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A Review Study On Cooling Towers; Types, Performance and Application

Year 2019, NSP2018 Special Issue, 1 - 10, 28.03.2019

Abstract

Temperature control is a significant requirement in
the most industrial process. In this regard, cooling towers are key parts of
many power plant installations. Operation of the cooling tower as heat
rejection device is based on a principle where waste thermal energy is
extracted from hot water to the atmosphere using relatively cool and dry air. In
this study, a review study is carried out to investigate different types of
cooling towers, their application, performance, usage and working principles,
which can be useful in the field of nuclear plants as well as other energy
stations. A number of investigations have been considered to reveal differences
between the used cooling towers and finally a Fluent simulation has been carried
out to examine major contours and flow field around the cooling tower.




 




References

  • [1] Fisenko, S. P., Brin, A. A., Petruchik, A. I. "Evaporative cooling of water in a mechanical draft cooling tower". International Journal of Heat and Mass Transfer, 47(1), 165-177 (2004).
  • [2] Li, X., Gurgenci, H., Guan, Z., Wang, X., Duniam, S. "Measurements of crosswind influence on a natural draft dry cooling tower for a solar thermal power plant". Applied Energy, 206, 1169-1183 (2017).
  • [3] Milosavljevic, N., Heikkilä, P. "A comprehensive approach to cooling tower design". Applied thermal engineering, 21(9), 899-915 (2001).
  • [4] Naik, B. K., Muthukumar, P. "A novel approach for performance assessment of mechanical draft wet cooling towers". Applied Thermal Engineering, 121, 14-26 (2017).
  • [5] Sai, B. B., Swathi, I., Prasanna, K. S. L., Rao, K. S. "Design of Cooling Tower". International Journal of Scientific & Engineering Research, 4(5), 1560 (2013).
  • [6] Sun, Y., Guan, Z., Hooman, K. "A review on the performance evaluation of natural draft dry cooling towers and possible improvements via inlet air spray cooling". Renewable and Sustainable Energy Reviews, 79, 618-637 (2017).
  • [7] Wang, W., Zhang, H., Liu, P., Li, Z., Lv, J., Ni, W. "The cooling performance of a natural draft dry cooling tower under crosswind and an enclosure approach to cooling efficiency enhancement". Applied Energy, 186, 336-346 (2017).
  • [8] Zavaragh, H. G., Ceviz, M. A., Tabar, M. T. S. "Analysis of windbreaker combinations on steam power plant natural draft dry cooling towers". Applied Thermal Engineering, 99, 550-559 (2016).
  • [9] Shen Chou M. "A comparison of wet type and dry type cooling towers by energy availability methods" Thesis for the Degree Master of Science (1973).
  • [10] Busch, D., Harte, R., Kratzig, W. B., Montag, U. "World's tallest natural draft cooling tower, near Cologne, Germany". Structural engineering international, 11(2), 107-109. (2001).
  • [11] Gerard, K. U.S. Patent No. 1,343,832. Washington, DC: U.S. Patent and Trademark Office (1920)

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Year 2019, NSP2018 Special Issue, 1 - 10, 28.03.2019

Abstract

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References

  • [1] Fisenko, S. P., Brin, A. A., Petruchik, A. I. "Evaporative cooling of water in a mechanical draft cooling tower". International Journal of Heat and Mass Transfer, 47(1), 165-177 (2004).
  • [2] Li, X., Gurgenci, H., Guan, Z., Wang, X., Duniam, S. "Measurements of crosswind influence on a natural draft dry cooling tower for a solar thermal power plant". Applied Energy, 206, 1169-1183 (2017).
  • [3] Milosavljevic, N., Heikkilä, P. "A comprehensive approach to cooling tower design". Applied thermal engineering, 21(9), 899-915 (2001).
  • [4] Naik, B. K., Muthukumar, P. "A novel approach for performance assessment of mechanical draft wet cooling towers". Applied Thermal Engineering, 121, 14-26 (2017).
  • [5] Sai, B. B., Swathi, I., Prasanna, K. S. L., Rao, K. S. "Design of Cooling Tower". International Journal of Scientific & Engineering Research, 4(5), 1560 (2013).
  • [6] Sun, Y., Guan, Z., Hooman, K. "A review on the performance evaluation of natural draft dry cooling towers and possible improvements via inlet air spray cooling". Renewable and Sustainable Energy Reviews, 79, 618-637 (2017).
  • [7] Wang, W., Zhang, H., Liu, P., Li, Z., Lv, J., Ni, W. "The cooling performance of a natural draft dry cooling tower under crosswind and an enclosure approach to cooling efficiency enhancement". Applied Energy, 186, 336-346 (2017).
  • [8] Zavaragh, H. G., Ceviz, M. A., Tabar, M. T. S. "Analysis of windbreaker combinations on steam power plant natural draft dry cooling towers". Applied Thermal Engineering, 99, 550-559 (2016).
  • [9] Shen Chou M. "A comparison of wet type and dry type cooling towers by energy availability methods" Thesis for the Degree Master of Science (1973).
  • [10] Busch, D., Harte, R., Kratzig, W. B., Montag, U. "World's tallest natural draft cooling tower, near Cologne, Germany". Structural engineering international, 11(2), 107-109. (2001).
  • [11] Gerard, K. U.S. Patent No. 1,343,832. Washington, DC: U.S. Patent and Trademark Office (1920)
There are 11 citations in total.

Details

Primary Language English
Journal Section Makaleler
Authors

Faraz Afshari

Heydar Dehghanpour

Publication Date March 28, 2019
Submission Date November 28, 2018
Acceptance Date December 22, 2018
Published in Issue Year 2019 NSP2018 Special Issue

Cite

APA Afshari, F., & Dehghanpour, H. (2019). A Review Study On Cooling Towers; Types, Performance and Application. ALKÜ Fen Bilimleri Dergisi1-10.
AMA Afshari F, Dehghanpour H. A Review Study On Cooling Towers; Types, Performance and Application. ALKÜ Fen Bilimleri Dergisi. Published online March 1, 2019:1-10.
Chicago Afshari, Faraz, and Heydar Dehghanpour. “A Review Study On Cooling Towers; Types, Performance and Application”. ALKÜ Fen Bilimleri Dergisi, March (March 2019), 1-10.
EndNote Afshari F, Dehghanpour H (March 1, 2019) A Review Study On Cooling Towers; Types, Performance and Application. ALKÜ Fen Bilimleri Dergisi 1–10.
IEEE F. Afshari and H. Dehghanpour, “A Review Study On Cooling Towers; Types, Performance and Application”, ALKÜ Fen Bilimleri Dergisi, pp. 1–10, March 2019.
ISNAD Afshari, Faraz - Dehghanpour, Heydar. “A Review Study On Cooling Towers; Types, Performance and Application”. ALKÜ Fen Bilimleri Dergisi. March 2019. 1-10.
JAMA Afshari F, Dehghanpour H. A Review Study On Cooling Towers; Types, Performance and Application. ALKÜ Fen Bilimleri Dergisi. 2019;:1–10.
MLA Afshari, Faraz and Heydar Dehghanpour. “A Review Study On Cooling Towers; Types, Performance and Application”. ALKÜ Fen Bilimleri Dergisi, 2019, pp. 1-10.
Vancouver Afshari F, Dehghanpour H. A Review Study On Cooling Towers; Types, Performance and Application. ALKÜ Fen Bilimleri Dergisi. 2019:1-10.