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Sustainability of Transport Infrastructures
This reprint, titled "Sustainability of Transport Infrastructures", presents a curated collection of research articles addressing the critical challenges and innovative solutions shaping sustainable transportation systems. Reflecting the field's multidisciplinary nature, the reprint explores strategies to minimize environmental impacts, optimize resource use, and promote social equity within transport infrastructures.The content of this reprint spans diverse topics, from decarbonizing public transport and resource-efficient vehicle management to adopting sustainable materials such as steel slag, recycled aggregates, and bio-based solutions for road construction. Urban mobility initiatives like bike-sharing systems and permeable pavements are also highlighted, demonstrating practical applications for greener cities.Additionally, this reprint delves into advanced pavement assessment and maintenance methodologies, including life cycle analysis and innovative materials like polymer-modified asphalts, emphasizing their potential to enhance economic and environmental outcomes in the long term.This reprint is essential for researchers, practitioners, and policymakers seeking actionable insights to develop resilient, eco-friendly transportation infrastructure. It aims to inspire innovation and collaboration in achieving global sustainability goals.
Sustainability of Transport Infrastructures
This reprint, titled "Sustainability of Transport Infrastructures", presents a curated collection of research articles addressing the critical challenges and innovative solutions shaping sustainable transportation systems. Reflecting the field's multidisciplinary nature, the reprint explores strategies to minimize environmental impacts, optimize resource use, and promote social equity within transport infrastructures.The content of this reprint spans diverse topics, from decarbonizing public transport and resource-efficient vehicle management to adopting sustainable materials such as steel slag, recycled aggregates, and bio-based solutions for road construction. Urban mobility initiatives like bike-sharing systems and permeable pavements are also highlighted, demonstrating practical applications for greener cities.Additionally, this reprint delves into advanced pavement assessment and maintenance methodologies, including life cycle analysis and innovative materials like polymer-modified asphalts, emphasizing their potential to enhance economic and environmental outcomes in the long term.This reprint is essential for researchers, practitioners, and policymakers seeking actionable insights to develop resilient, eco-friendly transportation infrastructure. It aims to inspire innovation and collaboration in achieving global sustainability goals.
Sustainability of Transport Infrastructures
20.02.2025
Sonstige
Elektronische Ressource
Englisch
e-mobility , electric vehicles , battery electric vehicles , socio-technical transition , future of e-mobility , palm oil clinker , hot mix asphalt , Marshall properties , stone mastic asphalt , waste materials , sustainable pavement , bike-sharing system , bike , sustainable mobility , road traffic engineering , road transport , permeable pavement , bioretention , simulation , rainwater , hydraulic performance , asphalt production , foreground data , LCA , emissions , energy consumption , environmental impacts , life cycle assessment , asphalt pavement , preventive maintenance , sustainable , sensitivity analysis , polymer-modified asphalt , thermal storage stability , relationship between macro performance and micro structures , partial least squares regression , holistic sustainability , road maintenance policies , multicriteria decision making support , macroeconomics , socioeconomic appraisal , public investments , pavement–vehicle interaction , steel slag aggregate , recycled concrete aggregates , waste products , asphalt mixture , sustainable materials , road maintenance , sustainability
Sustainability of Concrete Infrastructures
British Library Online Contents | 2016
|Sustainability of Concrete Infrastructures
Online Contents | 2016
|Sustainability of Concrete Infrastructures
Online Contents | 2016
|Sustainability of Concrete Infrastructures
ASCE | 2016
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