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DEMONSTRATION OF AN INTEGRATED, GRID-FLEXIBLE, HYDROGEN BLENDED TURBINE SYSTEM WITH INNOVATIVE POINT SOURCE CARBON CAPTURE. THE RECIPIENT WILL DEVELOP A FRAMEWORK AND METHODOLOGY TO QUANTIFY AND QUALIFY THE VARIOUS ATTRIBUTES OF DIGITAL TWIN IN THE CONTEXT OF A HYDROGEN BLENDED NATURAL GAS TURBINE SYSTEM COMBINED WITH POINT SOURCE CARBON CAPTURE TECHNOLOGY. OBJECTIVES INCLUDE VALIDATED DIGITAL TWIN ARCHITECTURE FOR BLUE HYDROGEN WITH CARBON CAPTURE FROM NATURAL GAS TURBINES, WITH VARIABLE RENEWABLE ENERGY LOADS AS INPUT AND LAB-SCALE DEMONSTRATION OF THE PROPOSED DIGITAL TWIN WHILE ACHIEVING THE TARGET CARBON CAPTURE RATE. THE DEVELOPMENT OF A DIGITAL TWIN FOR THE OPTIMIZED PERFORMANCE, DATA INTEGRITY, AND SECURITY IN HYDROGEN-BLENDED NATURAL GAS TURBINES COUPLED WITH CARBON CAPTURE WILL ENABLE FUTURE POWER GENERATION THAT IS GRID FLEXIBLE. THIS MODULAR APPROACH WILL ENABLE LONG-TERM CLEANER ENERGY SUPPLY UNDER CHANGING POWER RESOURCES AND DEMANDS WHILE ENABLING CONSISTENT SERVICE TO A BROADER RANGE OF COMMUNITIES.

$688,133FY2025Department of EnergyDOE

Baker Hughes Energy Transition Llc

Investigators

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