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Vaporization heat transfer in porous wicks of evaporators

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Języki publikacji
EN
Abstrakty
EN
The experimental investigation of two-phase heat transfer in porous cylindrical element of the evaporator typical for heat transfer enhancement and its cooling efficiency. Propane was chosen as working fluid. The data obtained for a flooded and partially flooded horizontal tube with a sintered capillary-porous coating are analyzed to compare with the data of heat transfer for the tube disposed between two vertical plates with side mini-gaps and inside the coaxial tube with low gap (near 2 mm).
Twórcy
autor
  • Porous Media Labolatory, Luikov Heat & Mass Transfer Institute of National Academy of Sciences of Belarus, P.Brovka str. 15, 220072 Minsk, Belarus
  • Porous Media Labolatory, Luikov Heat & Mass Transfer Institute of National Academy of Sciences of Belarus, P.Brovka str. 15, 220072 Minsk, Belarus
  • Porous Media Labolatory, Luikov Heat & Mass Transfer Institute of National Academy of Sciences of Belarus, P.Brovka str. 15, 220072 Minsk, Belarus
  • Porous Media Labolatory, Luikov Heat & Mass Transfer Institute of National Academy of Sciences of Belarus, P.Brovka str. 15, 220072 Minsk, Belarus, LVASIL@hmti.ac.by
Bibliografia
  • [1] BUIKOV A. V., KALNIN I. M., KRUZE A. S.: Refrigeration Machines and Heat Pumps, Moscow 1988, (in Russian).
  • [2] JUNG D., LEE H., BAE D., OHO S.: Nucleate boiling heat transfer coefficients of flammable refrigerants, Int. J. of Refrigeration 27(2004), No. 4, 409-414.
  • [3] KUZMA-KICHTA YU. A., SEDLOV A.S., BUYAKOV D. V., KARTSEV A. S.: An improvement of heat pumps evaporators, General Problems of Electrical Power En gineering (Obshchie Woprosi Electroenergetiki) (2002), No. 3, 17-23, (in Russian)
  • [4] Informative fact sheet: Hydrocarbons as refrigerants in residential heat pumps and air-conditioners, Int. Energy Agency's Heat Pump Center, 2002.
  • [5] VASILIEV L. L., KHRONELOK V. V., ZHURAVLYOV A. S.: Intensification of heat transfer at propane boiling on single horizontal tube, Revue Gnrale de Termique 37(1998), No. 11, 926-967.
  • [6] VASILIEV L. L., ZHURAVLYOV A. S., KROLENOK V.V. ET AL.: Propane pool boiling heat transfer on horizontal tube, 2nd Int. Conf. on Heat Transfer and Transport Phenomena in Multiphase Systems, Kielce, Poland 1999, 339-347.
  • [7] Heat Exchanger Design Handbook, Vol. 2, Part 5. Hemisphere Publishing Corpora tion 1983.
  • [8] KLIMENKO A. P., KOZITSKEY V. I.: Experimental heat transfer investigation at propane boiling, Oil and Gas Industry (Neftyanaya i Gazowaya Promuislennoste), 1967, No. 1, 40-43, (in Russian).
  • [9] GORENFLO D., BLEIN P., ROTT W., SCHÖMANN H., SOKOL P.: Pool boiling heat transfer from GEWA-T-x finned tube to propane and propylene, Proc. of the Int. Seminar Advanced in Pool Boiling Heat Transfer: Euro erm No. 8, Paderborn, F.R.G. 1989, 116-126.
  • [10] SHAUBACH R. M., DUSSINGER P. M., BOGART J. E.: Boiling in heat pipe evaporator wick structures, Proc. of the 7th Int. Heat Pipe Conf., Minsk, USSR, 1990, 1-15.
  • [11] SMIRNOv H. F., AFANASIEV B. A., PNIEWSKI M.: Boiling in capillary-porous structures, Int. Conf. on Heat Transfer with Change of Phase, Kielce, Poland 1996, Part II, 197-220.
  • [12] WEBB R. L.: Nucleate boiling on porous coated surfaces, Heat Transfer Engineering, 4(1983), No. 3-4, 71-82.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BGPK-0882-3559
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