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The value of long-duration energy storage under various grid conditions in a zero-emissions future

Engineering and Technology

The value of long-duration energy storage under various grid conditions in a zero-emissions future

M. Staadecker, J. Szinai, et al.

This study, conducted by Martin Staadecker, Julia Szinai, Pedro A. Sánchez-Pérez, Sarah Kurtz, and Patricia Hidalgo-Gonzalez, reveals significant insights into the role of long-duration energy storage (LDES) in zero-emission electricity grids. With findings highlighting its value in specific generation mixes and the potential for drastic electricity price reductions during peak demand, this research is a game changer for grid planners.

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~3 min • Beginner • English
Abstract
Long-duration energy storage (LDES) is a key resource in enabling zero-emissions electricity grids but its role within different types of grids is not well understood. Using the Switch capacity expansion model, we model a zero-emissions Western Interconnect with high geographical resolution to understand the value of LDES under 39 scenarios with different generation mixes, transmission expansion, storage costs, and storage mandates. We find that a) LDES is particularly valuable in majority wind-powered regions and regions with diminishing hydropower generation, b) seasonal operation of storage becomes cost-effective if storage capital costs fall below US$5 kWh−1, and c) mandating the installation of enough LDES to enable year-long storage cycles would reduce electricity prices during times of high demand by over 70%. Given the asset and resource diversity of the Western Interconnect, our results can provide grid planners in many regions with guidance on how LDES impacts and is impacted by energy storage mandates, investments in LDES research and development, and generation mix and transmission expansion decisions.
Publisher
Nature Communications
Published On
Nov 03, 2024
Authors
Martin Staadecker, Julia Szinai, Pedro A. Sánchez-Pérez, Sarah Kurtz, Patricia Hidalgo-Gonzalez
Tags
long-duration energy storage
zero-emissions
electricity grids
cost-effectiveness
peak demand
wind power
hydropower
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