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http://dx.doi.org/10.7855/IJHE.2015.17.2.143

Macro-level Methodology for Estimating Carbon Emissions, Energy Use, and Cost by Road Type and Road Life Cycle  

Hu, Hyejung (Highway & Transportation Research Institute, Korea Institute of Civil Engineering and Building Technology)
Baek, Jongdae (Highway & Transportation Research Institute, Korea Institute of Civil Engineering and Building Technology)
Publication Information
International Journal of Highway Engineering / v.17, no.2, 2015 , pp. 143-150 More about this Journal
Abstract
PURPOSES : The authors set out to estimate the related carbon emissions, energy use, and costs of the national freeways and highways in Korea. To achieve this goal, a macro-level methodology for estimating those amounts by road type, road structure type, and road life cycle was developed. METHODS : The carbon emissions, energy use, and costs associated with roads vary according to the road type, road structure type, and road life cycle. Therefore, in this study, the road type, road structure type, and road life cycle were classified into two or three categories based on criteria determined by the authors. The unit amounts of carbon emissions and energy use per unit road length by classification were estimated using data gathered from actual road samples. The unit amounts of cost per unit road length by classification were acquired from the standard cost values provided in the 2013 road business manual. The total carbon emissions, energy use, and cost of the national freeways and highways were calculated by multiplying the road length by the corresponding unit amounts. RESULTS: The total carbon emissions, energy use, and costs associated with the national freeways and highways in Korea were estimated by applying the estimated unit amounts and the developed method. CONCLUSIONS: The developed method can be employed in the road planning and design stage when decision makers need to consider the impact of road construction from an environmental and economic point of view.
Keywords
carbon emissions; energy use; cost; road life cycle;
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