Heat Transfer Characteristics on Vibrating Vertical Surface in Gravitational Direction under Dropwise Condesation
Recently, the development of the high-performance heat exchanger is desired from the view point of saving energy and resources. The application to the heat exchanger of dropwise condensation phenomenon which shows high heat transfer performance is desired. However, the relationship between the behav...
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Published in | Progress in Multiphase Flow Research Vol. 1; pp. 135 - 142 |
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Main Authors | , |
Format | Journal Article |
Language | English Japanese |
Published |
THE JAPANESE SOCIETY FOR MULTIPHASE FLOW
2006
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Abstract | Recently, the development of the high-performance heat exchanger is desired from the view point of saving energy and resources. The application to the heat exchanger of dropwise condensation phenomenon which shows high heat transfer performance is desired. However, the relationship between the behavior of the condensate droplet and the heat transfer on the wide condensing surface in dropwise condensation has been not clarified. In this study, the heat transfer characteristics under dropwise condensation are investigated by the calculation and the experiment when the vertical condensing surface is vibrated in gravitational direction. As a result, we found that the heat transfer coefficient was enhanced by the vibration. |
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AbstractList | Recently, the development of the high-performance heat exchanger is desired from the view point of saving energy and resources. The application to the heat exchanger of dropwise condensation phenomenon which shows high heat transfer performance is desired. However, the relationship between the behavior of the condensate droplet and the heat transfer on the wide condensing surface in dropwise condensation has been not clarified. In this study, the heat transfer characteristics under dropwise condensation are investigated by the calculation and the experiment when the vertical condensing surface is vibrated in gravitational direction. As a result, we found that the heat transfer coefficient was enhanced by the vibration. |
Author | HOSOKAWA, Tsutomu SHIRAIWA, Hiroyuki |
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Cites_doi | 10.1093/earlyj/4.2.229-a 10.1299/kikaib.51.4055 10.1299/kikaib.47.1620 10.1016/0017-9310(76)90064-8 |
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Copyright | 2006 by The Japanese Society for Multiphase Flow |
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References | [3] 細川力, 河合彊, 藤尾暁彦, 小松源一, 水平円管外面の滴状凝縮熱伝達, 日本機械学会論文集 (B編), Vol. 51 (472), 4055-4062 (1985). [8] 宇高義郎, 棚沢一郎, 水蒸気の滴状凝縮における凝縮曲線の測定 (続報), 日本機械学会論文集 (B編), Vol. 47 (420), 1620-1628 (1981). [4] 白岩寛之, 細川力, 重力方向に振動する鉛直平板上の単一滴の挙動, 空気調和・衛生工学会論文集, Vol. 92, 93-99 (2004). [5] 中田敏夫, 細川力, 島岡三義, 北條勝彦, 脈動噴流蒸気中における鉛直平面上の滴状凝縮熱伝達, 空気調和・衛生工学会論文集, Vol. 84, 71-76 (2002). [2] 棚沢一郎, 伝熱工学の進展 4, 養賢堂, 229-325 (1976). [1] 田中宏明, 滴状凝縮に関する理論的研究, 日本機械学会論文集, Vol. 39, 3099-3113 (1973). [6] 中田敏夫, 細川力, 熊丸博滋, 北條勝彦, 脈動噴流蒸気中における傾斜平面上の滴状凝縮熱伝達と滴挙動, 空気調和・衛生工学会論文集, Vol. 88, 33-41 (2003). [7] 棚沢一郎, 落合淳一, 宇高義郎, 塩冶震太郎, 滴状凝縮過程の実験的研究 (液滴の離脱径の影響), 日本機械学会論文集 (B編), Vol. 42 (361), 2846-2853 (1976). [9] J. W. Rose, Further Aspects of Dropwise Condensation Theory, J. Heat Mass Transfer, Vol. 19, 1363-1370 (1976). 棚沢一郎, 落合淳一, 宇高義郎, 塩冶震太郎 (7) 1976; 42 HOSOKAWA TSUTOMU (3) 1985; 51 2 中田敏夫, 細川力, 島岡三義, 北條勝彦 (5) 2002; 84 中田敏夫, 細川力, 熊丸博滋, 北條勝彦 (6) 2003; 88 (8) 1981; 47 田中宏明 (1) 1973; 39 9 白岩寛之, 細川力 (4) 2004; 92 |
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SubjectTerms | Condensing Droplet behavior Droplets Dropwise condensation Heat exchangers Heat transfer Heat transfer coefficients Mathematical analysis Multiphase flow Vertical surface Vibration |
Title | Heat Transfer Characteristics on Vibrating Vertical Surface in Gravitational Direction under Dropwise Condesation |
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