Comparison on cooling performance of pre-cooled natural draft dry cooling towers using nozzles spray and wet medium

Evaporative pre-cooling technology improves the cooling performance of natural draft dry cooling towers (NDDCTs) by introducing a certain amount of water into the air entrance. This paper compares the effects of different evaporative pre-cooling systems (i.e., normal wet-medium arrangement, A-frame...

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Veröffentlicht in:Case studies in thermal engineering 2021-10, Vol.27, p.101274, Article 101274
Hauptverfasser: Miao, Jiayu, He, Suoying, Lu, Yuanwei, Wu, Yuting, Wu, Xuehong, Zhang, Guanhong, Gao, Ming, Geng, Zhe, Zhang, Shuzhen
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Sprache:eng
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Zusammenfassung:Evaporative pre-cooling technology improves the cooling performance of natural draft dry cooling towers (NDDCTs) by introducing a certain amount of water into the air entrance. This paper compares the effects of different evaporative pre-cooling systems (i.e., normal wet-medium arrangement, A-frame wet-medium arrangement and nozzle spray) on the cooling performance of a 167 m high NDDCT. Based on the meteorological data of Naomao lake in Xinjiang in 2015, two MATLAB programs were developed for case studies. This study finds all the evaporative pre-cooling systems can improve the NDDCT's cooling performance in high temperature period. In non-high temperature period, the NDDCT's performance improvement is unremarkable, and the NDDCT's cooling performance even deteriorates in the case of evaporative pre-cooling using wet medium. In the hottest month of July, the water outlet temperatures of the NDDCT pre-cooled with normal wet-medium arrangement, A-frame wet-medium arrangement and nozzle spray drop 3.2 K, 3.5 K and 3.3 K, respectively when compared with no pre-cooling counterpart. The annual average water consumption values are 39.0 kg/s, 56.4 kg/s and 124.1 kg/s, respectively. Considering all the year around performance improvement, it is suggested to use nozzle spray pre-cooling system while intermittent operation or certain-time period operation should be considered to save water. [Display omitted] •Two MATLAB programs were developed for case studies of a 167 m high NDDCT.•Evaporative pre-cooling systems can improve NDDCT's performance in hot period.•Water exit temperature of NDDCT pre-cooled using nozzle spray drops 3.3 K in July.•Nozzle spray pre-cooling system is suggested for NDDCT's performance improvement.
ISSN:2214-157X
2214-157X
DOI:10.1016/j.csite.2021.101274