Prediction of Laminar Separation Bubble over Wind Turbine Blade Based on Three-equation k-ω Turbulence Model
Publish place: 07th Conference of Iranian Aerospace Society
Publish Year: 1386
نوع سند: مقاله کنفرانسی
زبان: English
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شناسه ملی سند علمی:
AEROSPACE07_292
تاریخ نمایه سازی: 1 مرداد 1387
Abstract:
A recently developed transitional model for boundary layer flows has been examined over a wind turbine blade under two different Reynolds numbers, with one of them suitable for the occurrence of laminar separation bubbles on its upper and lower surfaces. This model is a new approach to RANS-based method which combines advantages of the most efficient methods presented so far. Proposed model is based on eddy-viscosity concept and includes three transport equations of turbulent kinetic energy, KT , laminar kinetic energy, KL , and dissipation rate frequency, ω. To evaluate the performance of this new model in resolving boundary layer transition, final results have been compared to those obtained through application of conventional standard k-ω , k-ω SST turbulence models and fully laminar model.
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Authors
Reza Taghavi-Zenouz
Assistant Professor, Department of Mechanical Engineering , Iran University of Science and Technology
Majed Etemadi
Ph. D. Student
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