Highway Tunnel Ventilation Technology Energy-Saving Assessment Based on Matter-Element Model

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Abstract:

In recent years, with the rapid increase of tunnel percentage in Midwestern highway construction, the tunnel operation cost rise quickly. In the cost, energy consumption of tunnel ventilation and illumination occupies a great proportion. In order to realize energy-saving and emission-reduction, there have been some new ventilation technology, for instance, the improved ventilation device, the improved ventilation method, and some new ventilation control technology. However after some new technology was applied, the phenomenon of energy-saving but not money-saving appeared. For the scientific and objective evaluation of highway tunnel ventilation technology energy-saving effect, construct evaluation index system from the three dimensions of technology usability, economy, and application effect, and then evaluate the energy-saving effect based on matter-element model. The result of assessment will give decision support for the later selection of highway tunnel ventilation technology proposal.

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Periodical:

Advanced Materials Research (Volumes 779-780)

Pages:

611-614

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Online since:

September 2013

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© 2013 Trans Tech Publications Ltd. All Rights Reserved

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[1] Yang Chao and Wang Zhiwei. Current Status and Development Trend of Ventilation Technology for Highway Tunnel: Chinese Journal of Underground Space and Engineering, Vol. 7-4 (2011), pp.819-824.

Google Scholar

[2] Li Guangping, Li Zhiyuan, and Xing Weiwei. Research on Highway Tunnel Ventilation Energy-saving Technology: Chinese Journal of Highway, 2011(9), pp.265-267.

Google Scholar

[3] Huang Qi, Fei Fan, Xu Feng, Sun Jintao and Liu Huixiong. Assessment Research on the Stablility of Rock-mass Slopes Based on Matter-element Model: Chinese Journal of Underground Space and Engineering, Vol. 8-2 (2012), pp.439-444.

Google Scholar

[4] Wang Yuzhou, Chen Bin, and Huang Qing. Risk Evaluation on Project of Logistics Park Construction Based on Matter-element Model: Proceedings of International Conference on Transportation Engineering 2009, pp.3344-3349.

DOI: 10.1061/41039(345)551

Google Scholar

[5] Tang Zhaozhi, Wang Mingnian, Yu Li, and Chao Feng. Study on the Energy-saving Technology for Frequency Varied Ventilation in the Hong Kong –Zuhai-Macao Bridge's Tunnel Project: Chinese Journal of Underground Space and Engineering, Vol. 8-S1 (2012).

Google Scholar