4.7 Article

Influence of the Downwash Wind Field of Plant Protection UAV on Droplet Deposition Distribution Characteristics at Different Flight Heights

Journal

AGRONOMY-BASEL
Volume 11, Issue 12, Pages -

Publisher

MDPI
DOI: 10.3390/agronomy11122399

Keywords

plant protection UAV; aerial spray; downwash wind field; droplet deposition

Funding

  1. National Natural Science Foundation of China [31901411]
  2. Basic and Applied Basic Research Foundation of Guangdong Province [2020A1515110214]
  3. science and technology planning project of Guangdong Province [2019B020208007]
  4. Science and Technology Planning Project of Guangzhou [202103000090]
  5. Key R&D projects in Hainan Province [ZDYF2020195]
  6. leading talents program of Guangdong Province [2016LJ06G689]

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The study found that the downwash wind field of unmanned aerial vehicles (UAV) shows significant differences at different flight heights, with a notable impact on droplet deposition. Increasing flight height leads to changes in the downwash wind field, affecting droplet deposition distribution and reducing deposition in the effective spray area.
The aerial spraying of pesticides by plant protection unmanned aerial vehicles (UAV) is a process in which the spray droplet deposition on target sites occurs under the influence of the downwash wind field. The downwash wind field is the most important factor affecting droplet deposition distribution characteristics in an aerial spray. To understand the mechanism of the downwash wind field, spray tests were conducted at different flight heights by using a DJI UAV, and the downwash wind field in the three-dimensional direction (X-directional wind, Y-crosswind, and Z-vertical wind) was measured by using a wind speed measurement system for UAV. Combined with the droplet deposition of aerial spray, the distribution characteristics of the downwash wind field and the influence of the downwash wind field on droplet deposition were studied. The results showed that it had obvious differences in the distribution of the downwash wind field for UAV at different flight heights. As the flight height increases, the downwash wind field in X-direction and Z-direction showed a strong to weak trend, while the downwash wind field in Y-direction showed an opposite trend. In addition, it was found that the downwash wind field in Y-direction and Z-direction both have a significant influence on droplet deposition. With the increase of flight height, the change of the downwash wind field led to a gradual decrease in droplet deposition in the effective spray area, and droplets deposited more uniformly. For the DJI T16 plant protection UAV in this test, the optimal flight height was 2.0 m, and the downwash wind field had a better improvement effect on droplet deposition. Therefore, in order to make full use of the downwash wind field of UAV, the appropriate flight height should be selected to improve droplet deposition of liquid pesticide and achieve a better control effect for crop disease and pests when UAV is used for aerial spray operations in the field. This study revealed the influence mechanism of the downwash wind field on droplet deposition of aerial spray, and proposed appropriate operation parameters from the perspective of practical operation. It was expected to provide data support for improving the operation quality of aerial spraying and the formulation of field operation specifications.

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