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Everett MESA 1b Project - SNOPUD

Technology Type Lithium-ion Battery
Rated Power 1000 kW
Duration at Rated Power (HH:MM) 0:15.00 / 0.50
URL More about Everett MESA 1b Project - SNOPUD
Snohomish County Public Utility District (SNOPUD) and 1Energy Systems will partner to develop and deploy an innovative approach to energy storage, aimed at helping electric utilities increase their use of renewable energy and improve overall reliability. The MESA-1 installation will be the first energy storage system built on the Modular Energy Storage Architecture (MESA), an innovative approach to energy storage based on open, non-proprietary industry standards. Two battery systems will be installed for the system: MESA 1b will utilize a Parker Hannifin Power Conversion System and an LG Chem Ltd. 1 MW (500kWh) Li-Ion battery. Alstom Grid and faculty from the University of Washington will join the project to collaborate on research, analysis and design of technology interfaces. 1Energy will lead the selection of future MESA partners who will provide batteries, power conversion and balance-of-system components.
This data has been validated by project staff through a review of publicly available information about the project, and verified by the project owner. Information is accurate as of 2016-04-29.
Project Status
Status Operational
Commissioning On DD.11.YYYY
Project Includes Multiple Systems No
Siting
Location

910 Shuksan Way
Everett, Washington 98203
United States

ISO/RTO N/A
Utility Snohomish County Public Utility District
Utility Type Public Owned
Paired Grid Resource Primary Distribution
Project Includes Multiple Systems No
Ownership & Value Chain Partners
Ownership Model Utility-Owned
Equity Owner 1 Snohomish County Public Utility District No. 1
Equity Owner 1 Percent 100%
Energy Storage Technology Provider LG Chem Ltd.
Power Electronics Provider Parker Hannifin Corporation
Integrator Company 1Energy Services, LLC
O&M Contractor Snohomish County Public Utility District No. 1
Developer Snohomish County Public Utility District No. 1
Cost & Performance
Projected Project Lifetime 10 years
Performance N/A
Benefits
Service Use Case Electric Energy Time Shift
Load Following (Tertiary Balancing)
Renewables Capacity Firming
Voltage Support
Research Partner
Research Institution University of Washington
Research Description Research the economical and electrical system benefits of wide scale deployment of energy storage throughout the District's service territory.
Research Institution URL http://www.ee.washington.edu/people/faculty/kirschen/
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