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Climate change and its influence on water systems increases the cost of electricity system decarbonization

  • Julia K. Szinai
  • , David Yates
  • , Pedro A. Sánchez-Pérez
  • , Martin Staadecker
  • , Daniel M. Kammen
  • , Andrew D. Jones
  • , Patricia Hidalgo-Gonzalez
    • Lawrence Berkeley National Laboratory
    • National Center for Atmospheric Research
    • National Renewable Energy Laboratory
    • University of Toronto
    • University of California at San Diego
    • University of California at Berkeley

    Research output: Contribution to journalArticlepeer-review

    17 Scopus citations

    Abstract

    The electric sector simultaneously faces two challenges: decarbonization to mitigate, and adaptation to manage, the impacts of climate change. In many regions, these challenges are compounded by an interdependence of electricity and water systems, with water needed for hydropower generation and electricity for water provision. Here, we couple detailed water and electricity system models to evaluate how the Western Interconnection grid can both adapt to climate change and develop carbon-free generation by 2050, while accounting for interactions and climate vulnerabilities of the water sector. We find that by 2050, due to climate change, annual regional electricity use could grow by up to 2% from cooling and water-related electricity demand, while total annual hydropower generation could decrease by up to 23%. To adapt, we show that the region may need to build up to 139 GW of additional generating capacity between 2030 and 2050, equivalent to nearly thrice California’s peak demand, and could incur up to $150 billion (+7%) in extra costs.

    Original languageEnglish
    Article number10050
    JournalNature Communications
    Volume15
    Issue number1
    DOIs
    StatePublished - Dec 2024

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