首页> 外文会议>International Conference on Offshore Mechanics and Arctic Engineering, Jun 23-28, 2002, Oslo, Norway >A 2D COMPUTATIONAL FLUID DYNAMICS ANALYSIS OF WELLS TURBINE BLADE PROFILES IN ISOLATED AND CASCADE FLOW
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A 2D COMPUTATIONAL FLUID DYNAMICS ANALYSIS OF WELLS TURBINE BLADE PROFILES IN ISOLATED AND CASCADE FLOW

机译:分离流和梯级流中水轮机叶片轮廓的二维计算流体动力学分析

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This paper deals with the application of Computational Fluid Dynamics (CFD) to the analysis of the aerodynamic characteristics of symmetrical airfoil blades in 2-Dimensional flow. The CFD model was used to compare blades of varying profiles to analyse the aerodynamic forces and the compressibility effects and to compare the differences in modelling the blades in isolated and cascade flow. The model was validated using correction factors with published results for the NACA 0015 blade profile, which show that the model gives good results for the aerodynamic forces. The differences in the predicted aerodynamic characteristics, such as low angle of incidence drag, as well as normal and tangential forces are compared for the isolated and cascade cases. The validated model was then used to compare proposed blade profiles for a Wells Turbine. The paper presents the results of the numerical investigation along with the analysis and comparison of the different profiles.
机译:本文将计算流体动力学(CFD)应用于二维流场中对称翼型叶片的空气动力学特性分析中。 CFD模型用于比较不同轮廓的叶片,以分析空气动力和可压缩性效果,并比较隔离流动和叶栅流动中叶片建模的差异。使用校正因子对模型进行了验证,该校正因子具有针对NACA 0015叶片轮廓的公开结果,表明该模型对于空气动力具有良好的效果。对于孤立的和级联的情况,比较了预测的空气动力学特性的差异,例如低入射角阻力以及法向力和切向力。然后,将经过验证的模型用于比较Wells Turbine的建议叶片轮廓。本文介绍了数值研究的结果,以及不同轮廓的分析和比较。

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