11 to 20 of 362 Results
Nov 22, 2024 -
Data for: Transforming Laser-Scanned 750 kW Turbine Surface Geometry Data into Smooth CAD for CFD Simulations
Bzip Archive - 685.9 KB -
MD5: 1585a54c41c5e059211c5f95511cdd0c
Airfoil tables [lift, drag and moment coefficients]; blade properties [radius, chord, twist, BlCrvAC, BlSwpA and thickness to chord ratio] and airfoil coordinates; for the 193 cross-sectional segments of blade 022 of the southern wind turbine at the WINSENT test site. |
Nov 22, 2024 -
Data for: Transforming Laser-Scanned 750 kW Turbine Surface Geometry Data into Smooth CAD for CFD Simulations
WebM Video - 12.1 MB -
MD5: 768f2c2a7e829f57f8caa391802cc69b
video of the lift, drag and moment coefficient plots from segment 0 to 192 of blade 025 and computed using 2D RANS CFD |
Nov 22, 2024 -
Data for: Transforming Laser-Scanned 750 kW Turbine Surface Geometry Data into Smooth CAD for CFD Simulations
Bzip Archive - 692.8 KB -
MD5: 348fc1abad9364098e4679658cd601a9
Airfoil tables [lift, drag and moment coefficients]; blade properties [radius, chord, twist, BlCrvAC, BlSwpA and thickness to chord ratio] and airfoil coordinates; for the 193 cross-sectional segments of blade 025 of the southern wind turbine at the WINSENT test site. |
Nov 22, 2024 -
Data for: Transforming Laser-Scanned 750 kW Turbine Surface Geometry Data into Smooth CAD for CFD Simulations
Adobe PDF - 601.7 KB -
MD5: db765ef5f2bb4eedc6453747d1c885a0
This document describes the method used to obtain the airfoil tables (polars) for lift, drag, and moment using 2D RANS CFD on 193 segments for each of the 3 blades. |
Sep 13, 2024 -
Data for: Transforming Laser-Scanned 750 kW Turbine Surface Geometry Data into Smooth CAD for CFD Simulations
model/iges - 10.4 KB -
MD5: 292e1c96d3e6287c3b9980d3c2eed118
WINSENT Wind turbine geometry, approximate, but close to reality: Laser-scan generated CAD iges file of the wind turbine tower, version_2 (small dimension corrections). The tower is rotated away from the z-axis by 3.46° along the y-axis to account for the rotor shaft angle, aligning with the blade located at the bottommost position. The blade's spa... |
Sep 13, 2024 -
Data for: A systematic DNS approach to isolate wall-curvature effects in spatially developing boundary layers
Markdown Text - 15.4 KB -
MD5: 0a646d59e0cb1895148dacb0df569bc2
README in markdown format with HDF5 file contents description |
Sep 13, 2024 -
Data for: A systematic DNS approach to isolate wall-curvature effects in spatially developing boundary layers
Adobe PDF - 115.2 KB -
MD5: cf6ead15a7f60e36624bb4cb7b49f8c1
Markdown readme.md exported as .pdf |
Jul 19, 2024 -
Data for: A systematic DNS approach to isolate wall-curvature effects in spatially developing boundary layers
Python Source Code - 3.8 KB -
MD5: 8ef2f3dd7a9abc9258bcdfa999619efa
Example script for how to access data in python using h5py API |
Jul 19, 2024 -
Data for: A systematic DNS approach to isolate wall-curvature effects in spatially developing boundary layers
Hierarchical Data Format - 501.3 MB -
MD5: 2ee6197cfe88567d6b69c047d2578789
HDF5 data file for case PG-C |
Jul 19, 2024 -
Data for: A systematic DNS approach to isolate wall-curvature effects in spatially developing boundary layers
Unknown - 16.3 KB -
MD5: 17f641ad6d3bb9c2052ec4376130899d
ParaView XML companion file for ztmd_pgc.h5 |