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Surface Meteorological Station ESRL Short Tower, Bonneville Reviewed Data
**Overview**
A diversity of instruments are used to measure various quantities related to meteorology and precipitation near the Earth’s surface. Typically, a standard suite of instruments is deployed to monitor meteorological state variables.
**Data Quality**
An additional c...
Wilczak, J. Wind Energy Technologies Office (WETO)
Dec 07, 2015
1 Resources
0 Stars
Publicly accessible
1 Resources
0 Stars
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UAE6 Wind Tunnel Tests Data UAE6 Sequence 4 Raw Data
**Overview**
Sequence 4: Static Pressure Calibration (P)
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 0° to 30° were achieved. The blade tip pitch was 3°.
The rotor rotated at 72 RPM. B...
Fingersh, L. Wind Energy Technologies Office (WETO)
Nov 28, 2018
1 Resources
0 Stars
Publicly accessible
1 Resources
0 Stars
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UAE6 Wind Tunnel Tests Data UAE6 Sequence 6 Raw Data
**Overview**
Sequence 6: Shroud Wake Measure (P)
This test sequence used a downwind, rigid turbine with a 3.4° cone angle. The wind speeds for
this sequence corresponded to subcritical [7 m/s], transitional [15 m/s], and supercritical [20 m/s]
Reynolds number regimes for the ci...
Fingersh, L. Wind Energy Technologies Office (WETO)
Nov 28, 2018
1 Resources
0 Stars
Publicly accessible
1 Resources
0 Stars
Publicly accessible
wfip2.model/retro.hrrr.01.fcst.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)
Feb 09, 2016
1 Resources
0 Stars
Publicly accessible
1 Resources
0 Stars
Publicly accessible
wfip2.model/retro.hrrr.01.fcst.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)
Feb 09, 2016
1 Resources
0 Stars
Publicly accessible
1 Resources
0 Stars
Publicly accessible
wfip2.model/retro.hrrr.02.fcst.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)
Feb 09, 2016
1 Resources
0 Stars
Publicly accessible
1 Resources
0 Stars
Publicly accessible
wfip2.model/retro.hrrr.02.fcst.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)
Feb 09, 2016
1 Resources
0 Stars
Publicly accessible
1 Resources
0 Stars
Publicly accessible
wfip2.model/retro.rap.01.fcst.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)
Feb 09, 2016
1 Resources
0 Stars
Publicly accessible
1 Resources
0 Stars
Publicly accessible
wfip2.model/retro.rap.02.fcst.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)
Feb 09, 2016
1 Resources
0 Stars
Publicly accessible
1 Resources
0 Stars
Publicly accessible
Radar Brady, TX Raw Data
**Overview**
Raw data captured from the NOAA ESRL website:
https://www.esrl.noaa.gov/psd/data/obs/data/
Hourly Radar Winds (WwWind) and Temperature (WwTemp)
Burk, K. Wind Energy Technologies Office (WETO)
Jul 14, 2011
1 Resources
0 Stars
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1 Resources
0 Stars
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Radar Lubbock, TX Raw Data
**Overview**
Raw data captured from the NOAA ESRL website:
https://www.esrl.noaa.gov/psd/data/obs/data/
Hourly Radar Winds (WwWind) and Temperature (WwTemp)
Burk, K. Wind Energy Technologies Office (WETO)
Mar 19, 2012
1 Resources
0 Stars
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1 Resources
0 Stars
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Radar 449MHz Buffalo, SD Raw Data
**Overview**
Raw data captured from the NOAA ESRL website:
https://www.esrl.noaa.gov/psd/data/obs/data/
Hourly Radar Winds (WwWind) and Temperature (WwTemp)
Burk, K. Wind Energy Technologies Office (WETO)
Jun 29, 2011
1 Resources
0 Stars
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1 Resources
0 Stars
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Radar 449MHz Valley City, ND Raw Data
**Overview**
Raw data captured from the NOAA ESRL website:
https://www.esrl.noaa.gov/psd/data/obs/data/
Hourly Radar Winds (WwWind) and Temperature (WwTemp)
Burk, K. Wind Energy Technologies Office (WETO)
Jun 15, 2011
1 Resources
0 Stars
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1 Resources
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Radar 915MHz Ainsworth, NE Raw Data
**Overview**
Raw data captured from the NOAA ESRL website:
https://www.esrl.noaa.gov/psd/data/obs/data/
Hourly Radar Winds (WwWind) and Temperature (WwTemp)
Burk, K. Wind Energy Technologies Office (WETO)
Jun 01, 2011
1 Resources
0 Stars
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1 Resources
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Radar 915MHz De Smet, SD Raw Data
**Overview**
Raw data captured from the NOAA ESRL website:
https://www.esrl.noaa.gov/psd/data/obs/data/
Hourly Radar Winds (WwWind) and Temperature (WwTemp)
Burk, K. Wind Energy Technologies Office (WETO)
Jun 20, 2011
1 Resources
0 Stars
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1 Resources
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Radar 915MHz Leeds, ND Raw Data
**Overview**
Raw data captured from the NOAA ESRL website:
https://www.esrl.noaa.gov/psd/data/obs/data/
Hourly Radar Winds (WwWind) and Temperature (WwTemp)
Burk, K. Wind Energy Technologies Office (WETO)
Jun 15, 2011
1 Resources
0 Stars
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1 Resources
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Radar 915MHz Mobridge, SD Raw Data
**Overview**
Raw data captured from the NOAA ESRL website:
https://www.esrl.noaa.gov/psd/data/obs/data/
Hourly Radar Winds (WwWind) and Temperature (WwTemp)
Burk, K. Wind Energy Technologies Office (WETO)
Jun 14, 2011
1 Resources
0 Stars
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1 Resources
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Radar 915MHz Saint James, MN Raw Data
**Overview**
Raw data captured from the NOAA ESRL website:
https://www.esrl.noaa.gov/psd/data/obs/data/
Hourly Radar Winds (WwWind) and Temperature (WwTemp)
Burk, K. Wind Energy Technologies Office (WETO)
Jun 22, 2011
1 Resources
0 Stars
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1 Resources
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Radar 915MHz Souix City, IA Raw Data
**Overview**
Raw data captured from the NOAA ESRL website:
https://www.esrl.noaa.gov/psd/data/obs/data/
Hourly Radar Winds (WwWind) and Temperature (WwTemp)
Burk, K. Wind Energy Technologies Office (WETO)
Dec 08, 2011
1 Resources
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1 Resources
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Radar 915MHz Watford City, ND Raw Data
**Overview**
Raw data captured from the NOAA ESRL website:
https://www.esrl.noaa.gov/psd/data/obs/data/
Hourly Radar Winds (WwWind) and Temperature (WwTemp)
Burk, K. Wind Energy Technologies Office (WETO)
Jun 29, 2011
1 Resources
0 Stars
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1 Resources
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Radar Colorado City, TX Raw Data
**Overview**
Raw data captured from the NOAA ESRL website:
https://www.esrl.noaa.gov/psd/data/obs/data/
Hourly Radar Winds (WwWind) and Temperature (WwTemp)
Burk, K. Wind Energy Technologies Office (WETO)
Oct 19, 2011
1 Resources
0 Stars
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1 Resources
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UAE6 Wind Tunnel Tests Data UAE6 Sequence X Raw Data
**Overview**
Sequence X: Elevated RPM (F)
This test sequence used an upwind, rigid turbine with a 0° cone angle. The wind speed ranged
from 5 m/s to 12 m/s, and yaw angles of ±30° were obtained. The blade pitch angle was 3°. The
rotor rotated at 90 RPM. Blade pressure measur...
Fingersh, L. Wind Energy Technologies Office (WETO)
Nov 29, 2018
1 Resources
0 Stars
Publicly accessible
1 Resources
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NWTC WindCube Nacelle Lidar pre-campaign / Raw Data
**Overview**
Test data from the National Wind Technology Center (NWTC) for the WindCube Nacelle Lidar. Includes both real-time and 10-min average data.
Scholbrock, A. and Zalkind, D. Wind Energy Technologies Office (WETO)
Feb 01, 2022
1 Resources
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1 Resources
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Analysis of a fixed-bottom cylinder in a wave basin
**Overview**
The Offshore Code Comparison, Collaboration, Continued, with Correlation (OC5) is an international research project run under the International Energy Agency (IEA) Wind Task 30. The project is focused on validating the tools used design offshore wind systems. OC5 con...
Robertson, A. Wind Energy Technologies Office (WETO)
Jul 22, 2019
1 Resources
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1 Resources
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Analysis of a suspended cylinder in a wave basin
**Overview**
The Offshore Code Comparison, Collaboration, Continued, with Correlation (OC5) is an international research project run under the International Energy Agency (IEA) Wind Task 30. The project is focused on validating the tools used design offshore wind systems. OC5 con...
Robertson, A. Wind Energy Technologies Office (WETO)
Jul 22, 2019
1 Resources
0 Stars
Publicly accessible
1 Resources
0 Stars
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