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DOE OSTI · 2229735

Modeling Wind-Hydrogen System and Analyzing Curtailment

Abstract

Low-cost green hydrogen can be achieved by integrating utility-scale wind farms to an electrolyzer. The power produced by a wind farm depends on spatial and temporal changes in the wind, and this variability can affect the electrolyzer's performance. This study examines the trade-offs between two electrolyzer configurations: a large centralized electrolyzer connected to the wind farm versus several smaller distributed electrolyzers connected directly to each wind turbine. The results show that a centralized configuration generates more hydrogen because turbines that are waked and produce less power are compensated but other un-waked turbines.

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BibTeXRIS

Riccobono, Nick, Bay, Christopher (ORCID:0000000226585559), Grant, Elenya, Irmas, Cameron, Starke, Genevieve, Thomas, Jared (ORCID:0000000166682276), Tully, Zachary. 2023-12-06. Modeling Wind-Hydrogen System and Analyzing Curtailment. https://www.osti.gov/biblio/2229735

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Offshore Wind to Hydrogen - Modeling, Analysis, Testing and International Collaboration Work

This project explores electrolytic hydrogen production from an offshore wind turbine by: Modeling: Simulate an offshore wind turbine and generate power output profiles; Analysis: Analyze offshore conditions and determine operational modes of the stack; Testing: Perform hardware testing to evaluate dynamic characteristics; and International Collaboration Work: Share learnings and publish. Potential Outcomes: Accelerate development of an integrated, in-turbine offshore wind hydrogen system; and Support two DOE Energy Earthshots - Hydrogen and Floating Offshore Wind.

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