and 0.75%, respectively. Therefore, the use of surfactant stabilized droplet deposition on both hydrophilic and hydrophobic leaf surfaces and reduced droplet rebound andrunoff.
机译:使用定制设计的系统,包括两个高速数码相机,均匀大小的液滴发生器,恒速线性轨道单元,光源和三维(3-D)图像分析程序来研究影响方法。德拉赫纳雷明斯,大戟属脉冲和茶叶和玻璃载玻片是液滴的靶标。用0.25,0.50和0.75%(v / v)以0.25,0.50%和0.75%(v / v)的蒸馏水用作喷雾溶液。对照处理是蒸馏水。当水滴撞击玻璃载玻片和D. dremensis叶片表面时,未观察到反弹或溅溅,但在大规模脉冲和Z.Mays表面上观察到。 D. d的液滴扩散区域分别从175升至490μm和3.5至7.0 m / s时增加47%。然而,当冲击角从50到81°增加时,D. deremensis叶片表面上的液滴扩散区域降低了15%。非离子表面活性剂修正改善了玻璃载玻片上的液滴扩散区域,D.抑制和减少液滴反弹或溅到大肠杆菌和Z.Mays叶面。滴落或反冲偏离的液滴的百分比。可以分别为0,0.25,0.50和0.75%的表面活性剂浓度从56至37,2和0%降低56至37,2和0%。因此,在亲水和疏水叶片表面上使用表面活性剂稳定的液滴沉积,并减少液滴反弹andRunoff。

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