Numerical investigation on the damage of whirling engine blades subjected to bird strike impact
This research renders a numerical investigation of whirling engine blades subjected to bird strike impact. The numerical modelling of the bird strike investigation was conducted employing SPH. The bird model was established as a gelatine material and is the geometry of the bird was anticipated. As m...
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The Aeronautical and Astronautical Society of the Republic of China
2021
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my.iium.irep.883192021-07-23T02:08:16Z http://irep.iium.edu.my/88319/ Numerical investigation on the damage of whirling engine blades subjected to bird strike impact Shahimi, Sharis-Shazzali Abdullah, Nur Azam Hrairi, Meftah Ahmad, Meor iqram Meor TJ163.13 Power resources TJ170 Mechanics applied to machinery. Dynamics TJ181 Mechanical movements TJ241 Machine construction (General) TJ266 Turbines. Turbomachines (General) TJ751 Miscellaneous motors and engines. Including gas, gasoline, diesel TL500 Aeronautics This research renders a numerical investigation of whirling engine blades subjected to bird strike impact. The numerical modelling of the bird strike investigation was conducted employing SPH. The bird model was established as a gelatine material and is the geometry of the bird was anticipated. As most bird strikes transpire during take-off and landing, the bird was modelled with a set velocity of 120m/s and is impacted on the engine blades, where the damage of the blades is then assessed. The engine blades were modelled as a tetrahedron mesh for accuracy in LS-DYNA software and are rotating at 200 rad/s counter-clockwise. The engine blade material is modelled with Johnson-Cook failure constants. The results are manifested as effective stresses, which shows the structural damage of the engine blades struck by the bird, which induces deflection that significantly damages the blades. Further assessments of bird velocity and engine blade rotation variations are also presented. The Aeronautical and Astronautical Society of the Republic of China 2021-01-13 Article PeerReviewed application/pdf en http://irep.iium.edu.my/88319/7/88319_Numerical%20Investigation%20on%20the%20Damage%20of%20Whirling.pdf application/pdf en http://irep.iium.edu.my/88319/13/88319_Numerical%20Investigation%20on%20the%20Damage_Scopus.pdf Shahimi, Sharis-Shazzali and Abdullah, Nur Azam and Hrairi, Meftah and Ahmad, Meor iqram Meor (2021) Numerical investigation on the damage of whirling engine blades subjected to bird strike impact. Journal of Aeronautics, Astronautics and Aviation, 53 (2). pp. 193-199. ISSN 1990-7710 https://www.airitilibrary.com/Publication/alDetailedMesh?DocID=P20140627004-202106-202102080001-202102080001-193-199 10.6125/JoAAA.202106_53(2).11 |
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TJ163.13 Power resources TJ170 Mechanics applied to machinery. Dynamics TJ181 Mechanical movements TJ241 Machine construction (General) TJ266 Turbines. Turbomachines (General) TJ751 Miscellaneous motors and engines. Including gas, gasoline, diesel TL500 Aeronautics |
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TJ163.13 Power resources TJ170 Mechanics applied to machinery. Dynamics TJ181 Mechanical movements TJ241 Machine construction (General) TJ266 Turbines. Turbomachines (General) TJ751 Miscellaneous motors and engines. Including gas, gasoline, diesel TL500 Aeronautics Shahimi, Sharis-Shazzali Abdullah, Nur Azam Hrairi, Meftah Ahmad, Meor iqram Meor Numerical investigation on the damage of whirling engine blades subjected to bird strike impact |
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This research renders a numerical investigation of whirling engine blades subjected to bird strike impact. The numerical modelling of the bird strike investigation was conducted employing SPH. The bird model was established as a gelatine material and is the geometry of the bird was anticipated. As most bird strikes transpire during take-off and landing, the bird was modelled with a set velocity of 120m/s and is impacted on the engine blades, where the damage of the blades is then assessed. The engine blades were modelled as a tetrahedron mesh for accuracy in LS-DYNA software and are rotating at 200 rad/s counter-clockwise. The engine blade material is modelled with Johnson-Cook failure constants. The results are manifested as effective stresses, which shows the structural damage of the engine blades struck by the bird, which induces deflection that significantly damages the blades. Further assessments of bird velocity and engine blade rotation variations are also presented. |
format |
Article |
author |
Shahimi, Sharis-Shazzali Abdullah, Nur Azam Hrairi, Meftah Ahmad, Meor iqram Meor |
author_facet |
Shahimi, Sharis-Shazzali Abdullah, Nur Azam Hrairi, Meftah Ahmad, Meor iqram Meor |
author_sort |
Shahimi, Sharis-Shazzali |
title |
Numerical investigation on the damage of whirling engine blades subjected to bird strike impact |
title_short |
Numerical investigation on the damage of whirling engine blades subjected to bird strike impact |
title_full |
Numerical investigation on the damage of whirling engine blades subjected to bird strike impact |
title_fullStr |
Numerical investigation on the damage of whirling engine blades subjected to bird strike impact |
title_full_unstemmed |
Numerical investigation on the damage of whirling engine blades subjected to bird strike impact |
title_sort |
numerical investigation on the damage of whirling engine blades subjected to bird strike impact |
publisher |
The Aeronautical and Astronautical Society of the Republic of China |
publishDate |
2021 |
url |
http://irep.iium.edu.my/88319/7/88319_Numerical%20Investigation%20on%20the%20Damage%20of%20Whirling.pdf http://irep.iium.edu.my/88319/13/88319_Numerical%20Investigation%20on%20the%20Damage_Scopus.pdf http://irep.iium.edu.my/88319/ https://www.airitilibrary.com/Publication/alDetailedMesh?DocID=P20140627004-202106-202102080001-202102080001-193-199 |
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