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Comparison of spray nozzles in terms of spray coverage and drop distribution uniformity at low volume

机译:喷嘴在低体积下喷雾覆盖率和下降分布均匀性的比较

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This study was conducted to compare the spray coverage rate and spray uniformity of seven different types of hydraulic nozzles (standard flat fan nozzles, ST; multirange nozzles, LU; air induction nozzles, IDK; twinjet air-induction nozzles, IDKT; narrow cone-angle standard nozzles, STD; hollow cone nozzles, DC; and antidrift nozzles, AD) commonly used in pesticide applications at low application volumes. All spray applications were carried out at a constant operating pressure of 300 kPa and a low application volume of 80 L/ha. The experiments were carried out in a closed facility under controlled conditions. Spray applications were carried out with the aid of a 12-m-long linear, automatic speed-controlled spray simulator. Water-sensitive paper was used for drop sampling. The greatest spray coverage was achieved in LU nozzles and they were followed by DC and ST nozzles. The lowest spray coverage was observed in IDKT nozzles. Increasing spray coverage rates were observed with decreasing spray heights. Increasing coverage rates were also observed with decreasing forward speeds. Regarding spray uniformity, the lowest mean coefficient of variation (CV) was obtained from AD, IDK, and IDKT nozzles producing medium and coarse droplets. It was concluded based on the present findings that the spray height should be reduced to increase spray uniformity. ST, AD, and IDK nozzles have to be selected with greater forward speed in order to increase spray uniformity. However, in LU and DC nozzles, the lowest CV was obtained at low forward speeds.
机译:进行了该研究以比较七种不同类型的液压喷嘴的喷涂率和喷雾均匀性(标准扁平风扇喷嘴,ST;多个喷嘴,LU;空气感应喷嘴,IDK; Twinjet空气感应喷嘴,IDKT;窄锥形角度标准喷嘴,STD;空心锥形喷嘴,DC;和防潮喷嘴,AD)通常用于低应用体积的农药应用。所有喷涂应用均在300kPa的恒定工作压力下进行,低施用体积为80L / ha。实验在受控条件下在封闭的设施中进行。借助于12米长的线性,自动速度控制喷涂模拟器进行喷涂应用。水敏感纸用于滴剂采样。在鲁的喷嘴中实现了最大的喷涂覆盖物,然后是DC和ST喷嘴。在IDKT喷嘴中观察到最低的喷涂覆盖范围。通过降低喷雾高度观察到增加喷涂率。还通过降低前进速度来观察到增加覆盖率。关于喷雾均匀性,从AD,IDK和IDKT喷嘴产生介质和粗液滴获得最低平均变化系数(CV)。基于目前的研究结果,结论是应减少喷雾高度以增加喷雾均匀性。必须以更大的前进速度选择ST,AD和IDK喷嘴以增加喷雾均匀性。然而,在LU和DC喷嘴中,在低前进速度下获得最低CV。

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