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Integrated North American energy markets under different futures of cross-border energy infrastructure

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  • Siddiqui, Sauleh
  • Vaillancourt, Kathleen
  • Bahn, Olivier
  • Victor, Nadejda
  • Nichols, Christopher
  • Avraam, Charalampos
  • Brown, Maxwell

Abstract

We study how changes in cross-border energy infrastructure in North America will impact local and national markets. Electricity and natural gas are all transported across the borders of Canada, US, and Mexico. However, future changes in the energy production mix will lead to the further development of these infrastructures, as energy supply and demand cause stress across borders. We use a multimodel approach to investigate what happens to standard output metrics of local energy markets when these infrastructures are changed under different scenarios. These scenarios include increasing the capacity of electricity transmission by 20% and decreasing the cost of transporting natural gas by 20% vis-à-vis the modelers’ reference case starting 2020. We find that electricity transmission across the Canadian-US border increases, with most of the increase in electricity production by natural gas. We also find that natural gas trade increases across the US-Mexico border, with a change in flows of natural gas within the US moving away from the northeast and northwest. While electricity production from renewable energy is expected to increase in the reference scenario, the changes in cross-border energy infrastructure do not significantly impact the generation from renewable energy. The scenarios help identify bottlenecks in the cross-border energy infrastructure, and propose future investment opportunities to decrease overall system costs for producing and consuming energy.

Suggested Citation

  • Siddiqui, Sauleh & Vaillancourt, Kathleen & Bahn, Olivier & Victor, Nadejda & Nichols, Christopher & Avraam, Charalampos & Brown, Maxwell, 2020. "Integrated North American energy markets under different futures of cross-border energy infrastructure," Energy Policy, Elsevier, vol. 144(C).
  • Handle: RePEc:eee:enepol:v:144:y:2020:i:c:s0301421520303888
    DOI: 10.1016/j.enpol.2020.111658
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    References listed on IDEAS

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    Cited by:

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    2. Chengshuang Sun & Shijie Li & Qianmai Luo & Jinyu Zhao & Zhenqiang Qi, 2023. "Research on the Efficiency of Urban Infrastructure Investment under the Constraint of Carbon Emissions, Taking Provincial Capitals in China as an Example," Sustainability, MDPI, vol. 15(12), pages 1-21, June.
    3. Yuan, Mei & Tapia-Ahumada, Karen & Reilly, John, 2021. "The role of cross-border electricity trade in transition to a low-carbon economy in the Northeastern U.S," Energy Policy, Elsevier, vol. 154(C).
    4. Yang, Zhenbing & Shi, Qingquan & Lv, Xiangqiu & Shi, Qi, 2022. "Heterogeneous low-carbon targets and energy structure optimization: Does stricter carbon regulation really matter?," Structural Change and Economic Dynamics, Elsevier, vol. 60(C), pages 329-343.
    5. Halil Burak Sakal, 2021. "Turkey’s energy trade relations with Europe: The role of institutions and energy market," Energy & Environment, , vol. 32(7), pages 1243-1274, November.
    6. Stringer, Thomas & Joanis, Marcelin, 2022. "Assessing energy transition costs: Sub-national challenges in Canada," Energy Policy, Elsevier, vol. 164(C).
    7. Lyu, Yanwei & Wu, You & Zhang, Jinning, 2023. "How industrial structure distortion affects energy poverty? Evidence from China," Energy, Elsevier, vol. 278(C).
    8. Arriet, Andrea & Matis, Timothy I. & Feijoo, Felipe, 2023. "Water taxation strategies for the natural gas sector in North America: Facing a rising water crisis," Energy, Elsevier, vol. 279(C).

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