Characteristics of bubble rise in a liquid

The study of bubble dynamics has been an active area of research. Extensive experimental and numerical research has been conducted to investigate the rising motion of a single bubble. Many studies have concluded that bubbles reach terminal velocity which greatly simplifies the calculations of a de-a...

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Main Author: Tan, Si Ying
Other Authors: Chiew Yee Meng
Format: Final Year Project
Language:English
Published: Nanyang Technological University 2022
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Online Access:https://hdl.handle.net/10356/158927
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-1589272022-06-08T04:30:52Z Characteristics of bubble rise in a liquid Tan, Si Ying Chiew Yee Meng School of Civil and Environmental Engineering CYMCHIEW@ntu.edu.sg Engineering::Civil engineering The study of bubble dynamics has been an active area of research. Extensive experimental and numerical research has been conducted to investigate the rising motion of a single bubble. Many studies have concluded that bubbles reach terminal velocity which greatly simplifies the calculations of a de-aeration chamber design for minimising attrition. This experimental study aimed to reaffirm that bubbles reach terminal velocity and to extend past studies by examining a wider range of bubbles with varying sizes from approximately 5 mm to 20 mm in diameter and in fluid mediums of varying viscosities – glycerol and aqueous glycerol solution. The study examined the bubble shape, size and trajectory during ascension, as well as the effects of fluid viscosity, bubble velocity and aspect ratio on drag coefficient and Reynolds number. The experimental results concluded that bubbles can reach terminal velocity after rising approximately 40 mm and the terminal rise velocity is highly correlated to the mean bubble width when ascending in higher viscosity fluids. Simultaneously, the trajectory and the bubble shape, in terms of aspect ratio, are observed to be highly dependent on both bubble size and fluid viscosity, which affects the components of a drag force. Slight deviations from the standard drag coefficient curve for a solid sphere could be due to the differences in aspect ratio which affect the bubble frontal area given that the bubble volume remains constant. Bachelor of Engineering (Civil) 2022-06-08T04:30:52Z 2022-06-08T04:30:52Z 2022 Final Year Project (FYP) Tan, S. Y. (2022). Characteristics of bubble rise in a liquid. Final Year Project (FYP), Nanyang Technological University, Singapore. https://hdl.handle.net/10356/158927 https://hdl.handle.net/10356/158927 en WR-01 application/pdf Nanyang Technological University
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic Engineering::Civil engineering
spellingShingle Engineering::Civil engineering
Tan, Si Ying
Characteristics of bubble rise in a liquid
description The study of bubble dynamics has been an active area of research. Extensive experimental and numerical research has been conducted to investigate the rising motion of a single bubble. Many studies have concluded that bubbles reach terminal velocity which greatly simplifies the calculations of a de-aeration chamber design for minimising attrition. This experimental study aimed to reaffirm that bubbles reach terminal velocity and to extend past studies by examining a wider range of bubbles with varying sizes from approximately 5 mm to 20 mm in diameter and in fluid mediums of varying viscosities – glycerol and aqueous glycerol solution. The study examined the bubble shape, size and trajectory during ascension, as well as the effects of fluid viscosity, bubble velocity and aspect ratio on drag coefficient and Reynolds number. The experimental results concluded that bubbles can reach terminal velocity after rising approximately 40 mm and the terminal rise velocity is highly correlated to the mean bubble width when ascending in higher viscosity fluids. Simultaneously, the trajectory and the bubble shape, in terms of aspect ratio, are observed to be highly dependent on both bubble size and fluid viscosity, which affects the components of a drag force. Slight deviations from the standard drag coefficient curve for a solid sphere could be due to the differences in aspect ratio which affect the bubble frontal area given that the bubble volume remains constant.
author2 Chiew Yee Meng
author_facet Chiew Yee Meng
Tan, Si Ying
format Final Year Project
author Tan, Si Ying
author_sort Tan, Si Ying
title Characteristics of bubble rise in a liquid
title_short Characteristics of bubble rise in a liquid
title_full Characteristics of bubble rise in a liquid
title_fullStr Characteristics of bubble rise in a liquid
title_full_unstemmed Characteristics of bubble rise in a liquid
title_sort characteristics of bubble rise in a liquid
publisher Nanyang Technological University
publishDate 2022
url https://hdl.handle.net/10356/158927
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