JT

Jennifer Tuey

Director Of Research Development at Storworks Power

Jennifer Tuey is a seasoned professional with extensive experience in research and development, project management, and engineering within the energy sector. Currently serving as the Director of Research Development at Storworks Power since September 2023, Jennifer held the position of Director of R&D, Project Management at Carbon America from February 2022 to September 2023, following a role as Energy Storage Program Manager from January 2020 to December 2020. Prior experience includes a significant tenure as Principal Mechanical Engineer at Bright Energy Storage Technologies from July 2013 to January 2020, and earlier engineering positions at General Atomics, Westinghouse Electric Company, and GE Consumer and Industrial. Jennifer's engineering expertise encompasses nuclear systems, energy storage, and prototype development, supported by a Bachelor of Science degree in Mechanical Engineering from Case Western Reserve University.

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Louisville, United States

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Storworks Power

Storworks Power is developing thermal energy storage solutions to enable deep integration of renewable energy in the power and industrial sectors. We deliver reliable long-duration energy storage at the lowest cost by using proprietary high-temperature modular concrete blocks. The energy landscape is rapidly changing. Renewable energy is growing exponentially, requiring flexible assets to fill in when solar and wind energy production drops, and store excess energy when there is a surplus of renewable generation. Legacy fossil assets are being retired due to uneconomic operating costs and high emissions. Industrial customers are seeking ways to decarbonize their heat and steam supply and decrease emissions. Storworks provides energy storage by storing heat in concrete blocks, charging when excess energy is available and discharging to provide energy when needed. The system can be heated by electricity, steam, or waste heat recovery, and can provide heat, steam, or electricity when paired with a conventional steam turbine.


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