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Effect of acceleration on dynamic stall of airfoil in unsteady operating conditions

نویسنده:
حمیدرضا کرباسیان
,
جواد ابوالفضلی اصفهانی
,
E. Barati
,
hamid reza karbasian
,
Javad Abolfazli Esfahani
سال
: 2016
چکیده: airfoil, the dynamic stall is evaluated. In contrast to ordinary pitching motion, the dynamic stall evaluation in this study is performed with a different motion pattern, in which the airfoil has a heaving motion in one direction. This motion pattern is also similar to rotation of an element of blade in horizontal axis wind turbines (HAWTs). In present investigation,the Reynolds number is changed during simulation time and variations of this parameter from initial to final values are shown by acceleration parameter. The operating Reynolds number is more than 106, and a S809 airfoil is selected to move with accelerations of 1, 4 and 6 m/s2 in normal direction to free stream. To resolve accelerated flow filed in the two-dimensional computational domain and to achieve results within a reasonable computation time, the unsteady Reynolds averaged Navier–Stokes (URANS) equations are employed. The governing equations are discretized based on the finite volume approach and semi-implicit method for linked equations algorithm is used for pressure–velocity coupling. Furthermore, turbulence effect on flow field is accounted using shear stress transport (SST) k-ω model. It is shown that the accelerated flow can significantly influence the aerodynamic loads and dynamic stall trend. This study may introduce a

new concept regarding dynamic stall and aerodynamic loads when the rotational acceleration is involved in HAWTs.
یو آر آی: https://libsearch.um.ac.ir:443/fum/handle/fum/3351211
کلیدواژه(گان): horizontal axis wind turbine (HAWT),dynamic stall,unsteady operating conditions,S809 airfoil,wind energy
کالکشن :
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    Effect of acceleration on dynamic stall of airfoil in unsteady operating conditions

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contributor authorحمیدرضا کرباسیانen
contributor authorجواد ابوالفضلی اصفهانیen
contributor authorE. Baratien
contributor authorhamid reza karbasianfa
contributor authorJavad Abolfazli Esfahanifa
date accessioned2020-06-06T13:20:55Z
date available2020-06-06T13:20:55Z
date issued2016
identifier urihttps://libsearch.um.ac.ir:443/fum/handle/fum/3351211
description abstractairfoil, the dynamic stall is evaluated. In contrast to ordinary pitching motion, the dynamic stall evaluation in this study is performed with a different motion pattern, in which the airfoil has a heaving motion in one direction. This motion pattern is also similar to rotation of an element of blade in horizontal axis wind turbines (HAWTs). In present investigation,the Reynolds number is changed during simulation time and variations of this parameter from initial to final values are shown by acceleration parameter. The operating Reynolds number is more than 106, and a S809 airfoil is selected to move with accelerations of 1, 4 and 6 m/s2 in normal direction to free stream. To resolve accelerated flow filed in the two-dimensional computational domain and to achieve results within a reasonable computation time, the unsteady Reynolds averaged Navier–Stokes (URANS) equations are employed. The governing equations are discretized based on the finite volume approach and semi-implicit method for linked equations algorithm is used for pressure–velocity coupling. Furthermore, turbulence effect on flow field is accounted using shear stress transport (SST) k-ω model. It is shown that the accelerated flow can significantly influence the aerodynamic loads and dynamic stall trend. This study may introduce a

new concept regarding dynamic stall and aerodynamic loads when the rotational acceleration is involved in HAWTs.
en
languageEnglish
titleEffect of acceleration on dynamic stall of airfoil in unsteady operating conditionsen
typeJournal Paper
contenttypeExternal Fulltext
subject keywordshorizontal axis wind turbine (HAWT)en
subject keywordsdynamic stallen
subject keywordsunsteady operating conditionsen
subject keywordsS809 airfoilen
subject keywordswind energyen
journal titleWind Energyfa
pages17-33
journal volume19
journal issue1
identifier linkhttps://profdoc.um.ac.ir/paper-abstract-1044077.html
identifier articleid1044077
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