Characteristic study of flat spray nozzle by using Particle Image Velocimetry (PIV) and ANSYS simulation method
Water mist sprays are used in wide range of application. However it is depend to the spray characteristic to suit the particular application. This project studies the water droplet velocity and penetration angle generated by new development mist spray with a flat spray pattern. This research con...
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Format: | Conference or Workshop Item |
Language: | English |
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2022
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Online Access: | http://eprints.uthm.edu.my/7615/1/P1379_a6d3927df0aad09ab91701861d2a7b31.pdf |
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author | Pairan, M. Rasidi Asmuin, Norzelawati Mat Isa, Nurasikin Sies, Farid |
author_facet | Pairan, M. Rasidi Asmuin, Norzelawati Mat Isa, Nurasikin Sies, Farid |
author_sort | Pairan, M. Rasidi |
collection | UTHM |
description | Water mist sprays are used in wide range of application. However it is depend to the spray characteristic
to suit the particular application. This project studies the water droplet velocity and penetration angle generated
by new development mist spray with a flat spray pattern. This research conducted into two part which are
experimental and simulation section. The experimental was conducted by using particle image velocimetry (PIV)
method, ANSYS software was used as tools for simulation section meanwhile image J software was used to
measure the penetration angle. Three different of combination pressure of air and water were tested which are 1
bar (case A), 2 bar (case B) and 3 bar (case C). The flat spray generated by the new development nozzle was
examined at 9cm vertical line from 8cm of the nozzle orifice. The result provided in the detailed analysis shows that
the trend of graph velocity versus distance gives the good agreement within simulation and experiment for all the
pressure combination. As the water and air pressure increased from 1 bar to 2 bar, the velocity and angle
penetration also increased, however for case 3 which run under 3 bar condition, the water droplet velocity
generated increased but the angle penetration is decreased. All the data then validated by calculate the error
between experiment and simulation. By comparing the simulation data to the experiment data for all the cases,
the standard deviation for this case A, case B and case C relatively small which are 5.444, 0.8242 and 6.4023. |
first_indexed | 2024-03-05T21:57:15Z |
format | Conference or Workshop Item |
id | uthm.eprints-7615 |
institution | Universiti Tun Hussein Onn Malaysia |
language | English |
last_indexed | 2024-03-05T21:57:15Z |
publishDate | 2022 |
record_format | dspace |
spelling | uthm.eprints-76152022-09-08T02:09:11Z http://eprints.uthm.edu.my/7615/ Characteristic study of flat spray nozzle by using Particle Image Velocimetry (PIV) and ANSYS simulation method Pairan, M. Rasidi Asmuin, Norzelawati Mat Isa, Nurasikin Sies, Farid T Technology (General) Water mist sprays are used in wide range of application. However it is depend to the spray characteristic to suit the particular application. This project studies the water droplet velocity and penetration angle generated by new development mist spray with a flat spray pattern. This research conducted into two part which are experimental and simulation section. The experimental was conducted by using particle image velocimetry (PIV) method, ANSYS software was used as tools for simulation section meanwhile image J software was used to measure the penetration angle. Three different of combination pressure of air and water were tested which are 1 bar (case A), 2 bar (case B) and 3 bar (case C). The flat spray generated by the new development nozzle was examined at 9cm vertical line from 8cm of the nozzle orifice. The result provided in the detailed analysis shows that the trend of graph velocity versus distance gives the good agreement within simulation and experiment for all the pressure combination. As the water and air pressure increased from 1 bar to 2 bar, the velocity and angle penetration also increased, however for case 3 which run under 3 bar condition, the water droplet velocity generated increased but the angle penetration is decreased. All the data then validated by calculate the error between experiment and simulation. By comparing the simulation data to the experiment data for all the cases, the standard deviation for this case A, case B and case C relatively small which are 5.444, 0.8242 and 6.4023. 2022 Conference or Workshop Item PeerReviewed text en http://eprints.uthm.edu.my/7615/1/P1379_a6d3927df0aad09ab91701861d2a7b31.pdf Pairan, M. Rasidi and Asmuin, Norzelawati and Mat Isa, Nurasikin and Sies, Farid (2022) Characteristic study of flat spray nozzle by using Particle Image Velocimetry (PIV) and ANSYS simulation method. In: 7th International Conference on Mechanical and Manufacturing Engineering. http://dx.doi.org/10.1063/1.4981150 |
spellingShingle | T Technology (General) Pairan, M. Rasidi Asmuin, Norzelawati Mat Isa, Nurasikin Sies, Farid Characteristic study of flat spray nozzle by using Particle Image Velocimetry (PIV) and ANSYS simulation method |
title | Characteristic study of flat spray nozzle by using Particle Image Velocimetry (PIV) and ANSYS simulation method |
title_full | Characteristic study of flat spray nozzle by using Particle Image Velocimetry (PIV) and ANSYS simulation method |
title_fullStr | Characteristic study of flat spray nozzle by using Particle Image Velocimetry (PIV) and ANSYS simulation method |
title_full_unstemmed | Characteristic study of flat spray nozzle by using Particle Image Velocimetry (PIV) and ANSYS simulation method |
title_short | Characteristic study of flat spray nozzle by using Particle Image Velocimetry (PIV) and ANSYS simulation method |
title_sort | characteristic study of flat spray nozzle by using particle image velocimetry piv and ansys simulation method |
topic | T Technology (General) |
url | http://eprints.uthm.edu.my/7615/1/P1379_a6d3927df0aad09ab91701861d2a7b31.pdf |
work_keys_str_mv | AT pairanmrasidi characteristicstudyofflatspraynozzlebyusingparticleimagevelocimetrypivandansyssimulationmethod AT asmuinnorzelawati characteristicstudyofflatspraynozzlebyusingparticleimagevelocimetrypivandansyssimulationmethod AT matisanurasikin characteristicstudyofflatspraynozzlebyusingparticleimagevelocimetrypivandansyssimulationmethod AT siesfarid characteristicstudyofflatspraynozzlebyusingparticleimagevelocimetrypivandansyssimulationmethod |