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Wire-mesh and X-ray microtomography studies of flow patterns in the mixing chamber of an effervescent atomizer

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Języki publikacji
EN
Abstrakty
EN
We performed wire-mesh and X-ray micro-tomography studies of the two-phase flow in the mixing chamber of an effervescent atomizer. Flow patterns in the mixing chamber can be revealed by the miniature wire mesh sensor with a temporal resolution of 10 kHz whereas microtomography provides accurate and high-resolution axial-radial gas fraction profiles. The paper describes both measurement techniques and first results of experimental investigation.
Rocznik
Tom
Strony
161--165
Opis fizyczny
Bibliogr. 9 poz.
Twórcy
autor
autor
autor
autor
autor
  • Institute of Safety Research, Forschungszentrum Dresden-Rossendorf e. V., Dresden, Germany
Bibliografia
  • CHIN J.S. and LEFEBVRE A.H., (1993), Flow patterns in internal mixing, twin-fluid Atomizers, Alomization and Sprays, Vol. 3, pp. 463-475.
  • DUDLIK A., SCHÖNFELD S. B. H., SCHLÜTER S., FAHLENKAMP H., PRASSER H.-M, (2002), Prevention of water hammer and cavitational hammer in pipeline systems, Chemical Engineering and Technology 25, 888-890.
  • FELDKAMP L. A., DAVIS L. C, KRESS J. W., (1984), Practical cone-beam algorithm, Journal of the Optical Society of America A, 1 (6), 612.
  • JEDELSKY J., JICHA M., SLAMA J., (2004), Characteristics and behaviour of multi-hole effervescent atomizers. 19th International Conference on Liquid Atomization and Spray Systems - ILASS Europe 2004, pp. 521-526.
  • KLIEM S., SÜHNEL T., ROHDE U., HÖHNE T., PRASSER H.-M., WEISS F.-P., (2007), Experiments at the mixing test facility ROCOM for benchmarking of CFD-codes, Nuclear Engineering and Design, 0.1016/j.nucengdes. 2007.02.053, in press.
  • MANERA A., PRASSER H.-M., LUCAS D., VAN DER HAGEN T. H. J. J., (2006), Three-dimensional flow pattern visualization and bubble size distributions in stationary and transient upward flashing flow, International Journal of Multiphase Flow, 32, 996-1016.
  • PRASSER H.-M., BÖTTGER A., ZSCHAU J., (1998), A new electrode-mesh tomograph for gas-liquid flows, Flow Measurement Instrumentation 9, 111-119.
  • SOVANI S.D., SOJKA P.E., LEFEBVRE A.H., (2001), Effervescet Atomization, Progress in Energy and Combustion Science, Vol. 27, pp. 483-521.
  • WANGJIRANIRAN W., ARITOMI M., KIKURA H., MOTEGI Y., PRASSER H.-M., (2005), A study of nonsymmetric air water flow using wire mesh sensor, Experimental Thermal Fluid Science, 29, 315-322.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-LOD1-0020-0042
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