The behavior of flow within a rotating finite length cylinder has been investigated. For low rotational speeds, the flow is characterized by a non-uniform thickness i.e., rimming flow. Above a critical rotational speed, the flow transitions to annular flow. Correlations developed from the experimental data are presented for the three regimes: onset of annular flow, complete annular flow, and collapse of annular flow. The correlation for the collapse of annular flow compared well with a previously presented, theoretically developed correlation. Given that the heat transfer characteristics of rotating heat pipes depend upon the film thickness of the fluid charge, the correlations presented here will be valuable in determining regular operating conditions.
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December 2001
Technical Papers
Correlations of Critical Froude Number for Annular-Rimming Flow in Rotating Heat Pipes
J. Baker,
J. Baker
University of Alabama Tuscaloosa, AL 35487-0276
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T. Oliver,
T. Oliver
University of Alabama Tuscaloosa, AL 35487-0276
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R. Ponnapan,
R. Ponnapan
AFRL/PRPG, Wright-Patterson AFB, OH 45433-7251
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J. Leland
J. Leland
University of Dayton Research Institute, Dayton, OH 45469-0102
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J. Baker
University of Alabama Tuscaloosa, AL 35487-0276
T. Oliver
University of Alabama Tuscaloosa, AL 35487-0276
L. Lin
Universal Energy System, Inc., Dayton, OH
R. Ponnapan
AFRL/PRPG, Wright-Patterson AFB, OH 45433-7251
J. Leland
University of Dayton Research Institute, Dayton, OH 45469-0102
Contributed by the Fluids Engineering Division for publication in the JOURNAL OF FLUIDS ENGINEERING. Manuscript received by the Fluids Engineering Division July 6, 2000; revised manuscript received June 5, 2001. Associate Editor: P. E. Raad.
J. Fluids Eng. Dec 2001, 123(4): 909-913 (5 pages)
Published Online: June 5, 2001
Article history
Received:
July 6, 2000
Revised:
June 5, 2001
Citation
Baker , J., Oliver , T., Lin, L., Ponnapan, R., and Leland, J. (June 5, 2001). "Correlations of Critical Froude Number for Annular-Rimming Flow in Rotating Heat Pipes ." ASME. J. Fluids Eng. December 2001; 123(4): 909–913. https://doi.org/10.1115/1.1411967
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