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Droplet Spectrum from CP Nozzles Affected by Pressure, Flat-Fan, and Deflection Angles in Aerial Applications of Glyphosate

机译:草甘膦在空中应用中受压力,平扇和偏转角影响的CP喷嘴的液滴谱

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Spray classification based on droplet size has been used worldwide to characterize nozzles in relation to efficacy and drift potential. The objectives of this study were to evaluate the effect of pressure, flat angle of nozzle, and deflection angle on droplet spectrum in aerial applications of glyphosate using a high-speed wind tunnel. Two independent studies were conducted: one evaluating pressure (207, 310, 414 kPa) and deflection angle (0°, 30°, 60°, 90°) with CP-11TT 8008 nozzles, and another study evaluating flat-fan angle (20°, 40°, 80°) of CP-11TT nozzles with 08 orifice size and the same deflection angles used in a previous study, at 207 kPa pressure. The solution was prepared with water and Roundup PowerMax at 2.34 L ha~(-1) as a source of glyphosate, simulating a carrier volume of 30 L ha~(-1). Droplet size data were recorded in a high-speed wind tunnel using a Sympatec HELOS laser diffraction system. The droplet size was affected by interactions between pressure versus deflection angle and flat-fan versus deflection angle. Selecting narrower angles of flat-fan nozzles and deflections, as well as higher pressures, are viable alternatives to mitigate glyphosate drift from aerial applications.
机译:基于液滴尺寸的喷雾分类法已在全世界范围内用于表征与功效和漂移潜力有关的喷嘴。这项研究的目的是评估使用高速风洞在草甘膦的空中应用中压力,喷嘴平角和偏转角对液滴光谱的影响。进行了两项独立的研究:一项使用CP-11TT 8008喷嘴评估压力(207、310、414 kPa)和偏转角(0°,30°,60°,90°),另一项评估平扇角(20在207 kPa压力下具有08个孔的尺寸和相同的偏转角的CP-11TT喷嘴的50°,40°,80°)角。用水和2.34 L ha〜(-1)的Roundup PowerMax作为草甘膦来源制备溶液,模拟载体体积为30 L ha〜(-1)。使用Sympatec HELOS激光衍射系统在高速风洞中记录液滴尺寸数据。液滴大小受压力与偏转角之间的相互作用以及扁平扇形与偏转角之间的相互作用的影响。选择较窄的平扇喷嘴角度和偏斜度以及较高的压力是减轻草甘膦从空中应用中漂移的可行选择。

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