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Buoy California Wind Sentinel (130), Morro Bay Processed Data
**Overview**
The purpose of the dataset is to provide preliminary filtered, averaged buoy data and standardize the data format of various data streams from the buoy into NetCDF. The attached Lidar Buoy Data Dictionary provides further details on the various instruments mounted o...
Krishnamurthy, R. Wind Energy Technologies Office (WETO)
Jan 04, 1980
1 Resources
0 Stars
Publicly accessible
1 Resources
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Sodar PNNL Scintec MFAS, Oregon Raceway Park Raw Data
**Overview**
Provide measurements of wind speed and direction up to 400 m AGL (max). The data are stored in 2 forms: ASCII and raw (binary). ASCII files contain averaged data (currently 15 min time step and 10 m range gate); raw files could be reprocessed with the sodar software...
Pekour, M. and Berg, L. Wind Energy Technologies Office (WETO)
Oct 07, 2015
1 Resources
0 Stars
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1 Resources
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NWTC Lidar (3) Pre-campaign /RTD Data
**Overview**
This is a pre-campaign instrument deployment. With it, we aim to upload data and test and verify the ingest pipeline.
Debnath, M. Wind Energy Technologies Office (WETO)
Feb 07, 2022
1 Resources
0 Stars
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1 Resources
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NWTC LIDAR pre-campaign / Raw Data
**Overview**
This is a pre-campaign instrument deployment. With it we aim to upload data and test/verify the ingest pipeline.
Burk, K. Wind Energy Technologies Office (WETO)
Sep 29, 2021
1 Resources
0 Stars
Publicly accessible
1 Resources
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Lidar HilFlowS LLNL ZephIR300 MOP Processed Data
**Overview**
The ZephIR300 is a continuous wave LIDAR with a range of 10 m to 300 m. During HilFlowS the ZephIR300 was programmed to measure from 10 m to 150 m. In addition, the ZephIR300 provided a measurement at 1 m height using an onboard meteorological sensor. The ZephIR300 ...
Wharton, S. and , . Wind Energy Technologies Office (WETO)
Jul 07, 2019
1 Resources
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1 Resources
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Lidar HilFlowS LLNL ZephIR300 WOP Processed Data
**Overview**
The ZephIR300 is a continuous wave LIDAR with a range of 10 m to 300 m. During HilFlowS the ZephIR300 was programmed to measure from 10 m to 150 m. In addition, the ZephIR300 provided a measurement at 1 m height using an onboard meteorological sensor. The ZephIR300 ...
Wharton, S. and , . Wind Energy Technologies Office (WETO)
Jul 07, 2019
1 Resources
0 Stars
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1 Resources
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Lidar LLNL WindCube V2, Vansycle Ridge BPA Tower Reviewed Data
**Overview**
Data submission for WFIP2 at Vansycle Ridge (Oregon).
Vertical-profiling lidar data from a Wind Cube v2, included 10-minute averages of wind speed and wind direction up to 200 m. Data collected during WFIP2.
**Data Details**
Z-wind has the following notation:
neg...
Wharton, S. Wind Energy Technologies Office (WETO)
Mar 08, 2016
1 Resources
0 Stars
Publicly accessible
1 Resources
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Buoy California Wind Sentinel (120), Humboldt Raw Data
**Overview**
Deployment off the coast of Humboldt, California
**Data Details**
Buoy Data Files name like:
buoy.z05.00.20200929.000000.currents.csv
buoy.z05.00.20200929.000000.gill.csv
buoy.z05.00.20200929.000000.gps.csv
buoy.z05.00.20200929.000000.pressure.csv
bu...
Gorton, A. Wind Energy Technologies Office (WETO)
Oct 01, 2020
1 Resources
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1 Resources
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Buoy California Wind Sentinel (130), Morro Bay Raw Data
**Overview**
Deployment off the coast of Morro Bay, California
**Data Details**
Buoy Data Files name like:
buoy.z06.00.20200929.000000.currents.csv
buoy.z06.00.20200929.000000.gill.csv
buoy.z06.00.20200929.000000.gps.csv
buoy.z06.00.20200929.000000.pressure.csv
b...
Gorton, A. Wind Energy Technologies Office (WETO)
Sep 28, 2020
1 Resources
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1 Resources
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Lidar California Leosphere Windcube 866 (120), Humboldt Raw Data
**Overview**
Deployment off the coast of Humboldt, California
**Data Details**
Windcube Data Files:
lidar.z05.00.20200929.000000.gyro.7z
lidar.z05.00.20200929.000000.rtd.7z
lidar.z05.00.20200929.000000.sta.7z
lidar.z05.00.20200929.000000.stdrtd.7z
lidar.z05.00.20...
Gorton, A. Wind Energy Technologies Office (WETO)
Oct 01, 2020
1 Resources
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1 Resources
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Surface Meteorological Station ANL 10m tower, Goldendale Raw Data
**Overview**
Basic meteorological measurements.
**Data Quality**
The Argonne National Laboratory Surface Meteorology Systems (MET) measurements collected at collocated radar wind profiler sites are visually inspected weekly for data outliers or instrument problems. Of note, the...
Cook, D. Wind Energy Technologies Office (WETO)
Mar 28, 2016
1 Resources
0 Stars
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1 Resources
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Surface Meteorological Station ANL 10m tower, Goldendale Reviewed Data
**Overview**
Basic meteorological measurements.
**Data Quality**
The Argonne National Laboratory Surface Meteorology Systems (MET) measurements collected at collocated radar wind profiler sites are visually inspected weekly for data outliers or instrument problems. Of note, the...
Cook, D. Wind Energy Technologies Office (WETO)
Mar 30, 2016
1 Resources
0 Stars
Publicly accessible
1 Resources
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Surface Meteorological Station ANL 10m tower, Walla Walla Raw Data
**Overview**
Basic meteorological measurements.
**Data Quality**
The Argonne National Laboratory Surface Meteorology Systems (MET) measurements collected at collocated radar wind profiler sites are visually inspected weekly for data outliers or instrument problems. Of note, the...
Cook, D. Wind Energy Technologies Office (WETO)
Mar 28, 2016
1 Resources
0 Stars
Publicly accessible
1 Resources
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Publicly accessible
Surface Meteorological Station ANL 10m tower, Walla Walla Reviewed Data
**Overview**
Basic meteorological measurements.
**Data Quality**
The Argonne National Laboratory Surface Meteorology Systems (MET) measurements collected at collocated radar wind profiler sites are visually inspected weekly for data outliers or instrument problems. Of note, the...
Cook, D. Wind Energy Technologies Office (WETO)
Mar 30, 2016
1 Resources
0 Stars
Publicly accessible
1 Resources
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Surface Meteorological Station ANL 10m tower, Yakima Raw Data
**Overview**
Basic meteorological measurements.
**Data Quality**
The Argonne National Laboratory Surface Meteorology Systems (MET) measurements collected at collocated radar wind profiler sites are visually inspected weekly for data outliers or instrument problems. Of note, the...
Cook, D. Wind Energy Technologies Office (WETO)
Mar 28, 2016
1 Resources
0 Stars
Publicly accessible
1 Resources
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Publicly accessible
Surface Meteorological Station ANL 10m tower, Yakima Reviewed Data
**Overview**
Basic meteorological measurements.
**Data Quality**
The Argonne National Laboratory Surface Meteorology Systems (MET) measurements collected at collocated radar wind profiler sites are visually inspected weekly for data outliers or instrument problems. Of note, the...
Cook, D. Wind Energy Technologies Office (WETO)
Mar 30, 2016
1 Resources
0 Stars
Publicly accessible
1 Resources
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Lidar CU WindCube V1 Profiler, Troutdale Reviewed Data
**Overview**
These profiling lidar datasets collect profiles of wind speed and wind direction from nominally 40 m above the surface to 220 m above the surface, depending on visibility.
**Data Quality**
Only data points with CNR 22 dB are included in these 2-min averaged files.
Lundquist, J. Wind Energy Technologies Office (WETO)
Nov 19, 2015
1 Resources
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1 Resources
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Lidar CU WindCube V1 Profiler, Wasco Airport Reviewed Data
**Overview**
These profiling lidar datasets collect profiles of wind speed and wind direction from nominally 40 m above the surface to 220 m above the surface, depending on visibility.
**Data Quality**
Only data points with CNR 22 dB are included in these 2-min averaged files.
Lundquist, J. Wind Energy Technologies Office (WETO)
Feb 22, 2016
1 Resources
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1 Resources
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Lidar CU WindCube V2 Profiler, Gordons Ridge Reviewed Data
**Overview**
These profiling lidar datasets collect profiles of wind speed and wind direction from nominally 40 m above the surface to 220 m above the surface, depending on visibility.
**Data Quality**
Only data points with CNR 22 dB are included in these 2-min averaged files.
Lundquist, J. Wind Energy Technologies Office (WETO)
Nov 15, 2015
1 Resources
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1 Resources
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UAE6 Wind Tunnel Tests Data UAE6 Sequence B Raw Data
**Overview**
Sequences B, C, and D: Downwind Baseline (F), Downwind Low Pitch (F),
Downwind High Pitch (F)
This test sequence used a downwind, teetered turbine with a 3.4° cone angle. The wind speed
ranged from 5 m/s to 25 m/s. Yaw angles of ±180° were achieved at low wind sp...
Fingersh, L. Wind Energy Technologies Office (WETO)
Nov 14, 2018
1 Resources
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1 Resources
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UAE6 Wind Tunnel Tests Data UAE6 Sequence C Raw Data
**Overview**
Sequences B, C, and D: Downwind Baseline (F), Downwind Low Pitch (F),
Downwind High Pitch (F)
This test sequence used a downwind, teetered turbine with a 3.4° cone angle. The wind speed
ranged from 5 m/s to 25 m/s. Yaw angles of ±180° were achieved at low wind sp...
Fingersh, L. Wind Energy Technologies Office (WETO)
Nov 14, 2018
1 Resources
0 Stars
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1 Resources
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UAE6 Wind Tunnel Tests Data UAE6 Sequence D Raw Data
**Overview**
Sequences B, C, and D: Downwind Baseline (F), Downwind Low Pitch (F),
Downwind High Pitch (F)
This test sequence used a downwind, teetered turbine with a 3.4° cone angle. The wind speed
ranged from 5 m/s to 25 m/s. Yaw angles of ±180° were achieved at low wind sp...
Fingersh, L. Wind Energy Technologies Office (WETO)
Nov 14, 2018
1 Resources
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1 Resources
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wfip2.model/realtime.hrrr_esrl.graphics.01
**Overview**
The primary purpose of WFIP2 Model Development Team is to improve existing numerical weather prediction models in a manner that leads to improved wind forecasts in regions of complex terrain. Improvements in the models will come through better understanding of the ph...
Macduff, M. Wind Energy Technologies Office (WETO)
Dec 14, 2015
1 Resources
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1 Resources
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wfip2.model/realtime.hrrr_esrl.icbc.01
**Overview**
The primary purpose of WFIP2 Model Development Team is to improve existing numerical weather prediction models in a manner that leads to improved wind forecasts in regions of complex terrain. Improvements in the models will come through better understanding of the ph...
Macduff, M. Wind Energy Technologies Office (WETO)
Dec 01, 2015
1 Resources
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1 Resources
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wfip2.model/realtime.hrrr_wfip2.graphics.02
**Overview**
The primary purpose of WFIP2 Model Development Team is to improve existing numerical weather prediction models in a manner that leads to improved wind forecasts in regions of complex terrain. Improvements in the models will come through better understanding of the ph...
Macduff, M. Wind Energy Technologies Office (WETO)
Dec 16, 2015
1 Resources
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1 Resources
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