This article deals with the numerical modeling of the pulsating heat pipe (PHP) and is based on the film evaporation/condensation model recently applied to the single-bubble PHP (Das et al., 2010, “Thermally Induced Two-Phase Oscillating Flow Inside a Capillary Tube,” Int. J. Heat Mass Transfer, 53(19–20), pp. 3905–3913). The described numerical code can treat the PHP of an arbitrary number of bubbles and branches. Several phenomena that occur inside the PHP are taken into account: coalescence of liquid plugs, film junction or rupture, etc. The model reproduces some of the experimentally observed regimes of functioning of the PHP such as chaotic or intermittent oscillations of large amplitudes. Some results on the PHP heat transfer are discussed.
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Research Papers
A Dynamic Film Model of the Pulsating Heat Pipe
Vadim S. Nikolayev
Vadim S. Nikolayev
ESEME, Service des Basses Températures,
e-mail: vadim.nikolayev@espci.fr
INAC/CEA-Grenoble
, France; and ESEME, PMMH-ESPCI
, 10 Rue Vauquelin, 75231 Paris Cedex 5, France
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Vadim S. Nikolayev
ESEME, Service des Basses Températures,
INAC/CEA-Grenoble
, France; and ESEME, PMMH-ESPCI
, 10 Rue Vauquelin, 75231 Paris Cedex 5, Francee-mail: vadim.nikolayev@espci.fr
J. Heat Transfer. Aug 2011, 133(8): 081504 (9 pages)
Published Online: May 4, 2011
Article history
Received:
November 8, 2010
Revised:
March 4, 2011
Online:
May 4, 2011
Published:
May 4, 2011
Citation
Nikolayev, V. S. (May 4, 2011). "A Dynamic Film Model of the Pulsating Heat Pipe." ASME. J. Heat Transfer. August 2011; 133(8): 081504. https://doi.org/10.1115/1.4003759
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