Mr. Mario Misale
ProfessorUniversity of Genoa, Italy
Highest Degree
M.Phil. in Mechanical Engineering from University of Genova, Italy
Share this Profile
Biography
Prof. Mario MISALE received his degree in mechanical engineering at University of Genoa, Italy, in 1981 informing the thesis "Influence of morphology and thermophysical properties of the surface on pool boiling process". Then he worked as development engineer at Ansaldo (Italy). In 1983 he becomes a full researcher at Energy and Environmental Conditioning Department of the University of Genoa and since 1992 he was associate professor and since 2004 is full professor at the Department of Mechanics, Energetics, Management and Transportation. I was in the following Editorial Board Journals: JP Journal of Heat and Mass Transfer, Open Journal of Fluid Dynamics, and Journal of Fundamentals of Renewable Energy and Applications.
Area of Interest:
Selected Publications
- Tanda, G., M. Fossa and M. Misale, 2014. Heat transfer measurements in water using a schlieren technique. Int. J. Heat Mass Trans., 71: 451-458.
CrossRef | Direct Link | - Misale, M., F. Devia and P. Garibaldi, 2012. Experiments with Al2O3 nanofluid in a single-phase natural circulation mini-loop: Preliminary results. Applied Thermal Eng., 40: 64-70.
CrossRef | Direct Link | - Devia, F. and M. Misale, 2012. Analysis of the effects of heat sink temperature on single-phase natural circulation loops behaviour. Int. J. Thermal Sci., 59: 195-202.
CrossRef | Direct Link | - Misale, M., P. Garibaldi, L. Tarozzi and G.S. Barozzi, 2011. Influence of thermal boundary conditions on the dynamic behaviour of a rectangular single-phase natural circulation loop. Int. J. Heat Fluid Flow, 32: 413-423.
CrossRef | Direct Link | - Misale, M., G. Guglielmini and A. Priarone, 2011. Nucleate boiling and critical heat flux of HFE-7100 in horizontal narrow spaces. Exp. Thermal Fluid Sci., 35: 772-779.
CrossRef | Direct Link | - Misale, M., G. Guglielmini and A. Priarone, 2009. HFE-7100 pool boiling heat transfer and critical heat flux in inclined narrow spaces. Int. J. Refrigerat., 32: 235-245.
CrossRef | Direct Link | - Garibaldi, P. and M. Misale, 2008. Experiments in single-phase natural circulation miniloops with different working fluids and geometries. J. Heat Trans., Vol. 130. 10.1115/1.2948393.
CrossRef | - Misale, M., P. Garibaldi, J.C. Passos and G.G. de Bitencourt, 2007. Experiments in a single-phase natural circulation mini-loop. Exp. Thermal Fluid Sci., 31: 1111-1120.
CrossRef | Direct Link | - Misale, M. and G. Tanda, 2006. Measurement of total hemispherical emittance and specific heat of aluminium and Inconel 718 by a calorimetric technique. J. Heat Trans., 128: 302-306.
- Misale, M., F. Devia and P. Garibaldi, 2005. Some considerations on the interaction between the fluid and wall tube during experiments in a single-phase natural circulation loops. IASME Trans., 9: 1717-1722.
- Passos, J.C., F.R. Hirata, L.F.B. Possamai, M. Balsamo and M. Misale, 2004. Confined boiling of FC72 and FC87 on a downward facing heating copper disk. Int. J. Heat Fluid Flow, 25: 313-319.
CrossRef | Direct Link | - Mousavian, S.K. M. Misale, F. D'Auria and M.A. Salehi, 2004. Transient and stability analysis in single-phase natural circulation. Ann. Nuc. Energy, 31: 1117-1198.
CrossRef | Direct Link | - Guglielmini, G., M. Misale and C. Schenone, 2002. Boiling of saturated FC-72 on square pin fin arrays. Int. J. Thermal Sci., 41: 599-608.
CrossRef | Direct Link | - Tanda, G., M. Misale and F. Devia, 2000. Experimental heat transfer from a vertical plate within a naturally ventilated cabinet. Heat Mass Trans., 36: 533-539.
CrossRef | Direct Link | - Misale, M., P. Ruffino and M. Frogheri, 2000. The influence of the wall thermal capacity and axial conduction over a single-phase natural circulation loop: 2-D numerical study. Heat Mass Trans., 36: 533-539.
CrossRef | Direct Link | - Misale, M., M. Frogheri, F. D'Auria, E. Fontani and A. Garcia, 1999. Analysis of single-phase natural circulation experiments by system codes. Int. J. Thermal Sci., 38: 977-983.
CrossRef | Direct Link | - Misale, M., G. Guglielmini, M. Frogheri and A.E. Bergles, 1999. Influence of the Confinement on FC-72 Pool Boiling from Finned Surfaces. In: Heat Transfer Enhancement of Heat Exchangers, Kakac, S., A.E. Bergles, F. Mayinger and H. Yuncu (Eds.). Kluwer Academic Publishers, London, UK., pp: 515-528.
- Misale, M., G. Guglielmini, M. Frogheri and A.E. Bergles, 1999. FC-72 pool boiling from finned surfaces placed in a narrow channel: Preliminary results. Heat Mass Trans., 34: 449-452.
CrossRef | Direct Link | - Misale, M. and M. Frogheri, 1999. Multidimensional aspects in single-phase natural circulation. Ind. Heat Eng., 21: 41-47.
- Misale, M. and M. Frogheri, 1999. Influence of pressure drops on the behavior of a single-phase natural circulation loop: Preliminary results. Int. Commun. Heat Mass Trans., 26: 597-606.
CrossRef | Direct Link | - Misale, M., 1997. A practical formula for air-cooled boards in ventilated enclosures. Electron. Cooling, 3: 32-36.
- Misale, M. and A.E. Bergles, 1997. The influence of channel width on natural convection and boiling heat transfer from simulated microelectronic components. Exp. Thermal Fluid Sci., 14: 187-193.
CrossRef | Direct Link | - Guglielmini, G., M. Misale and C. Schenone, 1996. Experiments on pool boiling of a dielectric fluid on extended surfaces. Int. Commun. Heat Mass Trans., 23: 451-462.
CrossRef | Direct Link | - Misale, M., C. Pisoni and G. Tanda, 1989. Investigation on total normal emittance of metals and steels subjected to mechanical surface treatments. High Temperatures High Pressures, 21: 311-315.
- Misale, M., C. Pisoni and G. Tanda, 1988. Influence of surface finishing operation on total normal emittance of nickel and titanium. Int. J. Heat Technol., 6: 97-110.
- Misale, M. and L. Tagliafico, 1987. The transient and stability behaviour of single-phase natural circulation loops. Heat Technol., 5: 101-116.
- Guglielmini, G., G. Milano and M. Misale, 1985. Electronic cooling by natural convection in partially confined enclosures. Heat Technol., 3: 43-57.