Performance of Selected Agricultural Spray Nozzles using Particle Image Velocimetry
عنوان مقاله: Performance of Selected Agricultural Spray Nozzles using Particle Image Velocimetry
شناسه ملی مقاله: JR_JASTMO-17-3_007
منتشر شده در در سال 1394
شناسه ملی مقاله: JR_JASTMO-17-3_007
منتشر شده در در سال 1394
مشخصات نویسندگان مقاله:
S. Wang - College of Engineering, China Agricultural University, Beijing ۱۰۰۱۹۳, People’s Republic of China.
G. J. Dorr - The University of Queensland, School of Agriculture and Food Sciences, Gatton, QLD ۴۳۴۳, Australia.
M. Khashehchi - The University of Queensland, School of Mechanical and Mining Engineering, St Lucia, QLD ۴۰۷۲, Australia.
X. He - College of Science, China Agricultural University, Beijing ۱۰۰۱۹۳, People’s Republic of China.
خلاصه مقاله:
S. Wang - College of Engineering, China Agricultural University, Beijing ۱۰۰۱۹۳, People’s Republic of China.
G. J. Dorr - The University of Queensland, School of Agriculture and Food Sciences, Gatton, QLD ۴۳۴۳, Australia.
M. Khashehchi - The University of Queensland, School of Mechanical and Mining Engineering, St Lucia, QLD ۴۰۷۲, Australia.
X. He - College of Science, China Agricultural University, Beijing ۱۰۰۱۹۳, People’s Republic of China.
The aim of the present study was to investigate the influence of nozzle configurations on spray drift and explain the influences using several atomization characteristics (length of spray sheet, spray angle, velocity distribution of flow field, fluctuation of velocity, and droplet size). Nozzles manufactured by one company (Lechler GmbH, Germany) were tested by spraying local tap water in a wind tunnel at an operating pressure of ۰.۳ MPa and under room temperature. The nozzles tested were compact air-induction flat fan nozzles (IDK۱۲۰-۰۲, IDK۱۲۰-۰۳), standard flat fan nozzles (ST۱۱۰-۰۲, ST۱۱۰-۰۳), and hollow-cone swirl nozzles (TR۸۰-۰۲, TR۸۰-۰۳). The atomization process was recorded using a Particle Image Velocimetry (PIV) system, droplet size was measured by a Sympatec Helos laser-diffraction particle-size analyzer, and spray drift was evaluated in a wind tunnel with deposition measured using a calibrated fluorometer (Turner-Sequoia model ۴۵۰). Results showed that spray drift was significantly different among nozzle types (P<۰.۰۰۰۵) and that nozzle configurations influenced breakup length, spray angle, droplet size, and velocity. Nozzles producing larger droplet sizes had lower velocity. Smaller droplets were produced when longer and wider spray sheets were produced. Compared to ST and TR nozzles, IDK nozzles started to breakup in the center of the liquid sheet, producing droplets with larger diameter, lower velocity, and less velocity fluctuation. The IDK nozzle is a good choice for low spray drift at higher wind speeds.
کلمات کلیدی: Atomization, Droplet Size, Droplet velocity, Particle Image Velocimetry
صفحه اختصاصی مقاله و دریافت فایل کامل: https://civilica.com/doc/1826598/