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Open Access

Advances in CFD-based fluid computational dynamics for fruit tree model construction method and airflow regulation equipment

College of Engineering, Nanjing Agricultural University, Nanjing 210031, China
Institute of Agricultural Facilities and Equipment, Jiangsu Academy of Agricultural Sciences/Key La-boratory of Modern Horticultural Equipment, Ministry of Agriculture and Rural Affairs, Nanjing 210014, China

†These authors contribute equally to this research.

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Abstract

Due to its ability to broaden the transport channel of droplets within the plant canopy and enhance their penetration capacity, air-assisted spray technology is widely used in orchard pesticide application. To achieve uniform distribution of pesticide droplets in the tree canopy and obtain a higher pesticide utilization rate, it is crucial to clarify the coupling mechanism of the airflow field and droplet field generated by the air-assisted sprayer. This paper introduces a three-dimensional modeling method of the fruit tree canopy based on CFD (Computational Fluid Dynamics), offering a theoretical basis for analyzing the airflow demand calculation during different growth periods of the canopy. It also examines the interaction between canopy modeling and airflow, highlighting advancements in airflow regulation equipment and the effects of airflow speed and volume on spraying. The study shows that the precise regulation of airflow velocity and discharge rate is of importance for improving spraying efficiency. It finally points out that future research should focus on developing intelligent regulation equipment for efficient airflow-droplet control, using biomass sensing, which involves measuring the growth characteristics of the tree canopy, to meet the needs of orchards with diverse growth stages and canopy structures. This article could provide guidance for the future study of precision air-assisted spraying technology in orchards.

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International Journal of Agricultural and Biological Engineering
Pages 1-8

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Cite this article:
Lu H, Li X, Xu T, et al. Advances in CFD-based fluid computational dynamics for fruit tree model construction method and airflow regulation equipment. International Journal of Agricultural and Biological Engineering, 2025, 18(2): 1-8. https://doi.org/10.25165/j.ijabe.20251802.9554

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Received: 19 November 2024
Accepted: 14 January 2025
Published: 30 April 2025
© The Author(s) 2025

We adopt the latest version of license CC BY 4.0, https://creativecommons.org/licenses/by/4.0/