| Name |
Format |
Description |
Link |
|
5 |
An hour-long experiment using the IEA 3.4-MW turbine, subjected to an average wind speed of 5 m/s and Class A wind turbulence, connected to two 1.25-MW electrolyzers with the power supply set to the minimum ramp rate (gain and slew) of 200 A/s. |
https://data.nrel.gov/system/files/305/1765576179-windIEA3.4-5ms-A_2-200.zip |
|
5 |
An hour-long experiment using the IEA 3.4-MW turbine, subjected to an average wind speed of 5 m/s and Class A wind turbulence, connected to two 1.25-MW electrolyzers with the power supply set to the maximum ramp rate (gain and slew) of 400 A/s. |
https://data.nrel.gov/system/files/305/1765576179-windIEA3.4-5ms-A_2-400.zip |
|
5 |
An hour-long experiment using the IEA 3.4-MW turbine, subjected to an average wind speed of 5 m/s and Class C wind turbulence, connected to two 1.25-MW electrolyzers with the power supply set to the minimum ramp rate (gain and slew) of 200 A/s. |
https://data.nrel.gov/system/files/305/1765576179-windIEA3.4-5ms-C_2-200.zip |
|
5 |
An hour-long experiment using the IEA 3.4-MW turbine, subjected to an average wind speed of 5 m/s and Class C wind turbulence, connected to two 1.25-MW electrolyzers with the power supply set to the maximum ramp rate (gain and slew) of 400 A/s. |
https://data.nrel.gov/system/files/305/1765576179-windIEA3.4-5ms-C_2-400.zip |
|
5 |
An hour-long experiment using the IEA 3.4-MW turbine, subjected to an average wind speed of 7 m/s and Class A wind turbulence, connected to a single 1.25-MW electrolyzer with the power supply set to the minimum ramp rate (gain and slew) of 200 A/s. |
https://data.nrel.gov/system/files/305/1765576179-windIEA3.4-7ms-A_1-200.zip |
|
5 |
An hour-long experiment using the IEA 3.4-MW turbine, subjected to an average wind speed of 7 m/s and Class A wind turbulence, connected to a single 1.25-MW electrolyzer with the power supply set to a maximum ramp rate (gain and slew) of 400 A/s. |
https://data.nrel.gov/system/files/305/1765576179-windIEA3.4-7ms-A_1-400.zip |
|
5 |
An hour-long experiment using the IEA 3.4-MW turbine, subjected to an average wind speed of 7 m/s and Class C wind turbulence, connected to a single 1.25-MW electrolyzer with the power supply set to a minimum ramp rate (gain and slew) of 200 A/s. |
https://data.nrel.gov/system/files/305/1765576179-windIEA3.4-7ms-C_1-200.zip |
|
5 |
An hour-long experiment using the IEA 3.4-MW turbine, subjected to an average wind speed of 7 m/s and Class C wind turbulence, connected to a single 1.25-MW electrolyzer with the power supply set to a maximum ramp rate (gain and slew) of 400 A/s. |
https://data.nrel.gov/system/files/305/1765576179-windIEA3.4-7ms-C_1-400.zip |
|
5 |
An hour-long experiment using the IEA 3.4-MW turbine, subjected to an average wind speed of 9 m/s and Class A wind turbulence, connected to a single 1.25-MW electrolyzer with the power supply set to a minimum ramp rate (gain and slew) of 200 A/s. |
https://data.nrel.gov/system/files/305/1765576179-windIEA3.4-9ms-A_1-200.zip |
|
5 |
An hour-long experiment using the IEA 3.4-MW turbine, subjected to an average wind speed of 9 m/s and Class A wind turbulence, connected to a single 1.25-MW electrolyzer with the power supply set to a maximum ramp rate (gain and slew) of 400 A/s. |
https://data.nrel.gov/system/files/305/1765576179-windIEA3.4-9ms-A_1-400.zip |
|
5 |
An hour-long experiment using the IEA 3.4-MW turbine, subjected to an average wind speed of 9 m/s and Class C wind turbulence, connected to a single 1.25-MW electrolyzer with the power supply set to a minimum ramp rate (gain and slew) of 200 A/s. |
https://data.nrel.gov/system/files/305/1765576179-windIEA3.4-9ms-C_1-200.zip |
|
5 |
An hour-long experiment using the IEA 3.4-MW turbine, subjected to an average wind speed of 9 m/s and Class C wind turbulence, connected to a single 1.25-MW electrolyzer with the power supply set to a maximum ramp rate (gain and slew) of 400 A/s. |
https://data.nrel.gov/system/files/305/1765576179-windIEA3.4-9ms-C_1-400.zip |
|
5 |
A five-hour experiment to characterize the 1.25 MW electrolyzer’s steady-state behavior. It used 30-minute load steps and a minimum ramp rate (gain and slew) of 200 A/s. |
https://data.nrel.gov/system/files/305/1765576179-characterization_200.zip |
|
21 |
NLR also built an AI/machine-learning predictive model based on these 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/NREL/ptmelt-hydrogen-electrolysis |
|
0 |
A file combining all simulated wind experiments into one dataset. |
https://data.nrel.gov/system/files/305/1765565264-combined_wind_experiments_0.csv |