表面活性剂对平扇形、全锥形和低能耗精密应用气泡喷嘴中喷雾液滴的影响:液滴形成和喷雾破裂

IF 2 Q2 ENGINEERING, MECHANICAL
Emily M. Stallbaumer-Cyr, Jonathan Aguilar, Amy R. Betz, M. Derby
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引用次数: 0

摘要

导言:农业是全球(占淡水使用量的 70%)和美国(占淡水使用量的 42%)最大的用水户;灌溉可确保作物获得充足的水分,从而提高作物产量。表面活性剂已被用于各种农用喷雾产品中,以增加喷雾稳定性并改变雾滴大小:方法:通过成像研究了在蒸馏水(72.79 mN/m)中添加表面活性剂(0.1 wt% Surfactin;表面张力为 29.2 mN/m)对四个平扇形喷嘴(206.8-413.7 kPa)、一个全锥形喷嘴(137.9-413.7 kPa)和三个 LEPA 鼓泡喷嘴(41.4-103.4 kPa)的喷雾动力学和雾滴形成的影响:扁平扇形喷嘴和锥形喷嘴中流出的液片在二次风的作用下破裂(即不稳定波长推动破裂);添加表面活性剂后,破裂长度增加,液滴尺寸减小。加入表面活性剂后,扇形喷嘴的液滴体积中值直径减小(例如,一个喷嘴的液滴体积中值直径减小了 26.3-65.6 μm)。全锥形喷嘴的液滴体积中值直径最初随着表面活性剂的添加而减小(在 137.9、206.8 和 310.3 千帕时分别为 27.8、14.3 和 13.4 μm),但在 413.7 千帕时有所增加(24.3 μm)。对起泡器喷嘴喷出的水雾进行了测量,观察到水雾经历了瑞利效应(即水滴通过喷射末端的毛细管挤压形成)和首次风致破裂(即空气冲击和毛细管挤压导致水滴破裂)。在 41.4 千帕气泡喷嘴中,表面活性剂对液滴大小的影响很小。在 68.9 和 103.4 kPa 下,表面活性剂的加入增加了起泡器板形成的喷流或韧带的直径,从而增加了破裂长度和液滴大小(液滴大小分别增加了 750.6 和 4,462.7 μm)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The effects of Surfactin on sprayed droplets in flat fan, full cone, and low energy precision application bubbler nozzles: droplet formation and spray breakup
Introduction: Agriculture is the largest user of water globally (i.e., 70% of freshwater use) and within the United States (i.e., 42% of freshwater use); irrigation ensures crops receive adequate water, thereby increasing crop yields. Surfactants have been used in various agricultural spray products to increase spray stability and alter droplet sizes.Methods: The effects of the addition of surfactant (0.1 wt% Surfactin; surface tension of 29.2 mN/m) to distilled water (72.79 mN/m) on spray dynamics and droplet formation were investigated in four flat fan (206.8–413.7 kPa), one full cone (137.9–413.7 kPa), and three LEPA bubbler (41.4–103.4 kPa) nozzles via imaging.Results and discussion: The flat fan and cone nozzles experienced second wind-induced breakup (i.e., unstable wavelengths drive breakup) of the liquid sheets exiting the nozzle; the addition of surfactant resulted in an increased breakup length and a decreased droplet size. The fan nozzles volumetric median droplet diameter decreased with the addition of surfactant (e.g., decreased by 26.3–65.6 μm in one nozzle). The full cone nozzle volumetric median droplet diameter decreased initially with the addition of surfactant (27.8, 14.3, and 13.4 μm at 137.9, 206.8, and 310.3 kPa respectively), but increased at 413.7 kPa (24.3 μm). Sprays from the bubbler nozzles were measured and observed to experience Rayleigh (i.e., the droplets form via capillary pinching at the end of the jet) and first wind-induced breakup (i.e., air impacts breakup along with capillary pinching). The effect of Surfactin on droplet size was minimal for the 41.4 kPa bubbler nozzle. The addition of surfactant increased the diameter of the jet or ligament formed from the bubbler plate, thereby increasing the breakup length and the droplet size at 68.9 and 103.4 kPa (droplet size increased by 750.6 and 4,462.7 μm, respectively).
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来源期刊
Frontiers in Mechanical Engineering
Frontiers in Mechanical Engineering Engineering-Industrial and Manufacturing Engineering
CiteScore
4.40
自引率
0.00%
发文量
115
审稿时长
14 weeks
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