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Sökning: WFRF:(Alfredsson Hampus) > (2021) > Connecting Countrie...

Connecting Countries by Electric Roads: Methodology for Feasibility Analysis of a Transnational ERS Corridor

Jöhrens, Julius (författare)
ifeu Institut für Energie- und Umweltforschung Heidelberg GmbH, Germany
Helms, Hinrich (författare)
ifeu Institut für Energie- und Umweltforschung Heidelberg GmbH, Germany
Lambrecht, Udo (författare)
ifeu Institut für Energie- und Umweltforschung Heidelberg GmbH, Germany
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Spathelf, Felix (författare)
ifeu Institut für Energie- und Umweltforschung Heidelberg GmbH, Germany
Mottschall, Moritz (författare)
Öko-Institut eV, Germany
Hacker, Florian (författare)
Öko-Institut eV, Germany
Jelica, Darijan (författare)
RISE,Mobilitet och system
Alfredsson, Hampus (författare)
RISE,Mobilitet och system
Gustavsson, Martin G. H. (författare)
RISE,Mobilitet och system
Nebauer, Greger (författare)
Intraplan Consult GmbH, Germany
Schubert, Markus (författare)
Intraplan Consult GmbH, Germany
Almestrand Linné, Philip (författare)
VTI Swedish National Road and Transport Research Institute, Sweden
Nordin, Lina (författare)
VTI Swedish National Road and Transport Research Institute, Sweden
Taljegård, Maria (författare)
Chalmers University of Technology, Sweden
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 (creator_code:org_t)
2021
Engelska 70 s.
  • Rapport (övrigt vetenskapligt/konstnärligt)
Abstract Ämnesord
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  • The present study aims at discussing relevant aspects for a potential roll-out of Electric Road Systems (ERS) on transnational corridors, as well as generally for ERS introduction in Europe.Feasibility criteria have thus been developed in order to assess the following topics for specific potential ERS corridor projects:Technical aspects: Which technical prerequisites exist for ERS corridors and to which extent can they expected to be met?Environmental aspects: Which effects can be expected on key environmental indicators?Economic aspects: Can an ERS corridor pose a business case? Could it contribute to the improvement of ERS economy in general?Political aspects: Would an ERS corridor implementation make sense from a political point of view?The developed criteria may serve as a toolbox for scrutinizing future transnational ERS corridor projects. In order to illustrate their application, we used them to analyse a potential roll-out of an Electric Road System on a selected highway corridor (424 km) connecting Sweden and Germany, but mainly located on Danish territory. Based on traffic flows and patterns along the corridor route, it was found:A considerable part of the total truck mileage on the corridor is done by vehicles with a rather limited driving distance for pre- and post-haul, assuming the corridor is realized as a stand-alone project, andthe CO2 emissions (well-to-wheel) of truck traffic along the corridor route can be significantly reduced if electric trucks are powered by the national electricity mixes expected for the year 2030, and even more if it would be powered purely renewable.Although a continuous ERS on the complete corridor route would not be economically feasible under current conditions, the analysis pinpoints sections along the route where the traffic volumes with a sufficient share of operation on a potential ERS are significantly higher. These sections are located in the metropolitan areas of Malmö, Copenhagen and Hamburg. For implementation, peculiarities of the local markets and regulation should be considered, as well as country-specific priorities on decarbonizing road freight transport. Additionally, the identified ERS potential for medium distances will depend on the technical and cost development of battery trucks.Our analysis also sheds some light on the role of first transnational corridors within a European roll-out strategy for ERS. Such corridor projects could help toproof the principal strengths of ERS,trigger strategic coordination between the participating countries,foster national ERS roll-out due to synergy effects with the corridor andpave the way for integration of ERS into EU legislation (e.g. AFID, TEN-T planning)

Ämnesord

TEKNIK OCH TEKNOLOGIER  -- Samhällsbyggnadsteknik -- Transportteknik och logistik (hsv//swe)
ENGINEERING AND TECHNOLOGY  -- Civil Engineering -- Transport Systems and Logistics (hsv//eng)

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