Boiling heat transfer enhancement in subsurface horizontal and vertical tunnels

Experimental Thermal and Fluid Science - Tập 32 - Trang 1564-1577 - 2008
Robert Pastuszko1
1Chair of Thermodynamics and Fluids Mechanics, The Kielce University of Technology, Al. Tysiaclecia P.P. 7, 25-314 Kielce, Poland

Tài liệu tham khảo

M.E. Poniewski, Nucleate Boiling on Developed Micro-Surfaces (in Polish), Kielce Univ. of Technology, Monograph – s. Mechanics, No. 23, Kielce, 2001. Thome, 1990 T. Ma, X. Liu, J. Wu, H. Li, Effects of geometrical shapes and parameters of re-entrant grooves on nucleate pool boiling heat transfer from porous surfaces, in: Proceedings of the 8th International Heat Transfer Conference, San Francisco, 1986, pp. 2013–2018. Nakayama, 1980, Dynamic model on enhanced boiling heat transfer on porous surfaces. Part I: experimental investigation, Journal of Heat Transfer, 102, 445, 10.1115/1.3244320 Nakayama, 1982, Effects of pore diameters and system pressure on nucleate boiling heat transfer from porous surfaces, Journal of Heat Transfer, 104, 286, 10.1115/1.3245085 Chien, 1996, A parametric study of nucleate boiling on structured surfaces. Part I: effect of tunnel dimensions, ASME-HDT, 326, 129 Chien, 1996, A parametric study of nucleate boiling on structured surfaces. Part II: effect of pore diameter and pore pitch, ASME-HDT, 326, 137 Rainey, 2000, Pool boiling heat transfer from plain and microporous, square pin-finned surfaces in saturated FC-72, Journal of Heat Transfer, 122, 509, 10.1115/1.1288708 Kim, 2001, Nucleate pool boiling on structured enhanced tubes having pores with connecting gaps, International Journal of Heat Mass and Transfer, 44, 17, 10.1016/S0017-9310(00)00096-X R. Pastuszko, M.E. Poniewski, Boiling heat transfer enhancement on fins with perforated foil, in: Proceedings of the 9th International Symposium on Heat Transfer and Renewable Sources of Energy, Międzyzdroje, Poland, 2002, pp.161–168. R. Pastuszko, M.E. Poniewski, P.J. Mroczek, Boiling heat transfer enhancement on fin arrays with extended micro-surfaces, in: Proceedings of the 3rd International Symposium on Two-Phase Flow Modelling and Experimentation, Pisa, paper mt-12, 2004. R. Pastuszko, M.E. Poniewski, Semi-analytical approach to boiling heat fluxes calculation in subsurface horizontal and vertical tunnels, International Journal of Thermal Sciences, doi:10.1016/j.ijthermalsci.2007.10.003. R. Pastuszko, P.J. Mroczek, Boiling visualization for fins with horizontal and vertical subsurface tunnels, in: Proceedings of the 11th International Symposium on Heat Transfer and Renewable Sources of Energy, Międzyzdroje, 2006, pp. 629–636. R. Pastuszko, P.J. Mroczek, Boiling visualization for extended surfaces with narrow tunnels limited with porous structure, in: Proceedings of the XIII Symposium on Heat and Mass Transfer, Darłowko-Koszalin, 2007, pp. 777–784. (in Polish). Nakayama, 1980, Dynamic model on enhanced boiling heat transfer on porous surfaces. Part II: analytical modeling, Journal of Heat Transfer, 102, 451, 10.1115/1.3244321 Wójcik, 2003, Hysteresis characteristics of boiling heat transfer from copper porous fibrous structures, Archives of Thermodynamics, 24, 37 Bejan, 1993 M. Koziol, Analysis of boiling heat transfer on finned surfaces with micro-fins and perforated foil, Ph.D. Thesis, Kielce University of Technology, Kielce, 2006. (in Polish).