Miscible Magnetic Flows in a Vertical Capillary Tube
碩士 === 國立雲林科技大學 === 機械工程系碩士班 === 95 === We study the transportation of miscible magnetic fluids in a vertical capillary tube. The motion of magnetic fluid is investigated both by experiments and simulations. The experiments and numerical results of the transportation of miscible magnetic fluids in a...
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ndltd-TW-095YUNT54890182016-05-20T04:17:55Z http://ndltd.ncl.edu.tw/handle/05647880833956154661 Miscible Magnetic Flows in a Vertical Capillary Tube 垂直毛細管中可互溶磁性流體之流場分析 He-Ching Lin 林合慶 碩士 國立雲林科技大學 機械工程系碩士班 95 We study the transportation of miscible magnetic fluids in a vertical capillary tube. The motion of magnetic fluid is investigated both by experiments and simulations. The experiments and numerical results of the transportation of miscible magnetic fluids in a capillary tube provide quantitative information that is essential for a systematic analysis of flow field. The influences of experiment’s parameters and dimensionless control parameters, such as field strengths, viscosity, diameter, field strengths (Mg) and viscosity contrasts (R) are analyzed. For experiments, a higher finger velocity is observed at less viscosity, larger field strengths and diameter. In general, a stronger magnetic effect, less viscosity and larger diameter leads to a better mass transfer performance. For simulations, a higher speed is observed at a larger field strengths (Mg) and less viscosity contrasts (R). However, in addition to the moving speeds, larger field strengths (Mg) and less viscosity contrasts (R) leads to a better mass transfer performance and higher circulation. Ching-Yao Chen 陳慶耀 2007 學位論文 ; thesis 103 zh-TW |
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碩士 === 國立雲林科技大學 === 機械工程系碩士班 === 95 === We study the transportation of miscible magnetic fluids in a vertical capillary tube. The motion of magnetic fluid is investigated both by experiments and simulations. The experiments and numerical results of the transportation of miscible magnetic fluids in a capillary tube provide quantitative information that is essential for a systematic analysis of flow field. The influences of experiment’s parameters and dimensionless control parameters, such as field strengths, viscosity, diameter, field strengths (Mg) and viscosity contrasts (R) are analyzed. For experiments, a higher finger velocity is observed at less viscosity, larger field strengths and diameter. In general, a stronger magnetic effect, less viscosity and larger diameter leads to a better mass transfer performance. For simulations, a higher speed is observed at a larger field strengths (Mg) and less viscosity contrasts (R). However, in addition to the moving speeds, larger field strengths (Mg) and less viscosity contrasts (R) leads to a better mass transfer performance and higher circulation.
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author2 |
Ching-Yao Chen |
author_facet |
Ching-Yao Chen He-Ching Lin 林合慶 |
author |
He-Ching Lin 林合慶 |
spellingShingle |
He-Ching Lin 林合慶 Miscible Magnetic Flows in a Vertical Capillary Tube |
author_sort |
He-Ching Lin |
title |
Miscible Magnetic Flows in a Vertical Capillary Tube |
title_short |
Miscible Magnetic Flows in a Vertical Capillary Tube |
title_full |
Miscible Magnetic Flows in a Vertical Capillary Tube |
title_fullStr |
Miscible Magnetic Flows in a Vertical Capillary Tube |
title_full_unstemmed |
Miscible Magnetic Flows in a Vertical Capillary Tube |
title_sort |
miscible magnetic flows in a vertical capillary tube |
publishDate |
2007 |
url |
http://ndltd.ncl.edu.tw/handle/05647880833956154661 |
work_keys_str_mv |
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