Brusselman E, Spanoghe P, Van der Meeren P, Gabriels D, Steurbaut W
Department of Crop Protection, Ghent University, Coupure Links 653, 9000 Gent, Belgium.
Commun Agric Appl Biol Sci. 2003;68(4 Pt B):749-58.
Over the last decade drift of pesticides has been recognized as a major problem for the environment. High fractions of pesticides can be transported through the air and deposited in neighbouring ecosystems during and after application. A new computer-two steps-drift model is developed: FYDRIMO or F(ph)Ysical DRift MOdel. In the first step the droplet size spectrum of a nozzle is analysed. In this way the volume percentage of droplets with a certain size is known. In the second step the model results in a prediction of deposition of each droplet with a certain size. This second part of the model runs in MATLAB and is grounded on a combination of two physical factors: gravity force and friction forces. In this stage of development corrections are included for evaporation and wind force following a certain measured wind profile. For validation wind tunnel experiments were performed. Salt solutions were sprayed at two wind velocities and variable distance above the floor. Small gutters in the floor filled with filter paper were used to collect the sprayed droplets. After analysing and comparing the wind tunnel results with the model predictions, FYDRIMO seems to have good predicting capacities.
在过去十年中,农药漂移已被公认为是一个重大的环境问题。在农药施用期间及之后,很大一部分农药会通过空气传播并沉积在邻近的生态系统中。一种新的计算机两步漂移模型——FYDRIMO或物理漂移模型被开发出来。第一步,分析喷嘴的液滴尺寸谱。通过这种方式,可以得知具有特定尺寸的液滴的体积百分比。第二步,该模型可预测每个特定尺寸液滴的沉积情况。模型的第二部分在MATLAB中运行,基于重力和摩擦力这两个物理因素的组合。在当前的开发阶段,根据特定测量的风廓线,对蒸发和风力进行了校正。为了进行验证,开展了风洞实验。在两种风速以及距离地面不同高度处喷洒盐溶液。地面上装有滤纸的小水槽用于收集喷洒的液滴。在将风洞实验结果与模型预测结果进行分析和比较之后,FYDRIMO似乎具有良好的预测能力。