[1]
D.D. Zhu, D. Yan, Z. Li. Modeling and applications of annual energy-using simulation module of separated heat pipe heat exchanger[J]. Energy and Buildings, 57 (2013), pp.26-33.
DOI: 10.1016/j.enbuild.2012.11.003
Google Scholar
[2]
Y.F. Zhang, Y. Chen. Study on energy efficient envelope design for telecommunication base station in Guangzhou[J]. Energy and Buildings, 40 (2008), p.1895-(1900).
DOI: 10.1016/j.enbuild.2008.04.006
Google Scholar
[3]
R. Tu, Z. Li, X.H. Liu. Performance optimization of envelope and air conditioning system in telecommunication base station[J]. HV&AC, 2011, 41(12), pp.46-49.
Google Scholar
[4]
Y. Chen, Yufeng Zhang. Study of ventilation cooling technology for telecommunication base stations: Control strategy and application strategy[J]. Energy and Buildings, 50 (2012), pp.212-218.
DOI: 10.1016/j.enbuild.2012.03.040
Google Scholar
[5]
S.W. Wang, C.C. Yang, X. Fu. Quantitative energy performance assessment methods for existing buildings[J]. Energy and Buildings, 55 (2012), pp.873-888.
DOI: 10.1016/j.enbuild.2012.08.037
Google Scholar
[6]
R. Tu, X.H. Liu. Energy performance analysis on telecommunication base station[J]. Energy and Buildings, 43 (2011), pp.315-325.
DOI: 10.1016/j.enbuild.2010.09.019
Google Scholar
[7]
G.L. Chen. Analysis of Base Station Energy Consumption System Model and Energy Saving Practice[J]. Designing Techniques of Posts and Telecommunications, 2012, pp.22-27. (in Chinese).
Google Scholar
[8]
Gunther Auer, Oliver Blume, Vito Giannini. Energy efficiency analysis of the reference systems, areas of improvements and target breakdown[R]. EARTH PROJECT. D2. 3, pp.31-38.
Google Scholar
[9]
GB/T2588-200. The general principles for calculation of thermal efficiency of equipment[S].
Google Scholar
[10]
GB 50176 - 93. Thermal design code for civil building[S].
Google Scholar