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Tytuł artykułu

Złożone (kombinowane) metody intensyfikacji konweltcyynej,w~ńiiany ciepła przy przepływie jednofazowym płynów w rurach (ciąg dalszy artykułu)

Identyfikatory
Warianty tytułu
EN
Compound (combined) heat transfer enhancement techniques for single phase flow in tubes
Języki publikacji
PL
Abstrakty
Rocznik
Strony
4--9
Opis fizyczny
Bibliogr. 40 poz., rys.
Twórcy
autor
autor
Bibliografia
  • [1] WEBB R.L., ECKERT E.R., GOLDSTEIN R.J.: Heat transfer and friction in tubes with repeated rib roughness. Int. J. Heat Mass Transfer, Vol.14, 1971, 601-617.
  • [2] CARNAVOS T.C.: Cooling air in turbulent flow with internally finned tubes. Heat Transfer Eng., Vol.1, 1979, 41-46.
  • [3] WITHERS J.G.: Tube-side beat transfer and pressure drop for tubes having helical internal ridging with turbulent/transitional flow of single phase fluid. Part 1. Single-helix ridging. Heat Transfer Eng., Vol.2, 1980, 48-58.
  • [4] WITHERS J.G.: Tube-side beat transfer and pressure drop for tubes having helical internal ridging with turbulent/transitional flow of single phase fluid. Part 2. Multiple-helix ridging. Heat Transfer Eng., Vol.2, 1980, 43-50.
  • [5] MARNER W.J., BERGLES A.E.: Augmentation of highly viscous laminar heat transfer inside tubes with constant wall temperature. Exp. Therm. Fluid Sci. Vol.2, 1989, 252-267.
  • [6] GOWEN R.A., SMITH J.W.: Turbulent heat transfer from smooth and rough surfaces. Int. J. Heat Mass Transfer, Vol.11, 1968, 1657-1673.
  • [7] TAKAHASHI K., NAKAYAMA W., KUWAHARA H.: Enhancement of forced convective heat transfer in tubes having three-dimensional spiral ribs. Heat Transfer Jpn. Res.,Vol. 17, 1988, 12-28.
  • [8] RABAS T.J., WEBB R.L., THORS P., KIM N.K.: Influence of roughness shape and spacing on the performance of three-dimensional helically dimpled tubes. J. Enhanced Heat Transfer, Vol.1, 1993, 53-64.
  • [9] BROGNAUX L.J., WEBB R.L., CHAMRA L.M., CHUNG B.Y.: Single-phase heat transfer in microfin tubes. Int. J. Heat Mass Transfer, Vol.40, No. 18, 1997, 4345-4357.
  • [10] LI L., CUI W., LIAO Q., MINGDAO X., JEN T,-CH., CHAn Q.: Heat transfer augmentation in 3D internally finned and microfinned helical tube. Int. J. Heat Mass Transfer, 48, 2005, 1916-1925.
  • [11] Du PLESSIS J.P., KROGER D.G.: Heat transfer correlation for thermally developing laminar flow in a smooth tube with a twisted-tape insert. Int. J. Heat Mass Transfer, Vol.30, 1987, 509-515.
  • [12] RAO M.M., SASTRI V.M.K.: Experimental investigation for fluid. flow and heat transfer in a rotating tube with twisted-tape inserts. Heat Transfer Eng., Vo1.16, 1995, 19-28.
  • [13] BERGLES A.E.: Some perspective on enhanced heat transfer- second generation heat transfer technology J. Heat Transfer, Vo1.110, 1988, 1082-1096.
  • [14] RAVIGURURAJAN T.S., RABAS T.J.: Turbulent flow in integrally enhanced tubes. Part 1. Comprehensive review and data base development. Heat Transfer Eng., Vo1.17, 1996, 19-29.
  • [15] SAHA S.K., GAITONDE U.N., DATE A.W.: Heat transfer and pressure drop characteristics of laminar flow in a circular tube fitted with regularly spaced twisted-tape elements. Exp. Therm. Fluid Sci., Vol.2, 1989, 310-322.
  • [16] PLOCEK M., FODEMSKI T.R.: Experimental pressure drop characteristics of spaced twisted-tape inserts in a horizontal tube. Proceedings of the International Conference on Heat Transfer with Change of Phase HEAT'96, Kielce, December 1996. Opublikowane w Zeszytach Naukowych Politechniki Świętokrzyskiej, Mechanika, vo1.61, part II, 275-284.
  • [17] PLOCEK M., FODEMSKI T.R.: Analiza charakterystyk wybranych elementów instalacji cieplno-przepływowych oparta na pomiarach i symulacji komputerowej (przy użyciu kodu CFX-FLOW3D). Prace Naukowe Instytutu Techniki Cieplnej i Mechaniki Płynów Politechniki Wrocławskiej, nr 53, Seria Konferencje, nr 9; X Sympozjum Wymiany Ciepła i Masy, Wrocław 1998, Część 1, 242-247.
  • [18] DONEVSKI B., PLOCEK M., KULESZA J., SASIC M.: Analysis of tube side laminar and turbulent flow beat transfer with twisted tape inserts. S.J.Deng, et al. (Eds.), Heat Transfer Enhancement and Energy Conversation, Hemisphere, New York, 1990, 175-185.
  • [19] WEBB R. L.: Principles of Enhanced Heat Transfer. Wiley, New York, 1994.
  • [20] BERGLES A.E.: Techniques to augment heat transfer. In: Handbook of Heat Transfer Applications. Vol.3-1. McGraw-Hill, New York, 1985, 3-80 (rozdział 3).
  • [21] ZAWADZKI A., PLOCEK M.: Aktualne tendencje intensyfikacji wymiany ciepła w chłodniczych wymiennikach ciepła. Chłodnictwo & Klimatyzacja, Vol.9, nr 12(82), 2004, 30-37.
  • [22] MANGLIK R.M., BERGLES A.E.: Heat transfer enhancement and pressure drop in viscous liguid flows in isothermal tubes with twisted tape inserts. Warme. Stoffubertrag. Vo1.27, 1992, 249-257.
  • [23] MANGLIK R.M., BERGLES A.E.: Heat transfer enhancement and pressure drop correlations for twisted-tape inserts in isothermał tubes. Part II. Transition and turbulent flows. Trans. ASME, J. Heat Transfer, Vo1.115, 1993, 890-896.
  • [24] MARNER W.J., BERGLES A.E.: Augmentation of tube side laminar flow beat transfer by means of twisted-tape inserts, static-mixer inserts, and internally finned tubes. Proc. 6th Int. Heat Transfer Conf., Toronto, 5, 1978, 358-365.
  • [25] USUI H., SANO Y.: Heat transfer enhancement effects by combined use of internally grooved rough surfaces and twisted tape. Heat Transfer Jpn. Res., Vol.3, 1985, 19-32.
  • [26] ZHANG Y.M., HAN J.C., LEE C.P.: Heat transfer and friction characteristics of turbulent flow in circular tubes with twisted-tape inserts and axial interrupted ribs. J. Enhanced Heat Transfer, Vol.4, 1997, 297-308.
  • [27] VINCENTE P.G., GARCIA A., VTEDMA A.: Experimental investigation on heat transfer and frictional characteristics of spirally corrugated tubes in turbulent flow at different Prandtł numbers. Int. J. Heat Mass Transfer, Vol.47, 2004, 671-681.
  • [28] ZIMPAROV V.D.: Enhancement of heat transfer by a combination of three-start spirally corrugated tubes with a twisted tape. Int. J. Heat and Mass Transfer, Vol.44, 2001, 551-574.
  • [29] ZIMPAROV V.D.: Enhancement of heat transfer by a combination of a single-start spirally corrugated tubes with a twisted tape. Experimental Thermal and Fluid Science, Vol.25, 2002, 535-546.
  • [30] ZIMPAROV VD., PETKOV V.M.: Compound heat transfer augmentation by a combination of spirally corrugated tubes with a twisted tape. Proceedings of 1" International Conference of Heat Transfer, Fluid Mechanics and Thermodynamics, Kruger National Park, South Africa, Vol.1, 2002, 547-552.
  • [31] ZIMPAROV VD., PETKOV V.M.: Compound heat transfer augmentation by a combination of spirally corrugated tubes with a twisted tape. Proceedings of 12th International Heat Transfer Conference, Grenoble, France, Vol.4, 2002, 53-158.
  • [32] ZIMPAROV VD.: Prediction of friction factors and heat transfer coefficients for turbulent flow in corrugated tubes combined with twisted tape inserts. Part 2: heat transfer coefficients. Int. J. Heat and Mass Transfer, Vo1.47, 2004, 385-393.
  • [33] ZIMPAROV VD.: Prediction of friction factors and beat transfer coefficients for turbulent flow in corrugated tubes combined with twisted tape inserts. Part 1: friction factors. Int. J. Heat and Mass Transfer, Vol.47, 2004, 385-393.
  • [34] BEJAN A.: Entropy Generation Minimization. CRC Press, Boca Raton, FL, 1996.
  • [35] LIAO Q., XIN M.D.: Augmentation of convective heat transfer inside tubes with three-dimensional internal extended surfaces and twisted-tape inserts. Chemical Engineering Journal, Vol.78, 2000, 95-105.
  • [36] LIAO G.Y.: Three-Dimensional Internally Fined Tube and Machining Technique. Chinese Patent 88102575.5, 1988.
  • [37] AGARWAL S.K., RAJA R.M.: Heat Transfer Augmentation for the Flow of a Viscous Liquid in Circular Tubes Using Twisted Tape Inserts. Int.J.Heat Mass Transfer, Vol.39, 1996,3547'3557.
  • [38] CHANG S.W., JAN YJ., LIOU J.S.: Turbulent Heat Transfer and Pressure Drop in tube fitted with Serrated Twisted Tape. International Journal of Thermal Sciences, Vol. 46, 2007, 506-518.
  • [39] CHANG S.W., YOU K.W., LU M.H.: Heat Transfer in Tubes Fitted with Single, Twin and Triple Twisted Tapes. J. Experimental Heat Transfer, Vol.18, 2005, 279-294.
  • [40] HONG S.W., BERGLES A.E.: Augmentation of laminar flow heat transfer in tubes by means of twisted tape inserts. ASME J.Heat Transfer, 98, 1976, 251-256.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPG4-0028-0012
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