Thermo-Hydraulic Characteristics of FC-72 Evaporation in a Small-Gap Annulus

碩士 === 國立交通大學 === 機械工程系 === 91 === The characteristics of evaporative heat transfer coefficient and two-phase flow pressure drop for FC-72 at saturation pressure 1.15atm in a small-gap annulus were investigated experimentally and observed by flow pattern observation. The test section was...

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Main Authors: Jr-Ming Chang, 張志銘
Other Authors: Ding-Chong Lu
Format: Others
Language:zh-TW
Published: 2003
Online Access:http://ndltd.ncl.edu.tw/handle/72388223872134298262
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spelling ndltd-TW-091NCTU04890882016-06-22T04:14:27Z http://ndltd.ncl.edu.tw/handle/72388223872134298262 Thermo-Hydraulic Characteristics of FC-72 Evaporation in a Small-Gap Annulus 介電液FC-72於小間隙雙套管內蒸發熱流特性之實驗研究 Jr-Ming Chang 張志銘 碩士 國立交通大學 機械工程系 91 The characteristics of evaporative heat transfer coefficient and two-phase flow pressure drop for FC-72 at saturation pressure 1.15atm in a small-gap annulus were investigated experimentally and observed by flow pattern observation. The test section was a horizontal annulus with inside diameter 22mm, outside diameter 25mm with a gap 1.5mm. The range of mass flux was from 50 to 100 and heat flux from 1.0 to 5.0 . The results showed that the heat transfer coefficients and pressure drops both increased with quality, mass flux and heat flux. For pressure drops, the effect of mass flux was noticeable at high vapor quality, but the effect of heat flux was much smaller than that of mass flux. When compared with experimental data for proposed correlations reported in the literature, Wattelet&Chato’s(1994) heat transfer correlation predicted well within ±40%, but Friedel’s(1979) and Souza’s(1993) pressure drop correlation predicted very poorly. For mass flux of , heat flux of and quality of 0.09, the flow pattern was plug flow. For quality of 0.399, the flow pattern was wavy flow or slug flow. For quality of 0.65, the liquid film almost dried out and just had few liquid at the bottom portion of the annulus. Ding-Chong Lu 盧定昶 2003 學位論文 ; thesis 75 zh-TW
collection NDLTD
language zh-TW
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sources NDLTD
description 碩士 === 國立交通大學 === 機械工程系 === 91 === The characteristics of evaporative heat transfer coefficient and two-phase flow pressure drop for FC-72 at saturation pressure 1.15atm in a small-gap annulus were investigated experimentally and observed by flow pattern observation. The test section was a horizontal annulus with inside diameter 22mm, outside diameter 25mm with a gap 1.5mm. The range of mass flux was from 50 to 100 and heat flux from 1.0 to 5.0 . The results showed that the heat transfer coefficients and pressure drops both increased with quality, mass flux and heat flux. For pressure drops, the effect of mass flux was noticeable at high vapor quality, but the effect of heat flux was much smaller than that of mass flux. When compared with experimental data for proposed correlations reported in the literature, Wattelet&Chato’s(1994) heat transfer correlation predicted well within ±40%, but Friedel’s(1979) and Souza’s(1993) pressure drop correlation predicted very poorly. For mass flux of , heat flux of and quality of 0.09, the flow pattern was plug flow. For quality of 0.399, the flow pattern was wavy flow or slug flow. For quality of 0.65, the liquid film almost dried out and just had few liquid at the bottom portion of the annulus.
author2 Ding-Chong Lu
author_facet Ding-Chong Lu
Jr-Ming Chang
張志銘
author Jr-Ming Chang
張志銘
spellingShingle Jr-Ming Chang
張志銘
Thermo-Hydraulic Characteristics of FC-72 Evaporation in a Small-Gap Annulus
author_sort Jr-Ming Chang
title Thermo-Hydraulic Characteristics of FC-72 Evaporation in a Small-Gap Annulus
title_short Thermo-Hydraulic Characteristics of FC-72 Evaporation in a Small-Gap Annulus
title_full Thermo-Hydraulic Characteristics of FC-72 Evaporation in a Small-Gap Annulus
title_fullStr Thermo-Hydraulic Characteristics of FC-72 Evaporation in a Small-Gap Annulus
title_full_unstemmed Thermo-Hydraulic Characteristics of FC-72 Evaporation in a Small-Gap Annulus
title_sort thermo-hydraulic characteristics of fc-72 evaporation in a small-gap annulus
publishDate 2003
url http://ndltd.ncl.edu.tw/handle/72388223872134298262
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