Effects of acoustic barriers and crosswind on the operating performance of evaporative cooling tower groups
Author:
Publisher
Springer Science and Business Media LLC
Subject
Condensed Matter Physics
Link
http://link.springer.com/content/pdf/10.1007/s11630-016-0895-2.pdf
Reference31 articles.
1. G. F. Hundy, A. R. Trott, T. C. Welch.: Chapter 6 -Condensers and Cooling Towers. Refrigeration and Air-Conditioning (Fourth Edition), pp. 74–90, (2008).
2. L. J. Yang, X. Z. Du, Y. P. Yang.: Wind effect on the thermo-flow performances and its decay characteristics for air-cooled condensers in a power plant, International Journal of Thermal Sciences, vol.53, pp.175–187, (2012).
3. G. Barigozzi, A. Perdichizzi, S. Ravelli.: Performance prediction and optimization of a waste-to-energy cogeneration plant with combined wet and dry cooling system, Applied Energy, vol.115, pp.65–74, (2014).
4. Hongfang Gu, Haijun Wang, Yuqian Gu, Jianan Yao.: A numerical study on the mechanism and optimization of wind-break structures for indirect air-cooling towers, Energy Conversion and Management, vol.108, pp.43–49, (2016).
5. Lihua Liu, Xiaoze Du, Xinming Xi, Lijun Yang, Yongping Yang.: Experimental analysis of parameter influences on the performances of direct air cooled power generating unit, Energy, vol.56, pp.117–123, (2013).
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