65
Views
0
CrossRef citations to date
0
Altmetric
Original Articles

Characterization of air-cooled heat transfer using round and slot nozzles

&
Pages 396-402 | Received 14 Jul 2014, Accepted 10 Dec 2014, Published online: 12 May 2015

References

  • Fisher, U., W. Leidenfrost, and J. Li. 1983. Hybrid evaporative–condenser cooling tower. Heat Transfer Engineering 4(2):28–41.
  • Hall, W.A. 1962. Elimination of cooling tower fog from a highway. Journal of the Air Pollution Control Association 12(8):379–83.
  • Hwang, J.S., S.M. Lee, and H.Y. So. 2012. Evaluation of flow characteristics for removing white plume of cooling tower. Proceedings of Korea Society of Mechanical Engineering, Changwon, Korea, November, pp. 2883–8. . New York: John Wiley & Sons.
  • Incropera, F.P., and D.P. Dewitt. 1996. Fundamentals of Heat and Mass Transfer, 4th Ed., pp. 389–95.
  • Jung, J.H., J.H. Jung, and Y.K. Choi. 2014. Program development for the prediction of cooling tower performance. Korea Journal of air-conditioning and refrigeration engineering 26(3):130–6.
  • Kang, J.H., P.J. Lee, and S.J. Lee. 2011. Design of water condition evaluation system for cooing nozzles. Proceedings of Korea Society for Precision Engineering, Jeju, Korea, June, pp. 1205–6.
  • Kikuchi, Y., K. Tatsut, and M. Sako. 1998. The effect of surface coating layer on air-water mist cooling of hot metals. Journal of Nuclear Science and Technology 35(7):477–84.
  • Kim, Y.J., J.W. Park., and L.S. Seo. 2009. Effect of nozzle geometry on the suction flow rate in an ejector. Journal of Korea Society for Fluid Machinery 12(6):13–7.
  • Kloppers, J.C., and D.G. Kröger. 2004. Cost optimization of cooling tower geometry. Engineering Optimization 36(5):575–84.
  • Ko, K.H., J.S. In., and T.I. Oh. 2004. Program development for design of counter-flow cooling tower. Journal of Korean Society of Industrial Application 7(4):383–9.
  • Kramer, M.L., M.E. Smith, M.J. Butler, D.E. Seymour, E.S. David, and T.T. Frankenberg. 1976. Cooling towers and the environment. Journal of the Air Pollution Control Association 26(6):582–4.
  • Lee, H.J., B.D. Joo, S.Y. Kim, S.P. Park, Y.B. Moon, and Y.H. Moon. 2011a. A study on cooling channel for warpage characteristics of nozzle. Journal of Korea Society for Technology of Plasticity, Korea, Changwon May:236–9.
  • Lee, J.H., C.H. Yu, and S.J. Park. 2011b. Effect of water temperature on heat transfer characteristic of spray cooling on hot steel plate. Korea Journal of Society of Mechanical Engineering 35(5):503–11.
  • Lee, T.G., S.A. Moon, H.S. Yoo, and J.H. Lee. 2006. Prediction of reentering ratio of individual cooling towers scattered on a building roof. Journal of Korea Air-Conditioning and Refrigeration Engineering 18(11):923–32.
  • Li, L.Y., and J.G.A. Croll. 2007. The analysis of free vibration of stiffened cooling towers. Civil Engineering Systems 10(1):1–17.
  • Lytle, D., and B.W. Webb. 1994. Air jet impingement heat transfer at low nozzle-plate spacing. International Journal of Heat and Mass Transfer 37(12):1687–97.
  • Martin, H. 1977. Heat and mass transfer between impinging gas jets and solid surfaces. Advances in Heat Transfer 13:1–60.
  • Meagher, J.F., E.M. Bailey, and M. Luria. 2012. The impact of mixing cooling tower and power plant plumes on sulfate aerosol formation. Journal of the Air Pollution Control Association 32(4):389–91.
  • Mills, A.F. 1999. Heat Transfer, 2nd Ed., pp. 67–412. New Jersey: Prentice Hall.
  • Narayanan, V., J. Seyed-Yagoobi, and R.H. Page. 2004. An experimental study of fluid mechanics and heat transfer in an impinging slot jet flow. Heat and Mass Transfer 47(8–9):1827–45.
  • Qureshi, B.A., and S.M. Zubair. 2006. Prediction of evaporation losses in wet cooling towers. Heat Transfer Engineering 27(9):86–92.
  • Roffman, A., and L.D.V. Vleck. 1974. The state of the art of measuring and predicting cooling tower drift and its deposition. Journal of the Air Pollution Control Association 24(9):855–9.
  • Royne, A., and C.J. Dey. 2006. Effect of nozzle geometry on pressure drop and heat transfer in submerged jet arrays. Heat and Mass Transfer 49:800–4.
  • Seo, Y., J. Kim, and S. Lee. 2010. Numerical study of complex nozzle configuration on thermal characteristics. Proceedings of Korea Society of Mechanical Engineering, Jeju, Korea, November, pp. 3446–50.
  • Shin, J.Y., Y.S. Son, and D.W. Han. 2002. Off-design performance analysis of a counter flow-type cooling tower. Journal of Korea Air-Conditioning and Refrigeration Engineering 14(3):191–8.
  • So, Y.K., B.C. Park, and B.J. Baek. 1998. A study of single-phase liquid cooling by multiple nozzle impingements on the smooth and extended surfaces. Journal of Korea Air-Conditioning and Refrigeration Engineering 10(6):743–52.
  • Stout, M.R., and J.W. Leach. 2002. Cooling tower fan control for energy efficiency. Energy Engineering 99(1):7–31.
  • Udagawa, Y., F. Nagase, and T. Fuketa. 2006. Effect of cooling history on cladding ductility under local conditions. Journal of Nuclear Science and Technology 43(8):844–850.
  • Veldhuizen, H., and J. Ledbetter. 1971. Cooling tower fog: control and abatement. Journal of the Air Pollution Control Association 21(1):21–4.
  • Vernon, W.D., B.M. Wyman, R.V. Hubert, and J.R. Snyder. 1981. A device for measuring volatile organic-carbon emissions from cooling tower water. Journal of the Air Pollution Control Association 31(12):1280–2.
  • Yamanouchi, A. 1968. Effects of core spray cooling at stationary state after loss of coolant accident. Journal of Nuclear Science and Technology 5(9):498–508.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.