Long-duration energy storage in transmission-constrained variable renewable energy systems

Summary: We assess the role of multi-day to seasonal long-duration energy storage (LDES) in a transmission-constrained system that lacks clean firm generation buildout. In this system, unless LDES is extremely inexpensive, short-duration energy storage (SDES) delivers 6–10× more electricity and has...

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Main Authors: Andrew K. Chu, Ejeong Baik, Sally M. Benson
Format: Article
Language:English
Published: Elsevier 2025-01-01
Series:Cell Reports Sustainability
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Online Access:http://www.sciencedirect.com/science/article/pii/S2949790624004464
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author Andrew K. Chu
Ejeong Baik
Sally M. Benson
author_facet Andrew K. Chu
Ejeong Baik
Sally M. Benson
author_sort Andrew K. Chu
collection DOAJ
description Summary: We assess the role of multi-day to seasonal long-duration energy storage (LDES) in a transmission-constrained system that lacks clean firm generation buildout. In this system, unless LDES is extremely inexpensive, short-duration energy storage (SDES) delivers 6–10× more electricity and has a consistently lower levelized cost. LDES substitutes for the role of a dispatchable firm resource. Next, we introduce the concept of a substitution ratio, which quantifies the interchangeability of different generation and storage resources. We show that in this system, 1 MW of LDES has the same system value as 14–19 MW of solar or wind with SDES, emphasizing that LDES is difficult to replace as a dispatchable baseload resource. Unlike other valuation metrics such as levelized cost, substitution ratios can quantify the system-level value of many different resources. Science for society: If emissions-free power from controllable sources such as nuclear energy or fossil fuels with carbon capture and storage is not accessible, long-duration energy storage (LDES) is essential for decarbonizing the electricity grid, as it helps balance supply and demand of electricity over extended periods when solar and wind power are unavailable. Our modeling shows that when LDES is affordable, it can reliably provide steady power, filling a role that is difficult for solar, wind, and other storage technologies to replace. Importantly, our study shows that short-duration energy storage (SDES) from batteries is also very valuable for the grid and that decarbonization is most cost effective when a portfolio of multiple generation and storage options is available. This research offers guidance for policy-makers and industry leaders to accelerate and lower the costs of grid decarbonization.
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spelling doaj-art-ff0c92c1ee6d425f8cb6c9c22de3ab8e2025-01-26T05:05:28ZengElsevierCell Reports Sustainability2949-79062025-01-0121100285Long-duration energy storage in transmission-constrained variable renewable energy systemsAndrew K. Chu0Ejeong Baik1Sally M. Benson2Stanford University, Department of Energy Science and Engineering, Doerr School of Sustainability, Stanford, CA 94305, USA; Corresponding authorStanford University, Department of Energy Science and Engineering, Doerr School of Sustainability, Stanford, CA 94305, USAStanford University, Department of Energy Science and Engineering, Doerr School of Sustainability, Stanford, CA 94305, USASummary: We assess the role of multi-day to seasonal long-duration energy storage (LDES) in a transmission-constrained system that lacks clean firm generation buildout. In this system, unless LDES is extremely inexpensive, short-duration energy storage (SDES) delivers 6–10× more electricity and has a consistently lower levelized cost. LDES substitutes for the role of a dispatchable firm resource. Next, we introduce the concept of a substitution ratio, which quantifies the interchangeability of different generation and storage resources. We show that in this system, 1 MW of LDES has the same system value as 14–19 MW of solar or wind with SDES, emphasizing that LDES is difficult to replace as a dispatchable baseload resource. Unlike other valuation metrics such as levelized cost, substitution ratios can quantify the system-level value of many different resources. Science for society: If emissions-free power from controllable sources such as nuclear energy or fossil fuels with carbon capture and storage is not accessible, long-duration energy storage (LDES) is essential for decarbonizing the electricity grid, as it helps balance supply and demand of electricity over extended periods when solar and wind power are unavailable. Our modeling shows that when LDES is affordable, it can reliably provide steady power, filling a role that is difficult for solar, wind, and other storage technologies to replace. Importantly, our study shows that short-duration energy storage (SDES) from batteries is also very valuable for the grid and that decarbonization is most cost effective when a portfolio of multiple generation and storage options is available. This research offers guidance for policy-makers and industry leaders to accelerate and lower the costs of grid decarbonization.http://www.sciencedirect.com/science/article/pii/S2949790624004464long-duration energy storageshort-duration energy storagemacro-energy systems modelingsubstitution ratiodecarbonized power systems
spellingShingle Andrew K. Chu
Ejeong Baik
Sally M. Benson
Long-duration energy storage in transmission-constrained variable renewable energy systems
Cell Reports Sustainability
long-duration energy storage
short-duration energy storage
macro-energy systems modeling
substitution ratio
decarbonized power systems
title Long-duration energy storage in transmission-constrained variable renewable energy systems
title_full Long-duration energy storage in transmission-constrained variable renewable energy systems
title_fullStr Long-duration energy storage in transmission-constrained variable renewable energy systems
title_full_unstemmed Long-duration energy storage in transmission-constrained variable renewable energy systems
title_short Long-duration energy storage in transmission-constrained variable renewable energy systems
title_sort long duration energy storage in transmission constrained variable renewable energy systems
topic long-duration energy storage
short-duration energy storage
macro-energy systems modeling
substitution ratio
decarbonized power systems
url http://www.sciencedirect.com/science/article/pii/S2949790624004464
work_keys_str_mv AT andrewkchu longdurationenergystorageintransmissionconstrainedvariablerenewableenergysystems
AT ejeongbaik longdurationenergystorageintransmissionconstrainedvariablerenewableenergysystems
AT sallymbenson longdurationenergystorageintransmissionconstrainedvariablerenewableenergysystems