DOE OSTI · 3409389
Deployment Pathways for Long Duration Energy Storage
Abstract
We apply a least-cost generation expansion model of the continental United States to assess how optimal investments in long-duration energy storage (LDES) technologies are impacted by changes in system generation portfolios and technology costs, assessing 369 capacity expansion scenarios in total. The expansion model considers 8,760 h of chronological operations for the entire target year, 2040. We find that low-cost LDES technologies can reduce generation investments and system costs. Specifically, once the costs for 24- and 100-h storage reach $38/kWh and $14/kWh, respectively, substantial deployments are observed. The distribution of storage investments across durations is strongly influenced by the system generation portfolio. We also demonstrate that a high-fidelity temporal representation is required to capture the value of LDES in generation expansion. Finally, we conduct a regression analysis of our capacity expansion results and find that LDES deployments are positively correlated with the combined wind and solar capacity share and negatively correlated with peaking and baseload shares.
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Levin, Todd, Mann, W. Neal, Kwon, Jonghwan, Zhou, Zhi, Cheng, Bo, Botterud, Audun. 2026-07-17. Deployment Pathways for Long Duration Energy Storage. https://doi.org/10.1016/j.isci.2026.116019
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