Droplet impingement and performance from droplet generator

This Final Year Project (FYP) report covers the summary of literature review done, the design of the droplet generator system testing rig, and also the results and analysis of various experiments done on the droplet generator system to determine its performance and observations of droplet impingemen...

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Main Author: Abdul Aziz Mohamed Azlee
Other Authors: School of Mechanical and Aerospace Engineering
Format: Final Year Project (FYP)
Language:English
Published: 2014
Subjects:
Online Access:http://hdl.handle.net/10356/60165
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author Abdul Aziz Mohamed Azlee
author2 School of Mechanical and Aerospace Engineering
author_facet School of Mechanical and Aerospace Engineering
Abdul Aziz Mohamed Azlee
author_sort Abdul Aziz Mohamed Azlee
collection NTU
description This Final Year Project (FYP) report covers the summary of literature review done, the design of the droplet generator system testing rig, and also the results and analysis of various experiments done on the droplet generator system to determine its performance and observations of droplet impingement on surfaces. The optimal frequency for each pinhole diameter has been determined from the droplet observation experiment. It can be seen that with an increase in the frequency, the distance between droplets will become smaller and a slight reduction in droplet size. Also, it is imperative to use a hi-speed camera to observe the droplet impingement. The droplet impinged on the surface underwent deposition, which verifies the outcome from an experiment conducted in an academic journal, presented by Gail Duursma et al. (2009). For droplet impingement on heated plate, the droplet underwent partial levitation due to reduction of its mass from evaporation, which also verifies the outcome from an experiment conducted in an academic journal, presented by Satish G. Kandlikar (2001).
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spelling ntu-10356/601652023-03-04T18:45:28Z Droplet impingement and performance from droplet generator Abdul Aziz Mohamed Azlee School of Mechanical and Aerospace Engineering Fei Duan DRNTU::Engineering::Mechanical engineering::Fluid mechanics This Final Year Project (FYP) report covers the summary of literature review done, the design of the droplet generator system testing rig, and also the results and analysis of various experiments done on the droplet generator system to determine its performance and observations of droplet impingement on surfaces. The optimal frequency for each pinhole diameter has been determined from the droplet observation experiment. It can be seen that with an increase in the frequency, the distance between droplets will become smaller and a slight reduction in droplet size. Also, it is imperative to use a hi-speed camera to observe the droplet impingement. The droplet impinged on the surface underwent deposition, which verifies the outcome from an experiment conducted in an academic journal, presented by Gail Duursma et al. (2009). For droplet impingement on heated plate, the droplet underwent partial levitation due to reduction of its mass from evaporation, which also verifies the outcome from an experiment conducted in an academic journal, presented by Satish G. Kandlikar (2001). Bachelor of Engineering (Mechanical Engineering) 2014-05-22T09:02:44Z 2014-05-22T09:02:44Z 2014 2014 Final Year Project (FYP) http://hdl.handle.net/10356/60165 en Nanyang Technological University 101 p. application/pdf
spellingShingle DRNTU::Engineering::Mechanical engineering::Fluid mechanics
Abdul Aziz Mohamed Azlee
Droplet impingement and performance from droplet generator
title Droplet impingement and performance from droplet generator
title_full Droplet impingement and performance from droplet generator
title_fullStr Droplet impingement and performance from droplet generator
title_full_unstemmed Droplet impingement and performance from droplet generator
title_short Droplet impingement and performance from droplet generator
title_sort droplet impingement and performance from droplet generator
topic DRNTU::Engineering::Mechanical engineering::Fluid mechanics
url http://hdl.handle.net/10356/60165
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