Evaluation of the Wind Field and Deposition Effect of a Novel Air-Assisted Strawberry Sprayer

Author:

Xu Shaoqing12ORCID,Feng Yuru23,Han Leng12,Ran Xiangkai12,Zhong Yuan12,Jin Ye12,Song Jianli12

Affiliation:

1. College of Science, China Agricultural University, Beijing 100193, China

2. Centre for Chemicals Application Technology, China Agricultural University, Beijing 100193, China

3. Sanya Institute of China Agricultural University, Sanya 572025, China

Abstract

Strawberry is a widely cultivated cash crop in China. In order to control pests and diseases on strawberries, there must be sufficient deposits on the abaxial surfaces of the leaves. Air-assisted technology can effectively increase the deposition on the abaxial surfaces of the leaves; however, most air-assisted equipment is not suitable for application due to the pattern of strawberry planting. Therefore, a novel air-assisted strawberry sprayer was developed, the static and dynamic wind fields were measured using a 3D anemometer, and the effectiveness of the application at different spray angles and wind speeds was evaluated. In addition, a comparison of the deposition effect in the strawberry canopy between the air-assisted strawberry sprayer, knapsack sprayer, and spray gun was conducted. The results showed that in the static wind field test, a difference between the center and edge wind fields was obtained, which was correlated with the distance and the outlet wind speed. In the dynamic wind field test, the wind field was found to be rolling backward during the movement, and an inward vortex was obtained. In the field, the data showed that a spray angle of 30° and a wind speed of 16 m·s−1 had the best deposition on the abaxial surface, with a coverage of 36.5% and 38.3% in the upper canopy and 6.2% and 7.9% in the lower canopy, respectively. Moreover, the air-assisted strawberry sprayer was found to have a higher deposition efficiency on abaxial surfaces than the knapsack sprayer and spray gun at a lower spray volume, the values of which in the upper and lower canopies were 42.8% and 29.7%, respectively. In conclusion, the air-assisted strawberry sprayer has the potential for the crop protection of greenhouse strawberries, and more evaluations are needed to improve the sprayer in the future.

Funder

China Agriculture Research System of the MOF and MARA

the administration of the Sanya Yazhou Bay Science and Technology City

Publisher

MDPI AG

Subject

Plant Science,Agronomy and Crop Science,Food Science

Reference46 articles.

1. Preliminary results on the polyphenol content of strawberry (Fragaria x ananassa Duch. ‘Florida Fortuna’) fruits during ripening;Kafkas;Acta Hortic.,2017

2. Phenylalanine ammonialyase and invertase activities in strawberry fruit during ripening progress;Attar;Acta Hortic.,2021

3. Strawberry As a Functional Food: An Evidence-Based Review;Basu;Crit. Rev. Food Sci. Nutr.,2014

4. Sustainability of strawberry nurseries and fruit production in relation to fumigation practices in Europe;Greco;Acta Hortic.,2021

5. FAOSTAT (2023, January 06). Crops and Livestock Products. Available online: https://www.fao.org/faostat/zh/#data/QCL.

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