Shuo Wu, Jizhan Liu, Jiangshan Wang, Dianhe Hao, Rongkai Wang
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引用次数: 4
Abstract
Highlights A visualization method for the motion of strawberry leaves in an air-assisted spray field is proposed. Strawberry leaves showed two motion states in different critical velocity ranges of the sprayer airflow. The airflow instability and the turbulence effect are considered important factors for the leaf vibrations. A strawberry leaf azimuth angle in the range of 90° to 270° can provide good deposition with smaller droplets. Abstract. The reasonable motion of crop plants in an air-assisted spray field can improve droplet deposition. Therefore, this study focuses on the motion of strawberry leaves and the droplet deposition mechanism in an air-assisted spray field. First, this study proposes a descriptive method for strawberry leaf motion in an air-assisted spray field and clarifies the important influence of strawberry leaf motion on droplet deposition. Second, an experiment was performed on the motion and droplet capture of single strawberry leaves in multi-position postures in an air-assisted spray field. The results showed that the leaves had two motion states (i.e., low amplitude with low frequency and high amplitude with high frequency) at different airflow velocities and inclination angles, and the critical airflow velocity corresponding to the two motion states was determined to be 8.7 m s-1. When the azimuth angle of the strawberry leaves is in the range of 90° to 270°, a reasonable inclination angle of the airflow and the high frequency and high amplitude vibration state of the leaves driven by the airflow will provide good deposition and canopy penetration of droplets with smaller diameters.
提出了一种空气辅助喷雾场中草莓叶片运动的可视化方法。草莓叶片在喷雾器气流的不同临界速度范围内呈现两种运动状态。气流不稳定性和湍流效应是引起叶片振动的重要因素。草莓叶片方位角在90°~ 270°范围内,雾滴较小,沉积效果较好。摘要在空气辅助喷雾场中,作物的合理运动可以改善液滴的沉积。因此,本研究重点研究了空气辅助喷雾场中草莓叶片的运动和液滴沉积机理。首先,本文提出了一种空气辅助喷雾场中草莓叶片运动的描述方法,阐明了草莓叶片运动对雾滴沉积的重要影响。其次,在空气辅助喷雾场中,对草莓单叶在多种姿态下的运动和液滴捕获进行了实验研究。结果表明:叶片在不同气流速度和倾角下存在低幅低频和高幅高频两种运动状态,确定了这两种运动状态对应的临界气流速度为8.7 m s-1;当草莓叶片的方位角在90°~ 270°范围内时,合理的气流倾角和气流驱动下叶片的高频、高振幅振动状态将为粒径较小的液滴提供良好的沉积和冠层穿透。
期刊介绍:
This peer-reviewed journal publishes research that advances the engineering of agricultural, food, and biological systems. Submissions must include original data, analysis or design, or synthesis of existing information; research information for the improvement of education, design, construction, or manufacturing practice; or significant and convincing evidence that confirms and strengthens the findings of others or that revises ideas or challenges accepted theory.