Improving droplet sizing methodology for spray dynamics investigation

Spray modelling is one of the most useful techniques to characterize engine performance, efficiency and emissions. The size of droplets is one of the key variables that govern the efficiency of combustion of the liquid fuel. This study aims to develop an interactive tool using MATLAB codes that iden...

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Main Authors: Jia Jie Woo, Vikram Garaniya, Rouzbeh Abbassi
Format: Article
Language:English
Published: SAGE Publishing 2016-06-01
Series:International Journal of Spray and Combustion Dynamics
Online Access:https://doi.org/10.1177/1756827716640244
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spelling doaj-51ca970d442e488b86085be375d0daaa2020-11-25T03:19:58ZengSAGE PublishingInternational Journal of Spray and Combustion Dynamics1756-82771756-82852016-06-01810.1177/175682771664024410.1177_1756827716640244Improving droplet sizing methodology for spray dynamics investigationJia Jie WooVikram GaraniyaRouzbeh AbbassiSpray modelling is one of the most useful techniques to characterize engine performance, efficiency and emissions. The size of droplets is one of the key variables that govern the efficiency of combustion of the liquid fuel. This study aims to develop an interactive tool using MATLAB codes that identifies the droplets and their sizes from the image taken with the long distance microscope in the spray chamber setup. In this developed method, firstly the background of the image was removed and then image processing techniques, dilation and erosion, were applied to the image file to refine the image files. Subsequently, circle detection method based on the Hough Transform algorithm with the function of imfindcircles was implemented. This function of the program allows the user to identify size droplets from the image files. A statistical study was conducted with the results automated from the MATLAB program using a different set of threshold values of black and white contrast. The results showed an optimal range for the threshold (black and white) values between 40 and 70. This optimal threshold range was established based on consideration of the correct and incorrect identification of the droplets. The results indicated that the program has the ability to identify the droplet providing size and numbers. The MATLAB program was developed using MATLAB compiler and can be used at different workstations.https://doi.org/10.1177/1756827716640244
collection DOAJ
language English
format Article
sources DOAJ
author Jia Jie Woo
Vikram Garaniya
Rouzbeh Abbassi
spellingShingle Jia Jie Woo
Vikram Garaniya
Rouzbeh Abbassi
Improving droplet sizing methodology for spray dynamics investigation
International Journal of Spray and Combustion Dynamics
author_facet Jia Jie Woo
Vikram Garaniya
Rouzbeh Abbassi
author_sort Jia Jie Woo
title Improving droplet sizing methodology for spray dynamics investigation
title_short Improving droplet sizing methodology for spray dynamics investigation
title_full Improving droplet sizing methodology for spray dynamics investigation
title_fullStr Improving droplet sizing methodology for spray dynamics investigation
title_full_unstemmed Improving droplet sizing methodology for spray dynamics investigation
title_sort improving droplet sizing methodology for spray dynamics investigation
publisher SAGE Publishing
series International Journal of Spray and Combustion Dynamics
issn 1756-8277
1756-8285
publishDate 2016-06-01
description Spray modelling is one of the most useful techniques to characterize engine performance, efficiency and emissions. The size of droplets is one of the key variables that govern the efficiency of combustion of the liquid fuel. This study aims to develop an interactive tool using MATLAB codes that identifies the droplets and their sizes from the image taken with the long distance microscope in the spray chamber setup. In this developed method, firstly the background of the image was removed and then image processing techniques, dilation and erosion, were applied to the image file to refine the image files. Subsequently, circle detection method based on the Hough Transform algorithm with the function of imfindcircles was implemented. This function of the program allows the user to identify size droplets from the image files. A statistical study was conducted with the results automated from the MATLAB program using a different set of threshold values of black and white contrast. The results showed an optimal range for the threshold (black and white) values between 40 and 70. This optimal threshold range was established based on consideration of the correct and incorrect identification of the droplets. The results indicated that the program has the ability to identify the droplet providing size and numbers. The MATLAB program was developed using MATLAB compiler and can be used at different workstations.
url https://doi.org/10.1177/1756827716640244
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AT vikramgaraniya improvingdropletsizingmethodologyforspraydynamicsinvestigation
AT rouzbehabbassi improvingdropletsizingmethodologyforspraydynamicsinvestigation
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