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Estimating Future Costs for Infrastructure in the Proposed Canadian Northern Corridor at Risk From Climate Change

Author

Listed:
  • Nathan S. Debortoli

    (ESSA Technologies)

  • Tristan D. Pearce

    (University of Northern British Columbia)

  • James D. Ford

    (University of Leeds)

Abstract

This paper reviews current climate change projections for northern Canada and considers what these mean for infrastructure development in the proposed Canadian Northern Corridor (CNC). We focus on chokepoints along the corridor’s notional route and estimate future costs of infrastructure along the chokepoints. We draw upon climate change projections at the end of the century (2100) using information from several climate variables sourced on the CMIP6 and CMIP5 reports. Climate variables include means and extreme values for temperature, precipitation, wind and their indirect impacts on physical features: permafrost, freezing rain and wildfires. In terms of infrastructure costs, we investigate investment costs and the useful life of nine sectors within transportation, energy and buildings infrastructures. The findings of our analysis show that mean temperatures within the CNC area could increase by 10.9oC, and precipitation by 45 per cent by 2100. Climate change could create chokepoints along the CNC route, affecting key areas essential for transportation flow. Central regions of the corridor are projected to have a higher probability of receiving concomitant impacts on several chokepoints, including combined threats from the increasing frequency of wildfires, freezing rain and permafrost thaw. Adding a climatic layer to investment costs within CNC chokepoints can increase infrastructure costs by more than 101 per cent. Transportation engineering infrastructure, electric power infrastructure and the institutional buildings sectors are most likely to be impacted. Just considering a climate layer to current infrastructure increases costs by more than $12 billion for several hazards such as freezing precipitation (especially Alberta and BC), $7 billion for wildfires (especially BC) and more than $400 million for permafrost (especially Alberta and BC). Infrastructure built along the CNC route will need to be designed to remain functional under different climatic conditions that predominate today. Chokepoints will dictate how buildings and transportation infrastructure should be planned.

Suggested Citation

  • Nathan S. Debortoli & Tristan D. Pearce & James D. Ford, 2023. "Estimating Future Costs for Infrastructure in the Proposed Canadian Northern Corridor at Risk From Climate Change," SPP Research Papers, The School of Public Policy, University of Calgary, vol. 16(6), March.
  • Handle: RePEc:clh:resear:v:16:y:2023:i:6
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    References listed on IDEAS

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    1. Jean-Paul Rodrigue, 2021. "Constraints in the Canadian Transport Infrastructure Grid," SPP Research Papers, The School of Public Policy, University of Calgary, vol. 14(6), February.
    2. Nathan S. Debortoli & Dylan G. Clark & James D. Ford & Jesse S. Sayles & Emilia P. Diaconescu, 2019. "An integrative climate change vulnerability index for Arctic aviation and marine transportation," Nature Communications, Nature, vol. 10(1), pages 1-15, December.
    3. Yukari Hori & Vincent Y. S. Cheng & William A. Gough & Jerry Y. Jien & Leonard J. S. Tsuji, 2018. "Implications of projected climate change on winter road systems in Ontario’s Far North, Canada," Climatic Change, Springer, vol. 148(1), pages 109-122, May.
    4. Daniel Fortier & Michel Allard & Yuri Shur, 2007. "Observation of rapid drainage system development by thermal erosion of ice wedges on Bylot Island, Canadian Arctic Archipelago," Permafrost and Periglacial Processes, John Wiley & Sons, vol. 18(3), pages 229-243, July.
    5. Steven D. Mamet & Kwok P. Chun & Geoffrey G. L. Kershaw & Michael M. Loranty & G. Peter Kershaw, 2017. "Recent Increases in Permafrost Thaw Rates and Areal Loss of Palsas in the Western Northwest Territories, Canada," Permafrost and Periglacial Processes, John Wiley & Sons, vol. 28(4), pages 619-633, October.
    6. Fant, Charles & Boehlert, Brent & Strzepek, Kenneth & Larsen, Peter & White, Alisa & Gulati, Sahil & Li, Yue & Martinich, Jeremy, 2020. "Climate change impacts and costs to U.S. electricity transmission and distribution infrastructure," Energy, Elsevier, vol. 195(C).
    7. James E. Neumann & Paul Chinowsky & Jacob Helman & Margaret Black & Charles Fant & Kenneth Strzepek & Jeremy Martinich, 2021. "Climate effects on US infrastructure: the economics of adaptation for rail, roads, and coastal development," Climatic Change, Springer, vol. 167(3), pages 1-23, August.
    8. Hajizadeh, Mohammad & Hu, Min & Bombay, Amy & Asada, Yukiko, 2018. "Socioeconomic inequalities in health among Indigenous peoples living off-reserve in Canada: Trends and determinants," Health Policy, Elsevier, vol. 122(8), pages 854-865.
    9. J. D. Ford & D. Clark & T. Pearce & L. Berrang-Ford & L. Copland & J. Dawson & M. New & S. L Harper, 2019. "Changing access to ice, land and water in Arctic communities," Nature Climate Change, Nature, vol. 9(4), pages 335-339, April.
    10. William Perrie & Zhenxia Long & Hayley Hung & Amanda Cole & Alexandra Steffen & Ashu Dastoor & Dorothy Durnford & Jianmin Ma & Jan Bottenheim & Stoyka Netcheva & Ralf Staebler & James Drummond & N. O’, 2012. "Selected topics in arctic atmosphere and climate," Climatic Change, Springer, vol. 115(1), pages 35-58, November.
    11. Wang, Chi-hsiang & Leicester, Robert H. & Nguyen, Minh, 2008. "Probabilistic procedure for design of untreated timber poles in-ground under attack of decay fungi," Reliability Engineering and System Safety, Elsevier, vol. 93(3), pages 476-481.
    12. David Fawcett & Tristan Pearce & James D. Ford, 2020. "Climate Change and Implications for the Proposed Canadian Northern Corridor," SPP Research Papers, The School of Public Policy, University of Calgary, vol. 13(26), November.
    13. Costas Armenakis & N. Nirupama, 2014. "Urban impacts of ice storms: Toronto December 2013," Natural Hazards: Journal of the International Society for the Prevention and Mitigation of Natural Hazards, Springer;International Society for the Prevention and Mitigation of Natural Hazards, vol. 74(2), pages 1291-1298, November.
    14. Andrei Sulzenko & G. Kent Fellows, 2016. "Planning for Infrastructure to Realize Canada's Potential: The Corridor Concept," SPP Research Papers, The School of Public Policy, University of Calgary, vol. 9(22), May.
    15. Jan Hjort & Olli Karjalainen & Juha Aalto & Sebastian Westermann & Vladimir E. Romanovsky & Frederick E. Nelson & Bernd Etzelmüller & Miska Luoto, 2018. "Degrading permafrost puts Arctic infrastructure at risk by mid-century," Nature Communications, Nature, vol. 9(1), pages 1-9, December.
    16. Brisbois, Ben & Hoogeveen, Dawn & Allison, Sandra & Cole, Donald & Fyfe, Trina M. & Harder, Henry G. & Parkes, Margot W., 2021. "Storylines of research on resource extraction and health in Canada: A modified metanarrative synthesis," Social Science & Medicine, Elsevier, vol. 277(C).
    17. Chi-hsiang Wang & Xiaoming Wang, 2012. "Vulnerability of timber in ground contact to fungal decay under climate change," Climatic Change, Springer, vol. 115(3), pages 777-794, December.
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