首页> 外文OA文献 >Effects of Crop Protection Unmanned Aerial System Flight Speed, Height on Effective Spraying Width, Droplet Deposition and Penetration Rate, and Control Effect Analysis on Wheat Aphids, Powdery Mildew, and Head Blight
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Effects of Crop Protection Unmanned Aerial System Flight Speed, Height on Effective Spraying Width, Droplet Deposition and Penetration Rate, and Control Effect Analysis on Wheat Aphids, Powdery Mildew, and Head Blight

机译:作物保护无人机飞行速度的影响,高度在有效的喷涂宽度,液滴沉积和渗透率,以及对小麦蚜虫,粉状霉菌和头部枯萎的控制效果分析

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摘要

As a new type of crop protection machinery, the Crop Protection Unmanned Aerial System (CPUAS) has developed rapidly and been widely used in China; currently, how to use the CPUAS scientifically has become a top priority. However, the relationships between the operating parameters of the CPUAS and the effective spraying width (ESW), droplet distribution characteristics, and control effects of insect pests and diseases are not clear yet. Therefore, three levels of flight speed (FS) as 3, 4, and 5 m/s, three levels of flight height (FH) as 1.5, 2.0, and 2.5 m, and spraying volume 2.0 L/min experiments were carried out to investigate the effects of FS and FH on the ESW, droplet deposition uniformity (DDU), and droplet penetration rate (DPR) by using an electric single-rotor CPUAS CE20. Based on the obtained results, combined with the insect pests and diseases occurrence agronomic laws, the optimal operation parameters of the CPUAS were selected to control the wheat aphids, powdery mildew, and head blight. The results showed that the ESW of CE20 was not consistent, the maximum value was 5.78 m, and the minimum one was 2.51 m. The FS had a highly significant impact on ESW (p = 0.0033 < 0.01), while the FH and the interaction between FS and FH had no significant impact on ESW. The coefficients of variation (CV) of the droplet deposition were between 23.3% and 34.4%, which meant good deposition uniformity. The FH (p = 0.0019) and the interaction between FS and FH (p = 0.02) had significant impacts on the DDU. The control effects on aphids were 78.71% (1 day), 84.88% (3 days), and 90.42% (7 days), the control effects on powdery mildew were 77.17% (7 days) and 82.83% (14 days), and the control effect on head blight was 88.32% (20 days). This study proved that by the optimization of parameters and the combination of agronomy, good control effects for insect pests and diseases could be achieved by the CPUAS. The research results would provide some technical supports for CPUAS application.
机译:作为一种新型的作物保护机械,作物保护无人机(CPUA)已迅速发展,并广泛应用于中国;目前,如何使用CPUAS科学地成为一个首要任务。然而,CPUA的操作参数与有效喷涂宽度(ESW),液滴分布特征和虫害的控制效应之间的关系尚未清楚。因此,进行三个级别的飞行速度(FS)为3,4和5米/秒,飞行高度(FH)为1.5,2.0和2.5米,并进行喷涂2.0L / min实验。通过使用电动单转子CPUA CE20研究FS和FH对ESW,液滴沉积均匀性(DDU)和液滴穿透速率(DPR)的影响。基于所得的结果,结合昆虫害虫和疾病发生农艺法,选择了CPUA的最佳运行参数以控制小麦蚜虫,粉状霉菌和头部枯萎病。结果表明,CE20的ESW不一致,最大值为5.78米,最小值为2.51米。 FS对ESW的影响非常显着(P = 0.0033 <0.01),而FS和FH之间的相互作用对ESW没有显着影响。液滴沉积的变异系数(CV)介于23.3%和34.4%之间,这意味着良好的沉积均匀性。 FH(P = 0.0019)和FS和FH之间的相互作用(P = 0.02)对DDU产生显着影响。对蚜虫的控制效应为78.71%(1天),84.88%(3天)和90.42%(7天),对粉末状霉菌的对照效应为77.17%(7天)和82.83%(14天),对头部枯萎的控制效果为88.32%(20天)。本研究证明,通过优化参数和农学的结合,CPUA可以实现昆虫害虫和疾病的良好控制效应。研究结果将为CPUA应用提供一些技术支持。

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