Hybrid Investigation of the Helical Blades of Savonius Wind Turbine in novel patent of lighting base
This study investigates the helical blades of a wind turbine as described in a recent patent for an independent lighting base. At four-time steps, the present work evaluated the displacement parameters, physical stress, and strain on the helical blades of a Savonius wind turbine, such as von mises s...
Main Authors: | , |
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Format: | Article |
Language: | English |
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Elsevier
2022-09-01
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Series: | Results in Engineering |
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Online Access: | http://www.sciencedirect.com/science/article/pii/S2590123022002353 |
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author | Mohammad Mohsen Peiravi Arman Ashabi |
author_facet | Mohammad Mohsen Peiravi Arman Ashabi |
author_sort | Mohammad Mohsen Peiravi |
collection | DOAJ |
description | This study investigates the helical blades of a wind turbine as described in a recent patent for an independent lighting base. At four-time steps, the present work evaluated the displacement parameters, physical stress, and strain on the helical blades of a Savonius wind turbine, such as von mises stress, equivalent strain, first and third principal stress, and strain. Stresses are examined on the material, and this value is compared with the yield stress of the material in the finite element software of Autodesk Inventor Professional. According to the results, maximum and minimum values of von mises stress are 9.5987 MPa at the bottom of the helical blade and 9.9962E-5 MPa in the middle of the helical blade, respectively. Also, maximum and minimum values of equivalent strain are 12.3549E-5 at the bottom of the helical blade and 13.2388E-10 in the middle of the blade, respectively. Finally, maximum and minimum values of total displacement are 1.6792E-2 at time step 2 on top of the blade. Also, the minimum value of displacement is 1.2839E-5 at time step 1 at the bottom of the blade. |
first_indexed | 2024-04-11T12:07:07Z |
format | Article |
id | doaj.art-2c42b36f2a6c4cc69fdc51aafa2e73da |
institution | Directory Open Access Journal |
issn | 2590-1230 |
language | English |
last_indexed | 2024-04-11T12:07:07Z |
publishDate | 2022-09-01 |
publisher | Elsevier |
record_format | Article |
series | Results in Engineering |
spelling | doaj.art-2c42b36f2a6c4cc69fdc51aafa2e73da2022-12-22T04:24:42ZengElsevierResults in Engineering2590-12302022-09-0115100565Hybrid Investigation of the Helical Blades of Savonius Wind Turbine in novel patent of lighting baseMohammad Mohsen Peiravi0Arman Ashabi1Department of Mechanical Engineering, Technical and Vocational University (TVU), Tehran, Iran; Corresponding author.UM Power Energy Dedicated Advanced Centre (UMPEDAC), University of Malaya, Kuala Lumpur, MalaysiaThis study investigates the helical blades of a wind turbine as described in a recent patent for an independent lighting base. At four-time steps, the present work evaluated the displacement parameters, physical stress, and strain on the helical blades of a Savonius wind turbine, such as von mises stress, equivalent strain, first and third principal stress, and strain. Stresses are examined on the material, and this value is compared with the yield stress of the material in the finite element software of Autodesk Inventor Professional. According to the results, maximum and minimum values of von mises stress are 9.5987 MPa at the bottom of the helical blade and 9.9962E-5 MPa in the middle of the helical blade, respectively. Also, maximum and minimum values of equivalent strain are 12.3549E-5 at the bottom of the helical blade and 13.2388E-10 in the middle of the blade, respectively. Finally, maximum and minimum values of total displacement are 1.6792E-2 at time step 2 on top of the blade. Also, the minimum value of displacement is 1.2839E-5 at time step 1 at the bottom of the blade.http://www.sciencedirect.com/science/article/pii/S2590123022002353Displacement fieldFirst principal strainsHelical savoniusPhysical stressThird principal strainsVon mises stress |
spellingShingle | Mohammad Mohsen Peiravi Arman Ashabi Hybrid Investigation of the Helical Blades of Savonius Wind Turbine in novel patent of lighting base Results in Engineering Displacement field First principal strains Helical savonius Physical stress Third principal strains Von mises stress |
title | Hybrid Investigation of the Helical Blades of Savonius Wind Turbine in novel patent of lighting base |
title_full | Hybrid Investigation of the Helical Blades of Savonius Wind Turbine in novel patent of lighting base |
title_fullStr | Hybrid Investigation of the Helical Blades of Savonius Wind Turbine in novel patent of lighting base |
title_full_unstemmed | Hybrid Investigation of the Helical Blades of Savonius Wind Turbine in novel patent of lighting base |
title_short | Hybrid Investigation of the Helical Blades of Savonius Wind Turbine in novel patent of lighting base |
title_sort | hybrid investigation of the helical blades of savonius wind turbine in novel patent of lighting base |
topic | Displacement field First principal strains Helical savonius Physical stress Third principal strains Von mises stress |
url | http://www.sciencedirect.com/science/article/pii/S2590123022002353 |
work_keys_str_mv | AT mohammadmohsenpeiravi hybridinvestigationofthehelicalbladesofsavoniuswindturbineinnovelpatentoflightingbase AT armanashabi hybridinvestigationofthehelicalbladesofsavoniuswindturbineinnovelpatentoflightingbase |