Skip to main content

Research Repository

Advanced Search

Analysis and Optimization on Energy Performance of a Rural House in Northern China Using Passive Retrofitting

Liang, Xinxin; Wang, Yaodong; Zhang, Yongjie; Jiang, Jianyun; Chen, Haisheng; Zhang, Xinjing; Guo, Huan; Roskilly, Tony

Authors

Xinxin Liang

Yongjie Zhang

Jianyun Jiang

Haisheng Chen

Xinjing Zhang

Huan Guo



Abstract

A simulation study to improve energy and indoor environmental performance of a rural house by retrofitting in Beijing of China is presented in this paper. This dwelling was retrofitted using passive energy saving methods and it aims to reduce the annual energy consumption, especially the energy used for household heating demands and to improve the indoor air temperature during the winter. Two main retrofitting methods were used for this case study: insulation was added to the envelope of the house, and the single glazing windows had been replaced by double glazing. The model of this rural house simulated by DesignBuilder software is validated by the actual energy consumption. The validated model is then used to evaluate and predict the future performance of this house. The findings of this study indicate the advantages of retrofitting a rural house by using passive methods: annual energy saving for heating is about 60% and the indoor temperature of the house can be improved dramatically compared to its original status. Moreover, the environmental impacts cause by the heating fuel source has been mitigated. The results showed the potential for rural house retrofitting using passive energy saving methods in northern China.

Citation

Liang, X., Wang, Y., Zhang, Y., Jiang, J., Chen, H., Zhang, X., …Roskilly, T. (2017). Analysis and Optimization on Energy Performance of a Rural House in Northern China Using Passive Retrofitting. . https://doi.org/10.1016/j.egypro.2017.03.618

Conference Name The 8th International Conference on Applied Energy – ICAE2016
Conference Location Beijing, China
Start Date Oct 8, 2016
End Date Oct 11, 2016
Online Publication Date Jun 1, 2017
Publication Date 2017-05
Deposit Date Nov 5, 2019
Publisher Elsevier
Volume 105
Pages 3023-3030
Series Title Energy Procedia
Series ISSN 1876-6102
DOI https://doi.org/10.1016/j.egypro.2017.03.618
Keywords Energy saving; Retrofitting; DesignBuilder; Passive methods; Indoor temperature
Public URL https://durham-repository.worktribe.com/output/1284825