Literature DB >> 17390794

Classification of spray nozzles based on droplet size distributions and wind tunnel tests.

M De Schamphelerie1, P Spanoghe, D Nuyttens, K Baetens, W Cornelis, D Gabriels, P Van der Meeren.   

Abstract

Droplet size distribution of a pesticide spray is recognised as a main factor affecting spray drift. As a first approximation, nozzles can be classified based on their droplet size spectrum. However, the risk of drift for a given droplet size distribution is also a function of spray structure, droplet velocities and entrained air conditions. Wind tunnel tests to determine actual drift potentials of the different nozzles have been proposed as a method of adding an indication of the risk of spray drift to the existing classification based on droplet size distributions (Miller et al, 1995). In this research wind tunnel tests were performed in the wind tunnel of the International Centre for Eremology (I.C.E.), Ghent University, to determine the drift potential of different types and sizes of nozzles at various spray pressures. Flat Fan (F) nozzles Hardi ISO 110 02, 110 03, 110 04, 110 06; Low-Drift (LD) nozzles Hardi ISO 110 02, 110 03, 110 04 and Injet Air Inclusion (AI) nozzles Hardi ISO 110 02, 110 03, 110 04 were tested at a spray pressures of 2, 3 and 4 bar. The droplet size spectra of the F and the LD nozzles were measured with a Malvern Mastersizer at spray pressures 2 bar, 3 bar and 4 bar. The Malvern spectra were used to calculate the Volume Median Diameters (VMD) of the sprays.

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Year:  2006        PMID: 17390794

Source DB:  PubMed          Journal:  Commun Agric Appl Biol Sci        ISSN: 1379-1176


  1 in total

1.  Reduction of pesticide application via real-time precision spraying.

Authors:  Alex Rogers Aguiar Zanin; Danilo Carvalho Neves; Larissa Pereira Ribeiro Teodoro; Carlos Antonio da Silva Júnior; Simone Pereira da Silva; Paulo Eduardo Teodoro; Fábio Henrique Rojo Baio
Journal:  Sci Rep       Date:  2022-04-04       Impact factor: 4.379

  1 in total

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