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By Liquan Xie, Dianjian Huang

Advanced Engineering and Technology comprises one hundred ten technical papers from the 2014 Annual Congress on complex Engineering and know-how (CAET 2014, Hong Kong, 19-20 April 2014, together with the 4th Workshop on utilized Mechanics and Civil Engineering, AMCE 2014). The contributions specialise in complex theories and applied sciences on the topic of development engineering, geotechnical engineering, highway and bridge engineering, hydraulic engineering, environmental engineering, pollutants and keep an eye on, water assets and water remedy, mechanics in engineering, water and soil conservation, numerical software program and purposes, weather switch and environmental dynamics, clever security platforms, chemistry, biochemical and foodstuff engineering, and modelling and information research.

Advanced Engineering and Technology might be beneficial to teachers and pros concerned with civil engineering, hydraulic engineering, environmental engineering, modelling & info research, chemistry and biochemical engineering, and different similar fields.

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Guideline for Post-earthquake Damage Evaluation and Rehabilitation of RC Building in Japan. 13th World Conference on Earthquake Engineering. Vancouver, Canada:124–139. T. M. 2003. Assessing safety of buildings on post-earthquake field quantitatively. Earthquake Engineering and Engineering Vibration, 23(5):209–213. T. H. et al. 2009. A quantitative method for safety assessment of buildings in post-earthquake field. Journal of Harbin Institute of Technology, 41(2):129–132. M. 2003. Intelligence Aided System For Safety Assessment Of Buildings On Sit.

Hawkes, A. , & Leach, M. A. 2007. Cost-effective operating strategy for residential micro-combined heat and power. Energy 32: 711–723. Hottel, H. , & Whillier, A. 1955. Evaluation of flat-plate solar collector performance, Trans. Conf. Use of Solar Energy 3. Jalalzadeh-Azar, A. A. 2004. A Comparison of Electrical- and Thermal-Load-Following CHP Systems. ASHRAE Transactions 110: 85–94. Kalogirou, S. , & Tripanagnostopoulos, Y. 2006. Hybrid PV/T solar systems for domestic hot water and electricity production.

From the previous research, one is reported that PV/T system save 25% of energy in following thermal load. On the other hand, CO2 emissions reduce the amount compared with following electric load. That is, economic efficiency and eco friendliness of PV/T system depend on following operation strategy when designed. Therefore, this section is calculation of electric and thermal load required LD-IDECOAS pilot system. Then energy saving rate and the CO2 emissions reduction effect are quantitatively estimated when the PV/T system is applied instead of LD-IDECOAS pilot system.

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