中国农业机械化科学研究院集团有限公司 主管

北京卓众出版有限公司 主办

扇形静电感应喷头雾滴荷电性能影响规律研究

Study on influence mechanism of droplet charge performance in fan-shaped electrostatic induction spray nozzles

  • 摘要: 静电喷雾在植物保护领域的应用日益广泛,其性能表现与雾滴的荷电效果密切相关。探讨扇形静电感应喷雾雾滴的荷电性能及其影响因素。采用高速摄像系统获取液膜形态,构建扇形喷头静电场仿真模型,分析电极间距、长度、宽度及位置对荷电效果的影响。结果表明,电极间距对液膜表面电荷密度影响最大,其次是电极长度和位置,而电极宽度的影响最小。在电极间距2 mm和长度10 mm条件下,液膜表面电荷密度取得最优值1.522×10−5 C/m2;此外,当电极宽度略大于液膜宽度(18 mm)时,荷电效果达到最佳,液膜表面电荷密度1.605×10−5 C/m2;而当电极位置−1 mm时,液膜表面电荷密度1.584×10−5 C/m2,表现出最佳荷电效果。研究结果可为扇形静电喷雾装置电极系统的优化设计提供参考。

     

    Abstract: With increasing application of electrostatic spraying in plant protection, its performance is closely related to charging effects of spray droplets.Charging performance and influencing factors of fan-shaped electrostatic induction spray droplets were investigated.High-speed cameras were employed to capture liquid film morpology, and a simulation model of electrostatic field for a fan-shaped nozzle was contructed to analyze effects of electrode spacing, length, width, and position on droplet charge efficiency.Results revealed that electrode spacing exerted the greatest influence on surface charge density of liquid film, followed by electrode length and position, while electrode width had the least effect.Optimal charging performance was achieved with an electrode spacing of 2 mm and a length of 10 mm, yielding a surface charge density of 1. 522×10−5 C/m2.Furthermore, charging effect reached its peak when electrode width was slightly greater than liquid film(18 mm), resulting a surface charge density of 1. 605×10−5 C/m2.At an electrode position of –1 mm, a surface charge density of liquid film was 1. 584×10−5 C/m2, demonstrating the best charging effect.Reference for structural optimization design of electrode systems in fan-shaped electrostatic spraying device was provided.

     

/

返回文章
返回