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Government management and implementation of national real-time energy monitoring system for China large-scale public building

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  • Wei, Na
  • Yong, Wu
  • Yan, Song
  • Zhongcheng, Dong

Abstract

The supervision of energy efficiency in government office buildings and large-scale public buildings (GOBLPB) is the main embodiment for government implementation of Public Administration in the fields of resource saving and environmental protection. It is significant for China government to achieve the target: reducing building energy consumption by 11 million ton standard coal before 2010. In the framework of a national demonstration project concerning the energy management system, Shenzhen Municipality has been selected for the implementation of the system. A data acquisition system and a methodology concerning the energy consumption of the GOBLPB have been developed. This paper summarizes the various features of the system incorporated into identifying the building consumes and energy saving potential. This paper also defines the methods to achieve the real-time monitoring and diagnosis: the meters installed at each building, the data transmitted through internet to a center server, the analysis and unification at the center server and the publication through web. Furthermore, this paper introduces the plans to implement the system and to extend countrywide. Finally, this paper presents some measurements to achieve a common benefit community in implementation of building energy efficiency supervisory system on GOBLPB in its construction, reconstruction or operation stages.

Suggested Citation

  • Wei, Na & Yong, Wu & Yan, Song & Zhongcheng, Dong, 2009. "Government management and implementation of national real-time energy monitoring system for China large-scale public building," Energy Policy, Elsevier, vol. 37(6), pages 2087-2091, June.
  • Handle: RePEc:eee:enepol:v:37:y:2009:i:6:p:2087-2091
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    Citations

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    Cited by:

    1. Eunji Kim & Yoonhee Ha, 2021. "Vitalization Strategies for the Building Energy Management System (BEMS) Industry Ecosystem Based on AHP Analysis," Energies, MDPI, vol. 14(9), pages 1-16, April.
    2. Yuxiang, Karl & Chen, Zhongchang, 2010. "Government expenditure and energy intensity in China," Energy Policy, Elsevier, vol. 38(2), pages 691-694, February.
    3. Cowan, Kelly R. & Daim, Tugrul U., 2011. "Review of technology acquisition and adoption research in the energy sector," Technology in Society, Elsevier, vol. 33(3), pages 183-199.
    4. Yayun Shen & Michael Faure, 0. "Green building in China," International Environmental Agreements: Politics, Law and Economics, Springer, vol. 0, pages 1-17.
    5. Comodi, Gabriele & Cioccolanti, Luca & Polonara, Fabio & Brandoni, Caterina, 2012. "Local authorities in the context of energy and climate policy," Energy Policy, Elsevier, vol. 51(C), pages 737-748.
    6. Yayun Shen & Michael Faure, 2021. "Green building in China," International Environmental Agreements: Politics, Law and Economics, Springer, vol. 21(2), pages 183-199, June.

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