난류모델에 따른 SMART BLADE 공력 특성 연구

Study on Aerodynamic Performance Characteristics for SMART BLADE according to Turbulence Model

초록

This study presents an analysis of the aerodynamic performance characteristics of 20 m rotor blades for the NREL CART3 wind turbine within the SMART BLADES and SMART BLADES-2 projects. Three-dimensional Computational Fluid Dynamics (CFD) analysis was conducted to investigate the aerodynamic behavior. The Reynolds Averaged Navier-Stokes (RANS)-based turbulence model was utilized for numerical simulations, and the results were compared with Fraunhofer’s Blade Elementary Momentum Theory (BEMT) results. The aerodynamic performance characteristics of the rotor blades were evaluated using three turbulence models: Spalart Allmaras (S-A), standard k-ω, and Shear Stress Transform (SST) k-ω. The turbulence models demonstrated good agreement with the BEMT results at wind speeds below the rated power. However, under rated power wind speed conditions, the S-A and standard k-ω turbulence models exhibited an underprediction of aerodynamic performance. This discrepancy was attributed to an overestimation of the flow delamination point and recirculation region near the blade hub. Therefore, i t is r ecommended t o employ t he S S T k-ω turbulence model, which accurately captures turbulence phenomena both inside and outside the boundary layer, for rated power speed conditions.

키워드

Wind Turbine(풍력 발전기)CFD(전산유체역학)Aerodynamic characteristics(공력 특성)Turbulence model(난류 모델)Flow characteristics(유동 특성)
제목
난류모델에 따른 SMART BLADE 공력 특성 연구
제목 (타언어)
Study on Aerodynamic Performance Characteristics for SMART BLADE according to Turbulence Model
저자
박성철하광태정재호
발행일
2023-10
저널명
한국유체기계학회 논문집
26
5
페이지
118 ~ 126