Journal article
Wind and Solar Resource Droughts in California Highlight the Benefits of Long-Term Storage and Integration with the Western Interconnect
Environmental science & technology, Vol.55(9), pp.6214-6226
05/04/2021
DOI: 10.1021/acs.est.0c07848
PMID: 33822592
Abstract
As reliance on wind and solar power for electricity generation increases, so does the importance of understanding how variability in these resources affects the feasible, cost-effective ways of supplying energy services. We use hourly weather data over multiple decades and historical electricity demand data to analyze the gaps between wind and solar supply and electricity demand for California (CA) and the Western Interconnect (WECC). We quantify the occurrence of resource droughts when the daily power from each resource was less than half of the 39-year daily mean for that day of the year. Averaged over 39 years, CA experienced 6.6 days of solar and 48 days of wind drought per year, compared to 0.41 and 19 for WECC. Using a macro-scale electricity model, we evaluate the potential for both long-term storage and more geographically diverse generation resources to minimize system costs. For wind-solar-battery electricity systems, meeting California demand with WECC generation resources reduces the cost by 9% compared to constraining resources entirely to California. Adding long-duration storage lowers system costs by 21% when treating California as an island. This data-driven analysis quantifies rare weather-related events and provides an understanding that can be used to inform stakeholders in future electricity systems.
Details
- Title: Subtitle
- Wind and Solar Resource Droughts in California Highlight the Benefits of Long-Term Storage and Integration with the Western Interconnect
- Creators
- Katherine Z. Rinaldi - California Institute of TechnologyJacqueline A. Dowling - California Institute of TechnologyTyler H. Ruggles - Carnegie Institution for ScienceKen Caldeira - Carnegie Institution for ScienceNathan S. Lewis - California Institute of Technology
- Resource Type
- Journal article
- Publication Details
- Environmental science & technology, Vol.55(9), pp.6214-6226
- DOI
- 10.1021/acs.est.0c07848
- PMID
- 33822592
- NLM abbreviation
- Environ Sci Technol
- ISSN
- 0013-936X
- eISSN
- 1520-5851
- Publisher
- Amer Chemical Soc
- Number of pages
- 13
- Grant note
- Caltech from SoCalGas in Low Carbon Energy Science and Policy
- Language
- English
- Date published
- 05/04/2021
- Academic Unit
- Civil and Environmental Engineering
- Record Identifier
- 9985113009402771
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