| Name |
Format |
Description |
Link |
|
0 |
An hour-long electrolyzer experiment using the historical wind data generated by NLR's 1.5MW General Electric wind turbine, scaled to 65% to match the 1.25MW electrolyzer capacity, with the power supply set to a minimum ramp rate (gain and slew) of 200A/s. |
https://data.nlr.gov/system/files/316/1774288597-wind-GE1.5MW_0.65-200.zip |
|
5 |
An hour-long electrolyzer experiment using the historical wind data generated by NLR's 1.5WM General Electric wind turbine, scaled to 65% to match the 1.25MW electrolyzer capacity, with the power supply set to the maximum ramp rate (gain and slew) of 400A/s. |
https://data.nlr.gov/system/files/316/1774288597-wind-GE1.5MW_0.65-400.zip |
|
5 |
A five-hour long experiment to characterize the 1.25MW electrolyzer's steady-state behavior. It used 30-minute load steps with the power supply set to a minimum ramp rate (gain and slew) of 200A/s. |
https://data.nlr.gov/system/files/316/1774288597-characterization_200_0.zip |
|
21 |
NLR also built an AI/machine learning predictive model based on other available electrolyzer experimental datasets. The model ingests the electrolyzer current command in amperes, as well as various pressures and temperatures across the system, and predicts hydrogen output in kilograms per hour. |
https://huggingface.co/NatLabRockies/ptmelt-hydrogen-electrolysis |
|
0 |
A file combining both historical wind electrolyzer experiments into one dataset. |
https://data.nlr.gov/system/files/316/1774293076-combined_historical_wind_experiments.csv |
|
0 |
This presentation describes the statistical analysis methods used on NLR's historical wind data over a five-year period (2020-2025) from a single 1.5MW turbine manufactured by General Electric located at NLR’s Flatirons Campus. The outcome of the analysis was an experimental hour-long wind profile that was deployed on the 1.25MW PEM electrolyzer |
https://data.nlr.gov/system/files/316/1774293076-Public%20Reference%20Data%20for%20Megawatt-Scale%20Hydrogen%20Electrolysis%20.pdf |