PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
Tytuł artykułu

Determination of the local overall heat transfer coefficient on plastic tube walls

Autorzy
Wybrane pełne teksty z tego czasopisma
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The paper describes determination, by means of theoretical and experimental methods of local overall heat transfer coefficients on a cylindrical partition. Such partition consists of the tube wall made of plastic or alloy steel. In the experiments, the flow of cooled liquid (denatured alcohol) was characterized by Reynolds numbers from the range 3000 < Re < 20000. Water or air was flowing in countercurrent manner on the external tube surface. A mathematical model of momentum and heat exchange processes in the inlet zone of the tube was been elaborated, which considers the thermal boundary condition on the external surface of the tube taken from experiments. To compare the achieved findings, the corresponding experimental results published in the literature are cited. Such comparison shows a good compatibility.
Rocznik
Strony
67--85
Opis fizyczny
Bibliogr. 15 poz.,Rys., tab.,
Twórcy
autor
  • Prof. w Instytucie Aparatury Przemysłowej i Energetyki PK; mechanika: mechanika płynów
Bibliografia
  • [1] HOLMAN J. P.: Heat Transfer, IX Ed. McGraw Hill, Boston, 2002.
  • [2] SHAH R.: Compact Heat Exchangers, Handbook of Heat Transfer Applications, J. Wiley, New York 1985.
  • [3] TALER J.: Theory and Practice of I Identification of Heat Flow Processes, Ossolineum, Wrocław 1995, (in Polish).
  • [4] RUP K., WRONA J.: Determinationof heat transfer coefficient on the surface of heat exchanger pipes, Mat. Konf. IX Symp. Wym. Ciepła i Masy, Augustów 1995, t.2, 229-237, (in Polish).
  • [5] RUP K., DUDA P., DANYS L.: Determination of heat transfer coefficients on the surfaces of plastic tubes, Heat and Mass Transfer, 39(2002), 89-95.
  • [6] KAYS W. M.: Turbulent Prandtl number - where are we?, ASME J. of Heat Transfer, 116(1994), 284-295.
  • [7] JONES W. P., LAUNDER B. E.: The calculation of low-Reynolds-number phenomena with a two-equation model of turbulence, Int. J. Heat Mass Transfer, 16(1973), 1119- 1130.
  • [8] RUP K., SoczówKA M.: An improved for low Reynolds number k-e model for heat transfer calculations, Forschung im Ingenieurwesen, 65(2000), 225-235.
  • [9] MIKIELEWICZ D.: Modelling of turbulent heat transfer in constant property forced convection flows in vertical pipes, Prace Naukowe ITC i Mech. Płynów PW. 53/9
  • [10] TANNEHILL J. C., ANDERSON D. A., PLETCHER R. H.: Computational Fluid Mechanics and Heat Transfer, Taylor & Francis, Bristol US, 1997.
  • [11] Ho C. Y., LILEY P. E., MAKITA T., TANAKA Y.: Properties of Inorganic and Organic Fluids, Hemisphere Publ. Corporation, New York 1998.
  • [12] RUP K.: Method of the Measurement of the Heat Conductivity of Plastics Pipes, monografia nr 257, Kraków 1999, (in Polish).
  • [13] WEGST C. W.: Properties of Steels, Verlag Stahlschlussel Wegst GmbH, Marbach 2001 (in German).
  • [14] HEWITT G. F.: Handbook of Heat Exchanger Design, Begell House, Inc., New York 1992.
  • [15] PIETUCHOV B. S., POLYAKOV A. F.: Turbulent Mixed Convection Heat Transfer, Nauka, Moskva 1986, (in Russian).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BGPK-0638-2811
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.