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Flow, Spray Pattern, And Droplet Spectra Characteristics Of An Electronically Actuated Variable-Orifice Nozzle

机译:流动,喷雾模式和液滴光谱 电子特征 致动可变孔口喷嘴

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摘要

The purpose of this study was to develop and evaluate the flow rate, spray pattern, and droplet spectra characteristics of an actively controlled variable-orifice nozzle at constant carrier pressures. A commercially available variable- orifice nozzle (VariTarget) was modified to allow for direct electromechanical control of the metering stem. The modified system was tested at five carrier pressures ranging from 138 to 414 kPa and five metering stem (and thus orifice) positions. The metering stem position range was chosen because it provided a linear response in flow rate at each carrier pressure. Flow rate testing indicated a turndown ratio of 2.4:1 at each carrier pressure, with a total turndown ratio of 4.8:1 across the range of carrier pressures using the selected metering stem positions. Spray pattern testing indicated acceptable coefficients of variation for the metering stem positions and carrier pressures for nozzle spacings of 38.1 and 51.0 cm. Droplet spectra test results showed that the particle sizes remained in the range of extremely coarse to ultra coarse for all metering stem positions and carrier pressures. Orifice control using the modified system resulted in slightly larger droplet sizes compared to the original spring-actuated nozzle; however, the potential for spray drift would be reduced. The results of this study show that active control of the VT nozzle metering stem could provide potential for improvements in pesticide application. Nozzle flow rates could be controlled via the proposed system with little negative effects on spray pattern or droplet spectra. In addition to compensating for sprayer ground speed changes, a system consisting of these nozzles could potentially be used to solve application errors generated from sprayer turning movements.
机译:这项研究的目的是开发和评估在恒定载气压力下主动控制的可变节流喷嘴的流速,喷雾模式和液滴光谱特性。修改了市售的可变孔口喷嘴(VariTarget),以实现对计量杆的直接机电控制。修改后的系统在138至414 kPa的五个载气压力和五个计量杆(以及节流孔)位置进行了测试。选择计量杆位置范围是因为它在每个载气压力下都提供了流速的线性响应。流速测试表明,在每个载气压力下,调节比为2.4:1,使用选定的计量杆位置,在整个载气压力范围内,总调节比为4.8:1。喷雾模式测试表明,对于38.1和51.0 cm的喷嘴间距,计量杆位置和支座压力的可接受的变化系数。液滴谱测试结果表明,对于所有计量杆位置和载体压力,颗粒尺寸均保持在极粗至极粗的范围内。与原始的弹簧驱动喷嘴相比,使用改进的系统进行孔口控制的液滴尺寸稍大;但是,喷雾漂移的可能性将降低。这项研究的结果表明,主动控制VT喷嘴计量杆可以为改进农药的使用提供潜力。喷嘴流量可以通过所提出的系统进行控制,而对喷雾模式或液滴光谱的负面影响很小。除了补偿喷涂机的地面速度变化外,由这些喷嘴组成的系统还可以用来解决喷涂机转向运动产生的应用错误。

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