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The future of mobility in cities: Challenges for urban modelling

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  • Wegener, Michael

Abstract

Urban development in the last two centuries has been driven by an unprecedented growth in mobility made possible by abundant and cheap energy. Yet this trend will not continue forever. Despite technological innovation, finite fossil fuel reserves will in the long run lead to increasing costs of transport. Moreover, to fight global warming many governments have set ambitious greenhouse gas reduction targets, and to achieve them fossil fuels must become more expensive either through market developments or by political intervention. This paper gives an overview about the drivers, feedbacks and constraints of urban mobility and location in a possible future in which transport energy will no longer be abundant and cheap. It asks whether current urban models are able to adequately model the impacts of significantly higher transport costs and demonstrates by an example how it can be done.

Suggested Citation

  • Wegener, Michael, 2013. "The future of mobility in cities: Challenges for urban modelling," Transport Policy, Elsevier, vol. 29(C), pages 275-282.
  • Handle: RePEc:eee:trapol:v:29:y:2013:i:c:p:275-282
    DOI: 10.1016/j.tranpol.2012.07.004
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    References listed on IDEAS

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    1. Michael Wegener, 2011. "From Macro to Micro—How Much Micro is too Much?," Transport Reviews, Taylor & Francis Journals, vol. 31(2), pages 161-177.
    2. D C Simmonds, 1999. "The Design of the Delta Land-Use Modelling Package," Environment and Planning B, , vol. 26(5), pages 665-684, October.
    3. Qing Shen, 2000. "New Telecommunications and Residential Location Flexibility," Environment and Planning A, , vol. 32(8), pages 1445-1463, August.
    4. Hickman, Robin & Banister, David, 2007. "Looking over the horizon: Transport and reduced CO2 emissions in the UK by 2030," Transport Policy, Elsevier, vol. 14(5), pages 377-387, September.
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