Visual Study of Hollow Cone Water Spray Jet Breakup Process at Elevated Temperatures and Pressures

The liquid jet breakup is a ubiquitous phenomenon in nature and a classic problem in hydrodynamics. The understanding of the jet breakup mechanism of hot liquids is still a challenge for researchers. The objective of this work was to understand and control the hot water spray jet breakup mechanism a...

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Main Authors: Naz, Muhammad Yasin, Sulaiman, S. A., Bambang Ari, Wahjoedi, Ku Shaari, Ku Zilati
Format: Citation Index Journal
Published: 2014
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Online Access:http://eprints.utp.edu.my/10919/1/AMM.465-466.485.pdf
http://eprints.utp.edu.my/10919/
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Institution: Universiti Teknologi Petronas
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spelling my.utp.eprints.109192017-01-19T08:21:01Z Visual Study of Hollow Cone Water Spray Jet Breakup Process at Elevated Temperatures and Pressures Naz, Muhammad Yasin Sulaiman, S. A. Bambang Ari, Wahjoedi Ku Shaari, Ku Zilati TJ Mechanical engineering and machinery The liquid jet breakup is a ubiquitous phenomenon in nature and a classic problem in hydrodynamics. The understanding of the jet breakup mechanism of hot liquids is still a challenge for researchers. The objective of this work was to understand and control the hot water spray jet breakup mechanism at moderate pumping pressures and elevated temperature. For this purpose, the visual and comparative studies were conducted on hollow cone water spray patterns generated by three hollow cone spray nozzles which were installed in an in-house built intermittently forced liquid spraying system. Using a high speed camera, the jet breakup dynamics were visualized as a function of system input parameters. The analysis of the grabbed images confirmed the strong influence of these processing parameters on spray characteristics. It was also predicted that heated liquids generate the dispersed spray patterns and the induction of thermal energy into the system enhances the jet disintegration ability. The spray cone width and angle were not varied significantly whereas the Weber and Reynolds numbers along with other spray parameters showed an appreciable response to the load pressure and water heating temperature at early stages of water injection. 2014 Citation Index Journal PeerReviewed application/pdf http://eprints.utp.edu.my/10919/1/AMM.465-466.485.pdf Naz, Muhammad Yasin and Sulaiman, S. A. and Bambang Ari, Wahjoedi and Ku Shaari, Ku Zilati (2014) Visual Study of Hollow Cone Water Spray Jet Breakup Process at Elevated Temperatures and Pressures. [Citation Index Journal] http://eprints.utp.edu.my/10919/
institution Universiti Teknologi Petronas
building UTP Resource Centre
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Petronas
content_source UTP Institutional Repository
url_provider http://eprints.utp.edu.my/
topic TJ Mechanical engineering and machinery
spellingShingle TJ Mechanical engineering and machinery
Naz, Muhammad Yasin
Sulaiman, S. A.
Bambang Ari, Wahjoedi
Ku Shaari, Ku Zilati
Visual Study of Hollow Cone Water Spray Jet Breakup Process at Elevated Temperatures and Pressures
description The liquid jet breakup is a ubiquitous phenomenon in nature and a classic problem in hydrodynamics. The understanding of the jet breakup mechanism of hot liquids is still a challenge for researchers. The objective of this work was to understand and control the hot water spray jet breakup mechanism at moderate pumping pressures and elevated temperature. For this purpose, the visual and comparative studies were conducted on hollow cone water spray patterns generated by three hollow cone spray nozzles which were installed in an in-house built intermittently forced liquid spraying system. Using a high speed camera, the jet breakup dynamics were visualized as a function of system input parameters. The analysis of the grabbed images confirmed the strong influence of these processing parameters on spray characteristics. It was also predicted that heated liquids generate the dispersed spray patterns and the induction of thermal energy into the system enhances the jet disintegration ability. The spray cone width and angle were not varied significantly whereas the Weber and Reynolds numbers along with other spray parameters showed an appreciable response to the load pressure and water heating temperature at early stages of water injection.
format Citation Index Journal
author Naz, Muhammad Yasin
Sulaiman, S. A.
Bambang Ari, Wahjoedi
Ku Shaari, Ku Zilati
author_facet Naz, Muhammad Yasin
Sulaiman, S. A.
Bambang Ari, Wahjoedi
Ku Shaari, Ku Zilati
author_sort Naz, Muhammad Yasin
title Visual Study of Hollow Cone Water Spray Jet Breakup Process at Elevated Temperatures and Pressures
title_short Visual Study of Hollow Cone Water Spray Jet Breakup Process at Elevated Temperatures and Pressures
title_full Visual Study of Hollow Cone Water Spray Jet Breakup Process at Elevated Temperatures and Pressures
title_fullStr Visual Study of Hollow Cone Water Spray Jet Breakup Process at Elevated Temperatures and Pressures
title_full_unstemmed Visual Study of Hollow Cone Water Spray Jet Breakup Process at Elevated Temperatures and Pressures
title_sort visual study of hollow cone water spray jet breakup process at elevated temperatures and pressures
publishDate 2014
url http://eprints.utp.edu.my/10919/1/AMM.465-466.485.pdf
http://eprints.utp.edu.my/10919/
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