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  • 2000-2004  (2)
  • 1
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    In:  Geophys. J. Int., Veldhoven, Kluwer, vol. 144, no. 3, pp. 517-531, pp. B05302, (ISSN: 1340-4202)
    Publication Date: 2001
    Keywords: seismic Moment ; Seismicity ; Modelling ; Gutenberg-Richter magnitude frequency b-value ; Statistical investigations ; GJI
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  • 2
    Publication Date: 2019-07-13
    Description: This paper presents two means for enhancing nucleate boiling and critical heat flux under microgravity conditions: using micro-configured metal-graphite composites as the boiling surface and dilute aqueous solutions of long-chain alcohols as the working fluid. In the former, thermocapillary force induced by temperature difference between the graphite-fiber tips and the metal matrix plays an important role in bubble detachment. Thus boiling-heat transfer performance does not deteriorate in a reduced-gravity environment. In the latter cases, the surface tension-temperature gradient of the long-chain alcohol solutions turns positive as the temperature exceeds a certain value. Consequently, the Marangoni effect does not impede, but rather aids in bubble departure from the heating surface. This feature is most favorable in microgravity. As a result, the bubble size of departure is substantially reduced at higher frequencies. Based on the existing experimental data, and a two-tier theoretical model, correlation formulas are derived for nucleate boiling on the copper-graphite and aluminum-graphite composite surfaces, in both the isolated and coalesced bubble regimes. In addition, performance equations for nucleate boiling and critical heat flux in dilute aqueous solutions of long-chain alcohols are obtained.
    Keywords: Fluid Mechanics and Thermodynamics
    Type: AIAA Paper 2000-0853 , Aerospace Sciences; Jan 10, 2000 - Jan 13, 2000; Reno, NV; United States
    Format: application/pdf
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