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  1. コンテンツタイプ
  2. テクニカルレポート (Technical Report)
  1. 機関資料(JAXA, former ISAS, NAL, NASDA)
  2. 旧機関資料 (JAXA, former-ISAS, NAL, NASDA)
  3. 宇宙開発事業団(National Space Development Agency of Japan: NASDA)
  4. NASDA-TMR

Transition to oscillatory Marangoni convection in liquid bridges of intermediate prandtl number

https://jaxa.repo.nii.ac.jp/records/42537
https://jaxa.repo.nii.ac.jp/records/42537
97cdc90a-1969-4cb9-adb8-3e45c19ddbbf
名前 / ファイル ライセンス アクション
32601004.pdf 32601004.pdf (2.4 MB)
Item type テクニカルレポート / Technical Report(1)
公開日 2015-03-26
タイトル
タイトル Transition to oscillatory Marangoni convection in liquid bridges of intermediate prandtl number
言語 en
言語
言語 eng
キーワード
主題Scheme Other
主題 マランゴニ対流
キーワード
主題Scheme Other
主題 プラントル数
キーワード
主題Scheme Other
主題 液体ブリッジ
キーワード
主題Scheme Other
主題 振動
キーワード
主題Scheme Other
主題 温度勾配
キーワード
主題Scheme Other
主題 アセトン
キーワード
主題Scheme Other
主題 温度プロファイル
キーワード
主題Scheme Other
主題 表面温度
キーワード
言語 en
主題Scheme Other
主題 Marangoni convection
キーワード
言語 en
主題Scheme Other
主題 Prandtl number
キーワード
言語 en
主題Scheme Other
主題 liquid bridge
キーワード
言語 en
主題Scheme Other
主題 oscillation
キーワード
言語 en
主題Scheme Other
主題 temperature gradient
キーワード
言語 en
主題Scheme Other
主題 acetone
キーワード
言語 en
主題Scheme Other
主題 temperature profile
キーワード
言語 en
主題Scheme Other
主題 surface temperature
資源タイプ
資源タイプ識別子 http://purl.org/coar/resource_type/c_18gh
資源タイプ technical report
その他のタイトル
その他のタイトル 中間プラントル数の液体ブリッジにおける振動マランゴニ対流への遷移
著者 川路, 正裕

× 川路, 正裕

川路, 正裕

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Simic, Sanja

× Simic, Sanja

Simic, Sanja

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Psofogiannakis, G.

× Psofogiannakis, G.

Psofogiannakis, G.

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依田, 真一

× 依田, 真一

依田, 真一

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Kawaji, Masahiro

× Kawaji, Masahiro

en Kawaji, Masahiro

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Simic, Sanja

× Simic, Sanja

en Simic, Sanja

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Psofogiannakis, G.

× Psofogiannakis, G.

en Psofogiannakis, G.

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Yoda, Shinichi

× Yoda, Shinichi

en Yoda, Shinichi

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著者所属
University of Toronto Dept. of Chemical Eng. and Applied Chem.
著者所属
University of Toronto Dept. of Chemical Eng. and Applied Chem.
著者所属
University of Toronto Dept. of Chemical Eng. and Applied Chem.
著者所属
宇宙開発事業団 宇宙環境利用研究システム
著者所属(英)
en
University of Toronto Department of Chemical Engineering and Applied Chemistry
著者所属(英)
en
University of Toronto Department of Chemical Engineering and Applied Chemistry
著者所属(英)
en
University of Toronto Department of Chemical Engineering and Applied Chemistry
著者所属(英)
en
National Space Development Agency of Japan Space Utilization Research Program
出版者
出版者 宇宙開発事業団
出版者(英)
出版者 National Space Development Agency of Japan (NASDA)
書誌情報 宇宙開発事業団技術報告: Marangoni Convection Modeling Research: Annual Report April 1, 2000 - March 31, 2001
en : NASDA Technical Memorandum: Marangoni Convection Modeling Research: Annual Report April 1, 2000 - March 31, 2001

p. 105-132, 発行日 2001-12-25
抄録(英)
内容記述タイプ Other
内容記述 Marangoni convection experiments have been conducted with acetone (Pr = 4.3) and methanol (Pr = 6.8) liquid bridges to investigate the flow structures and temperature fields during transition from steady to oscillatory convection in a half floating zone. In particular, the effects of liquid evaporation on the onset of oscillatory flow were investigated by performing the experiments under different evaporation rates. The effects of horizontal vibrations with small amplitudes were also investigated to understand the magnitude of free surface oscillation induced by such vibrations. In all of the experiments, a test section with 7.0 mm diameter disks was constructed to enable reduction of the evaporation rate by a factor of 4 to 5 by providing a tight seal between the inside and outside of a quartz tube fitted around the liquid bridge. The liquid bridge height was changed from 2.0 mm to 4.5 mm, covering aspect ratios from 0.55 up to 1.3. For acetone under reduced evaporation rates, the transition from steady to oscillatory convection was found to occur at disk temperature differences of 0.5 to 1.1 K, much less than 1.6 to 2.3 K for the partially open system. This difference in the critical temperature difference and corresponding critical Marangoni number data clearly showed the stabilizing effect of surface evaporation. The surface temperature profile for the partially open system also showed temperature inversion above the lower disk, where a cold region with a temperature below the cold disk temperature existed, as predicted by the linear stability analysis. On the other hand, the evaporation effect was found to be quite small for methanol, and the critical Marangoni numbers obtained agreed with the previous data for NaNO3 with a similar Prandtl number. For both acetone and methanol, the critical Marangoni numbers obtained for an aspect ratio of unity agreed with the predictions of a linear stability analysis, which also correctly predicted the stabilization effect of surface evaporation and an increase in the critical Marangoni number. The effects of forced vibration on the stability of a liquid bridge surface was also investigated by subjecting the acetone liquid bridge of 7.0 mm diameter to horizontal vibrations under an isothermal condition. The acceleration level was kept at 5 mG but the vibration frequency and amplitude were varied in the experiments. The response of the liquid bridge surface was recorded by a video camera and the surface motion was analyzed for different volume and aspect ratios. The results indicated existence of resonance frequencies at which the surface oscillates with large amplitudes, and a strong effect of the volume ratio on the oscillation amplitude. The maximum surface oscillation amplitude as high as 250 micrometers was recorded at applied vibration frequencies of 4 and 12 Hz. The resonance frequencies at which the liquid bridge vibrated with large amplitudes decreased linearly with the height of the liquid bridge.
ISSN
収録物識別子タイプ ISSN
収録物識別子 1345-7888
書誌レコードID
収録物識別子タイプ NCID
収録物識別子 AN00364784
資料番号
内容記述タイプ Other
内容記述 資料番号: AA0032601004
レポート番号
内容記述タイプ Other
内容記述 レポート番号: NASDA-TMR-010015E
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