Abstract
In the past decade, an unmanned aerial spraying system (UASS) was applied more and more widely for low-volume aerial pesticides spraying operations in China. However, UASS have a higher drift risk due to more fine droplets sprayed with a higher working height and a faster driving speed than ground sprayers. Study on UASS spray drift is a new hot spot within the field of pesticide application technology. The field test bench was originally designed and applied for the measurement of the spray drift potential of ground sprayers. No methodology using the test bench for UASS drift evaluation was reported. Based on our previous study, field drift measurements of an eight-rotor UASS were conducted using three techniques (test bench, ground petri dish, and airborne collection frame) in this study, and the effects of meteorological parameters and nozzle types were investigated, to explore the applicability and the feasibility of the test bench used in UASS field drift evaluation. The test bench is proven promising for direct drift determination of UASS and the described methodology enabled classification of different UASS configurations. Higher wind speeds and finer droplets produced higher drift values. The faster the wind speed and the lower the humidity, the more the spray drift. The test bench can reduce the site requirements and improve the efficiency of the field drift test.
Funder
National Natural Science Foundation
China Agriculture Research System
Chinese Universities Scientific Fund
The 2115 Talent Development Program of China Agricultural University
Subject
Agronomy and Crop Science
Reference43 articles.
1. Rapid development of unmanned aerial vehicles (UAV) for plant protection and application technology in China;He;Outlooks Pest Manag.,2018
2. Recent development of unmanned aerial vehicle for plant protection in East Asia;He;Int. J. Agric. Biol. Eng.,2017
3. Spray performance evaluation of a six-rotor unmanned aerial vehicle sprayer for pesticide application using an orchard operation mode in apple orchards;Wang;Pest Manag. Sci.,2022
4. Spray drift characteristics of fuel powered single-rotor UAV for plant protection;Wang;Trans. Chin. Soc. Agric. Eng. Trans. CSAE,2017
5. Drift potential of UAV with adjuvants in aerial applications;Wang;Int. J. Agric. Biol. Eng.,2018
Cited by
9 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献