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Sustainable and Liveable Cities and Urban Areas Kick-off Meeting. Integrated evaluation of energy and emission reduction potential and management strategies for urban road systems. Shaopeng Wu wusp@whut.edu.cn. 2019. 05. 20. Project Consortium. Urban road. Urban road. Energy. Economy.
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Sustainable and Liveable Cities and Urban Areas Kick-off Meeting • Integrated evaluation of energy and emission reduction potential and management strategies for urban road systems Shaopeng Wu wusp@whut.edu.cn 2019. 05. 20
Urban road Energy Economy Materials Eutrophication(E) and Landuse(L) Depletion of abiotic resources(AD); Global Warming(GW); Stratospheric ozone depletion(OD); Human Toxicity(HT); Photo-Oxidation Formation(POCP), Acidification(A) Ecotoxicity (Acquatic(AET), Marine (MET); Terrestrial(TE))
Contents • Long Time Series Dynamic Inventory of Road Energy Consumption and Environmental Emissions in Central European Cities; • Life Cycle Analysis of Urban Road Energy and Environmental Emissions; • Evaluation Method of Energy Saving and Emission Reduction Potential and Technical Indicator System of Urban Road; • Energy Conservation and Emission Reduction Management Policies of Urban Road Systems in Central Europe; • Empirical Study on Energy Conservation and Emission Reduction of Urban Road Systems in Central Europe;
Objectives • Review of the available methodologies/studies for the assessment of green asphalt (and other construction materials) technologies; • Analyze the procurement processes including a sustainability assessment; • Broaden and improve the data inventory including information about pavement life time prediction; • Assess the effects of maintenance schedule on emissions; • Assess the validity and usability of the HERMES tool; • Establish the bases for further implementation and cooperation;
Significance • Develop accurate energy and environmental emissions dynamics inventory; • Fill relevant basic data gaps, reduce data uncertainty,accurately measure urban road energy consumption and environmental emissions. • Constructing a full life cycle model of urban road system; • Provide basic assessment methods for improving the environmental efficiency of resources throughout the life cycle and improving environmental standards related to urban roads. • Understand the key influencing factors and evolutionary trends of urban road energy consumption and environmental emissions; • Provide scientific basis for implementing differentiated energy conservation and emission reduction measures and effectively reducing energy consumption and environmental emissions of urban roads according to local conditions. • Exploring the potential and cost of reducing emissions under different policies; • Supporting the optimization of urban road management policies and the development of forward-looking energy and environmental emission standards.