Udemy - NREL Phase VI Wind Turbine CFD Analysis and Validation

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[ DevCourseWeb.com ] Udemy - NREL Phase VI Wind Turbine CFD Analysis and Validation
  • Get Bonus Downloads Here.url (0.2 KB)
  • ~Get Your Files Here ! 1. Introduction
    • 1. Introduction to course.mp4 (27.8 MB)
    • 1. Introduction to course.srt (5.7 KB)
    • 1.1 Martin O. L. Hansen - Aerodynamics of Wind Turbines (2008, Earthscan).pdf (3.3 MB)
    • 1.2 NREL Phase VI_CFD.pdf (5.5 MB)
    • 1.3 NRELPHASEVI.xlsx (52.0 KB)
    • 1.4 Reneable Energy.pdf (1.6 MB)
    • 2. Brief overview of course.mp4 (45.9 MB)
    • 2. Brief overview of course.srt (5.8 KB)
    • 3. Problem Description.mp4 (133.7 MB)
    • 3. Problem Description.srt (18.6 KB)
    • 4. Data extraction from graph.mp4 (23.6 MB)
    • 4. Data extraction from graph.srt (3.5 KB)
    • s809_Airfoil
      • S809_Airfoil.txt (1.3 KB)
      • S809_practice.txt (1.3 KB)
      • s809.xlsx (18.6 KB)
      2. Geometry modeling of NREL Phase VI turbine in Solidworks
      • 1. S809 airfoil coordinates.mp4 (22.6 MB)
      • 1. S809 airfoil coordinates.srt (3.1 KB)
      • 10. Creating transition and base support for NREL Phase VI wind turbine blade.mp4 (104.7 MB)
      • 10. Creating transition and base support for NREL Phase VI wind turbine blade.srt (12.5 KB)
      • 2. Understating flow angles in wind turbine.mp4 (95.4 MB)
      • 2. Understating flow angles in wind turbine.srt (20.8 KB)
      • 3. Importing S809 coordinates into Solidworks 2020.mp4 (66.6 MB)
      • 3. Importing S809 coordinates into Solidworks 2020.srt (11.4 KB)
      • 4. Creating plan 0 and sketch 0 for making airfoil from coordinates of S809.mp4 (50.4 MB)
      • 4. Creating plan 0 and sketch 0 for making airfoil from coordinates of S809.srt (8.6 KB)
      • 5. Creating point at 30% chord length for defining rotation axis.mp4 (37.6 MB)
      • 5. Creating point at 30% chord length for defining rotation axis.srt (6.2 KB)
      • 6. Creating square trailing edge.mp4 (22.5 MB)
      • 6. Creating square trailing edge.srt (3.9 KB)
      • 7. Creating 21 plans at given radial locations for the blade section.mp4 (56.9 MB)
      • 7. Creating 21 plans at given radial locations for the blade section.srt (6.5 KB)
      • 8. Creating 21 airfoils on 21 plans with given twist angle and chord length.mp4 (58.1 MB)
      • 8. Creating 21 airfoils on 21 plans with given twist angle and chord length.srt (9.3 KB)
      • 9. Creating blade section from 21 section using Loft command in Solidworks.mp4 (40.5 MB)
      • 9. Creating blade section from 21 section using Loft command in Solidworks.srt (5.8 KB)
      • SolidWorks
        • NREL Phase VI_bluentTE_finalmodel.SLDPRT (626.0 KB)
        • NREL Phase VI_bluentTE_step1.SLDPRT (118.3 KB)
        • NREL Phase VI_bluentTE_step2.SLDPRT (146.9 KB)
        • NREL Phase VI_bluentTE_step3.SLDPRT (211.3 KB)
        • NREL Phase VI_bluentTE_step4.SLDPRT (193.2 KB)
        • NREL Phase VI_bluentTE_step5.SLDPRT (189.5 KB)
        • NREL Phase VI_bluentTE_step6.SLDPRT (476.4 KB)
        • NREL Phase VI_bluentTE_step7.SLDPRT (510.3 KB)
        s809_Airfoil
        • S809_Airfoil.txt (1.3 KB)
        • S809_practice.txt (1.3 KB)
        • s809.xlsx (18.6 KB)
        3. Creating inner and outer domain in Spaceclaim for NREL Phase VI wind turbine
        • 1. Importing CAD model of NREL Phase VI turbine into ANSYS Spaceclaim.mp4 (20.8 MB)
        • 1. Importing CAD model of NREL Phase VI turbine into ANSYS Spaceclaim.srt (3.6 KB)
        • 10. Making a symmetric model of full wind turbine.mp4 (25.5 MB)
        • 10. Making a symmetric model of full wind turbine.srt (6.3 KB)
        • 2. Apply 3 deg global pitch angle to NREL Phase VI wind turbine.mp4 (57.9 MB)
        • 2. Apply 3 deg global pitch angle to NREL Phase VI wind turbine.srt (12.1 KB)
        • 3. Creating assembly of full wind turbine including hub.mp4 (85.8 MB)
        • 3. Creating assembly of full wind turbine including hub.srt (15.2 KB)
        • 4. Setting origin on the back side of hub of wind turbine model.mp4 (24.0 MB)
        • 4. Setting origin on the back side of hub of wind turbine model.srt (5.1 KB)
        • 5. Creation of inner domain.mp4 (53.7 MB)
        • 5. Creation of inner domain.srt (8.9 KB)
        • 6. Creation of outer domain.mp4 (85.9 MB)
        • 6. Creation of outer domain.srt (11.7 KB)
        • 7. Named selection for inner and outer domains.mp4 (28.3 MB)
        • 7. Named selection for inner and outer domains.srt (7.0 KB)
        • 8. Changing display properties and colors of geometry in spaceclaim.mp4 (45.6 MB)
        • 8. Changing display properties and colors of geometry in spaceclaim.srt (8.8 KB)
        • 9. Making surfaces from solid body.mp4 (7.2 MB)
        • 9. Making surfaces from solid body.srt (1.7 KB)
        • SpaceClaim files
          • NREL Phase VI_bluentTE_finalmodel_GlobalPitchAngle3deg.scdoc (243.7 KB)
          • NREL Phase VI_bluentTE_finalmodel_GlobalPitchAngle3deg_twobladeshub.scdoc (459.4 KB)
          • NREL Phase VI_inner.scdoc (461.7 KB)
          • NREL Phase VI_outer_Domain1.scdoc (42.0 KB)
          • NREL Phase VI_outer_Domain2.scdoc (40.4 KB)
          • NREL Phase VI_outer_Domain3.scdoc (38.5 KB)
          • inner.scdoc (1.2 MB)
          • outer.scdoc (217.0 KB)
          4. Unstructured meshing of NREL Phase VI wind turbine in ICEMCFD (Inner Domain)
          • 1. Introduction.mp4 (36.7 MB)
          • 1. Introduction.srt (8.1 KB)
          • 10. Defining mesh sizes on other parts.mp4 (31.7 MB)
          • 10. Defining mesh sizes on other parts.srt (3.7 KB)
          • 11. Setting maximum elements size in Global mesh setup.mp4 (13.5 MB)
          • 11. Setting maximum elements size in Global mesh setup.srt (2.1 KB)
          • 12. Part12_Adjusting meshing parameters to get rid of issues in mesh generation.mp4 (88.1 MB)
          • 12. Part12_Adjusting meshing parameters to get rid of issues in mesh generation.srt (13.2 KB)
          • 13. Deleting volume mesh (Octree).mp4 (6.0 MB)
          • 13. Deleting volume mesh (Octree).srt (1.2 KB)
          • 14. Smoothing surface mesh to improve mesh quality.mp4 (9.9 MB)
          • 14. Smoothing surface mesh to improve mesh quality.srt (1.9 KB)
          • 15. Creating volume mesh using Delaunay method.mp4 (37.2 MB)
          • 15. Creating volume mesh using Delaunay method.srt (5.5 KB)
          • 16. Density box for mesh refinement - Introduction to density box creation.mp4 (58.4 MB)
          • 16. Density box for mesh refinement - Introduction to density box creat

Description

NREL Phase VI Wind Turbine CFD Analysis and Validation



https://DevCourseWeb.com

MP4 | Video: h264, 1280x720 | Audio: AAC, 44.1 KHz, 2 Ch
Genre: eLearning | Language: English + srt | Duration: 66 lectures (6h 52m) | Size: 3.35 GB

You will learn to use SolidWorks, Spaceclaim, ICEMCFD and Fluent to make CFD analysis of Horizontal Axis Wind Turbine

What you'll learn
Simulate the NREL Phase VI wind turbine case
Student will be able to simulate any type of wind turbine after attending this course
You will acquire skills in creating CAD model of horizontal axis wind turbine
You should be able to get accurate results for NREL Phase VI using skills taught in this course and also any other wind turbine

Requirements
Good understanding of using ANSYS (ICEMCFD, Spaceclaim, Fluent) and solidworks software. Although we will start from scratch but some basic working knowledge will be highly helpful.
Computer with at least 32 GB RAM and i7 processor with good graphics card.
LED monitor with size of 23 inch or more preferably 29 inch to properly visualize the results.
Basic knowledge of wind turbine theory
Basic knowledge of CFD and application on some simple CFD problems such as Airfoil or flat plate CFD



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Udemy - NREL Phase VI Wind Turbine CFD Analysis and Validation


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3.3 GB
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Udemy - NREL Phase VI Wind Turbine CFD Analysis and Validation


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