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Multiphase Science and Technology

A Quarterly 

ISSN for PRINT: 0276-1459

Institutional price:

$694.00

Issues per year:

4

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2007, Volume19

Issue 2

  118 pages  

DOI: 10.1615/MultScienTechn.v19.i2   

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Issue price - $193.00  

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  • POOL BOILING IN MICROGRAVITY AND IN ELECTRIC FIELDS: OLD AND RECENT RESULTS
  • Paolo Di Marco
    Low Gravity and Thermal Advanced Research Laboratory, Dipartimento di Energetica “L. Poggi,” Università di Pisa, Pisa, Italy

    Walter Grassi
    Low Gravity and Thermal Advanced Research Laboratory, Dipartimento di Energetica “L. Poggi,” Università di Pisa, Pisa, Italy


    ABSTRACT

    The main outcomes of a 10-year research activity on pool boiling in microgravity, carried out at Low Gravity and Thermal Advanced Research Laboratory of Pisa University, are summarized. A large part of the article also deals with the effect of electrostatic fields on microgravity boiling. The reported results were obtained in several microgravity experimental campaigns and mainly during one sounding rocket (MASER-8) and one orbital flight on the Russian satellite FotonM2. They refer to wire and plate heaters in FC-72, subjected to the action of strongly nonuniform and nearly uniform electrostatic fields, respectively. Long-term steady state nucleate boiling seems to be possible in microgravity, especially in subcooled conditions, though impaired bubble removal and coalescence lead to an increase of void fraction and could degrade nucleate boiling heat transfer and anticipate CHF. It has been shown that the addition of an appropriate electric field widens the nucleate boiling region (increase of CHF), and the heat transfer coefficient becomes almost insensitive to gravity. These effects are more marked on wires than on plates, where, due to the different field geometry, a higher voltage is needed to attain the same effect and demonstrate the progressive dominance of electric forces over buoyancy.

    DOI: 10.1615/MultScienTechn.v19.i2.30

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