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Measurement of temperaturę field around a single steady vapor bubble using phase shift interferometry

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Wybrane pełne teksty z tego czasopisma
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Języki publikacji
EN
Abstrakty
EN
In the current paper, the local temperature around a single axial symmetric vapor bubble is measured using the phase shift interferometry. For this purpose the four frames technique, Itoh algorithm for phase unwrapping and Abe inversion for computing the local temperature from the mean one were used. For generating a single vapor bubble a special test cell was constructed. With this technique a high-resolution spatial temperature distribution has been determined.
Rocznik
Strony
81--90
Opis fizyczny
Wz., rys.,Bibliogr. 14 poz.,
Twórcy
autor
autor
  • Darmstadt University of Technology, Peteresenstrasse 30, 64287 Darmstadt, Germany
Bibliografia
  • [1] KERN J., STEPHAN P.: Theoretical model for nucleate boiling heat and mass transfer of binary mixtures, Transactions of the ASME, J. of Heat Transfer, 125, 2003, 1106-1115.
  • [2] KERN J., STEPHAN P.: Investigation of decisive mixture effects in nucleate boiling of binary mixtures using a theoretical model, Transactions of the ASME, Journal of Heat Transfer, 125, 2003, 1116-1122.
  • [3] LÖTH K., LARSSON B., SHNEIDER H., JANSSON O., HOULTZ Y., COLINET P., IORIO C., JOANNES L., DUPONT O.: ITEL Experiment module and its flight on MASER 9, 53rd Int. Astronautical Congr., The World Space Congress - 2002, Houston, Texas, 10-19 Oct 2002.
  • [4] BEER H.: Interfacial velocities and bubble growth in nucleate boiling, International Symposium on Two-phase Systems, Technion City, Haifa, Israel, Aug. 29- Sept. 2, 1971.
  • [5] MATEKUNAS F.A. AND WINTER E.R.F.: An interferometric study of nucleate boiling, International Symposium on Two-phase Systems, Technion City, Haifa, Israel, Aug. 29- Sept. 2, 1971.
  • [6] MAYINGER F.: Two-phase flow and boiling: insights and understanding through modern noninvasive measuring techniques, Experimental Thermal and Fluid Science, 15, 1997, 141-153.
  • [7] ARLABOSSE P., TADRIST L., TADRIST H., PANTALONI J.: Experimental analysis of the heat transfer induced by thermocapillary convection around a bubble, J. of Heat Transfer, Vol.122, Feb. 2000, 66-73.
  • [8] ZELL M.: Untersuchung des Siedevorgangs unter reduzierter Schwerkraft, PhD. Thesis, Technischen Universitat Munchen, 1991.
  • [9] WOZNIAK G., BALASUBRAMANIAM R., HADLAND P.H., SUBRAMANIAN R.S.: Temperature fields in a liquid due to the thermocapillary motion of bubbles and drops, Experiments in Fluids 31, 2001, 84-89.
  • [10] SHENG MAO TIENG, WEN ZEI LAI AND TOSHI FUJIWARA: Holographic temperature measurement on axisymetric propane air, fuel-lean flame, Meas. Sci. Technol. 3, 1992, 1179-1187.
  • [11] DUBOIS F.: Optical methods for fluid flows and instabilities, Computational and optical methods for instabilities phenomena, Winter School, Univeriste Libre de Bruxelles, 10th -18th December, 2000.
  • [12] ASTRAKHARCHIK-FARRIMOND E., SHEKUNOV B.Y., YORK P., SAWYER N.B.E., MORGAN S.P., SOMEKH M.G., SEE C.W.: Dynamic measurements in supercritical flow using instantaneous phase-shift interferometry, Experiments in Fluids, 33(2002) 307-314.
  • [13] GHIGLIA DENIS C., PRITT MARK D.: Two-Dimensional Phase Unwrapping, Theory, Algorithms and Software, John Wiley & Sons, Inc, New York, USA 1998.
  • [14] BUCHHOLZ M., AURACHER H.: Microsensors to study temperature fluctuations near the heating surface in pool boiling and two-phase characteristics, Proc. 8th UK Nat. Heat Transfer Conf., Oxford, 2003.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BGPK-1469-5807
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