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Effects of Tube Inclination on Saturated Nucleate Pool Boiling Heat Transfer

튜브 경사각이 포화풀핵비등 열전달에 미치는 영향

  • Published : 2008.05.01

Abstract

Effects of tube inclination on pool boiling heat transfer have been studied for the saturated water at atmospheric pressure. For the analysis, seven inclination angles varying from the horizontal to the vertical and two tube diameters(25.4 and 30.0 mm) are tested. According to the results, inclination angles result in much change on heat transfer. For the same wall superheat(about $5.3^{\circ}C$) the ratio between two heat fluxes for the $45^{\circ}$ inclined and the vertical has the value of more than five when the tube diameter is 25.4mm. As the inclination angle is increasing from the horizontal to the vertical direction heat transfer is gradually increasing because of the increase in liquid agitation. However the detailed tendency depends on the ratio between the tube length and the diameter.

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References

  1. Chun, M. H. and Kang, M. G., 1998, "Effects of Heat Exchanger Tube Parameters on Nucleate Pool Boiling Heat Transfer," ASME, J. of Heat Transfer, Vol. 120, pp. 468-476 https://doi.org/10.1115/1.2824272
  2. Corletti, M. M. and Hochreiter, L. E., 1991, "Advanced Light Water Reactor Passive Residual Heat Removal Heat Exchanger Test," Proc. of the 1st JSME/ASME Joint International Conference on Nuclear Engineering, Tokyo, Japan, pp. 381-387
  3. Kang, M. G., 1998, "Experimental Investigation of Tube Length Effect on Nucleate Pool Boiling Heat Transfer," Annals of Nuclear Energy, Vol. 25, No. 4-5, pp. 295-304 https://doi.org/10.1016/S0306-4549(97)00056-X
  4. Kang, M. G., 2002, Effects of Tube Inclination Angle on Nucleate Pool Boiling Heat Transfer, Trans. KSME B, Vol. 26, No. 1, pp. 116-124 https://doi.org/10.3795/KSME-B.2002.26.1.116
  5. Jakob, M. and Hawkins, G. A., 1957, Elements of Heat Transfer, 3rd. ed., Wiley International Edition, pp. 206-210
  6. Van Stralen, S. J. D. and Sluyter, W. M. 1969, "Investigations on the Critical Heat Flux of Pure Liquids and Mixtures under Various Conditions," Int. J. Heat Mass Transfer, Vol. 12, pp. 1353-1384 https://doi.org/10.1016/0017-9310(69)90022-2
  7. Githinji, P. M. and Sabersky, R. H., 1963, "Some Effects of the Orientation of the Heating Surface in Nucleate Boiling" ASME, J. of Heat Transfer, Vol. 85, p. 379 https://doi.org/10.1115/1.3686129
  8. Nishikawa, K., Fujita, Y., Uchida, S. and Ohta, H., 1984, "Effect of Surface Configuration on Nucleate Boiling Heat Transfer," Int. J. Heat Mass Transfer, Vol. 27, No. 9, pp. 1559-1571 https://doi.org/10.1016/0017-9310(84)90268-0
  9. Jung, D. S., Venant, J. E. S. and Sousa, A. C. M., 1987, "Effects of Enhanced Surfaces and Surface Orientations on Nucleate and Film Boiling Heat Transfer in R-11," Int. J. Heat Mass Transfer, Vol. 30, No. 12, pp. 2627-2639 https://doi.org/10.1016/0017-9310(87)90144-X
  10. Fujita, Y., Ohta, H., Uchida, S., and Nishikawa, K., 1988, "Nucleate Boiling Heat Transfer and Critical Heat Flux in Narrow Space Between Rectabgular Spaces," Int. J. of Heat Mass Transfer, Vol. 31, No. 2, pp. 229-239 https://doi.org/10.1016/0017-9310(88)90004-X
  11. Howard, A. H. and Mudawar, I., 1999, "Orientation Effects on Pool Boiling Critical Heat Flux(CHF) and Modeling of CHF for Near-Vertical Surfaces," Int. J. Heat Mass Transfer, Vol. 42, pp. 1665-1688 https://doi.org/10.1016/S0017-9310(98)00233-6
  12. El-Genk, M. S. and Bostanci H., 2003, "Saturation Boiling of HFE-7100 from a Copper Surface, Simulating a Microelectric Chip," Int. J. Heat Mass Transfer, Vol. 46, pp. 1841-1854 https://doi.org/10.1016/S0017-9310(02)00489-1
  13. Chyu, M. C. and Mghamis, A. M., 1991, "Nucleate Boiling on Two Cylinders in Line Contact," Int. J. Heat Mass Transfer, Vol. 34, No. 7, pp. 1783-1790 https://doi.org/10.1016/0017-9310(91)90153-6
  14. Cornwell, K. and Houston, S. D., 1994, "Nu cleate Pool Boiling on Horizontal Tubes: a Convection-Based Correlation," Int. J. Heat Mass Transfer, Vol. 37, Suppl. 1, pp. 303-309 https://doi.org/10.1016/0017-9310(94)90031-0
  15. Kang, M. G., 2000, "Effect of Tube Inclination on Pool Boiling Heat Transfer," ASME, J. of Heat Transfer, Vol. 122, Issue 1, pp. 188-192 https://doi.org/10.1115/1.521456