An Experimental Investigation of Different Steady Liquid Sheets Generated by Jet Impact on a Disc

碩士 === 國立臺灣大學 === 機械工程學研究所 === 99 === The objective of this investigation is to study the principle of classic atomization engineering of the impinging type of liquid sheet in great depth, and the attempts would be made to introduce the collide condition of new form in micro scale of liquid jets. Th...

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Main Authors: Pang-Hang Chiang, 江朋翰
Other Authors: Chin-Hua Wang
Format: Others
Language:zh-TW
Published: 2010
Online Access:http://ndltd.ncl.edu.tw/handle/51176592628710425562
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spelling ndltd-TW-099NTU054890092015-10-28T04:07:30Z http://ndltd.ncl.edu.tw/handle/51176592628710425562 An Experimental Investigation of Different Steady Liquid Sheets Generated by Jet Impact on a Disc 不同性質之穩態層流撞擊圓盤產生之液頁流場之研究 Pang-Hang Chiang 江朋翰 碩士 國立臺灣大學 機械工程學研究所 99 The objective of this investigation is to study the principle of classic atomization engineering of the impinging type of liquid sheet in great depth, and the attempts would be made to introduce the collide condition of new form in micro scale of liquid jets. This investigation continues Clanet’s study [1]; combine experimental and theoretical investigations of liquid sheets generated by water jet impact on solid discs and the atomization condition of liquid sheets in atmosphere environment. The main work is divided into three parts: (i) the feasibility of classic theory applied to micrometer scale water jets, (ii) the effect of viscosity, (iii) the effect of the diameter ratio of jets and discs. The results reveal that: (1) the classical theory of formation of water bells can be applied at the micrometer scale but with acceptable error, (2) the effect of viscosity is an important characteristic in determining the shapes of water bells at the micrometer scale, and (3) the diameter ratio of jets and discs affects the energy of formation of liquid sheets. Chin-Hua Wang 王興華 2010 學位論文 ; thesis 92 zh-TW
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language zh-TW
format Others
sources NDLTD
description 碩士 === 國立臺灣大學 === 機械工程學研究所 === 99 === The objective of this investigation is to study the principle of classic atomization engineering of the impinging type of liquid sheet in great depth, and the attempts would be made to introduce the collide condition of new form in micro scale of liquid jets. This investigation continues Clanet’s study [1]; combine experimental and theoretical investigations of liquid sheets generated by water jet impact on solid discs and the atomization condition of liquid sheets in atmosphere environment. The main work is divided into three parts: (i) the feasibility of classic theory applied to micrometer scale water jets, (ii) the effect of viscosity, (iii) the effect of the diameter ratio of jets and discs. The results reveal that: (1) the classical theory of formation of water bells can be applied at the micrometer scale but with acceptable error, (2) the effect of viscosity is an important characteristic in determining the shapes of water bells at the micrometer scale, and (3) the diameter ratio of jets and discs affects the energy of formation of liquid sheets.
author2 Chin-Hua Wang
author_facet Chin-Hua Wang
Pang-Hang Chiang
江朋翰
author Pang-Hang Chiang
江朋翰
spellingShingle Pang-Hang Chiang
江朋翰
An Experimental Investigation of Different Steady Liquid Sheets Generated by Jet Impact on a Disc
author_sort Pang-Hang Chiang
title An Experimental Investigation of Different Steady Liquid Sheets Generated by Jet Impact on a Disc
title_short An Experimental Investigation of Different Steady Liquid Sheets Generated by Jet Impact on a Disc
title_full An Experimental Investigation of Different Steady Liquid Sheets Generated by Jet Impact on a Disc
title_fullStr An Experimental Investigation of Different Steady Liquid Sheets Generated by Jet Impact on a Disc
title_full_unstemmed An Experimental Investigation of Different Steady Liquid Sheets Generated by Jet Impact on a Disc
title_sort experimental investigation of different steady liquid sheets generated by jet impact on a disc
publishDate 2010
url http://ndltd.ncl.edu.tw/handle/51176592628710425562
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