DOE OSTI · 3360650
Hydrogen Production System Scaling Using a High-Fidelity Simulation-Optimization Framework
Abstract
Proton exchange membrane (PEM) electrolyzers are widely used for hydrogen production, yet few validated, high-fidelity tools can reliably guide scale-up. Using measured performance from a 50-hour hardware-in-the-loop pilot test, a physics-based, plant-level model of a 1.25 MW PEM electrolyzer and its balance-of-plant (BoP) subsystems is developed and validated. The model couples electrochemistry and thermal/flow submodels and is calibrated against pilot test data via a genetic algorithm (GA) workflow. Validation yields a mean absolute percentage error (APE) of 0.43% for cell voltage and stack power. Two scale-out strategies are then benchmarked under a common 7-day wind-and-photovoltaic (PV) profile: (i) linear duplication of 1.25 MW blocks and (ii) shared-BoP architectures. Sharing BoP between stacks reduces BoP energy by 27% at 10 MW and 34% at 100 MW (vs. linear duplication) and improves system specific energy consumption (SEC) to 52.9 and 52.6 kWh/kg, respectively (from 54.0 kWh/kg with linear duplication). Partial-load studies (25-100% set-point) show that cumulative hydrogen production remains nearly constant down to 50% load because all cases use the same weekly renewable-energy input. Below 50%, the power cap limits how much energy can be used within 168 h, which reduces hydrogen output. The model further indicates that the practical operating optimum lies between 50% and 85% load, where efficiency gains begin to appear without significant loss in hydrogen output. Moreover, the efficiency gains at lower loads are offset by reduced production. The validated framework supports scenario-based engineering trade-off studies for large configurations (10-100 MW) and for operating policies under variable renewables.
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Tran, Son T. [National Laboratory of the Rockies, Golden, CO (United States)], Nagasawa, Kazunori [National Laboratory of the Rockies, Golden, CO (United States)] (ORCID:0000000270162342), Kuroki, Taichi [National Laboratory of the Rockies, Golden, CO (United States)], Medina, Samantha [National Laboratory of the Rockies, Golden, CO (United States)], Sprik, Sam [National Laboratory of the Rockies, Golden, CO (United States)], Westlake, Brittany [Electric Power Research Institute]. 2026-04-10. Hydrogen Production System Scaling Using a High-Fidelity Simulation-Optimization Framework. https://doi.org/10.1016/j.enconman.2026.121416
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