首页> 外文会议>Energy Conversion Engineering Conference, 1997. IECEC-97., Proceedings of the 32nd Intersociety >Applications of computational fluid dynamics to a wave energy conversion device
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Applications of computational fluid dynamics to a wave energy conversion device

机译:计算流体力学在波浪能转换装置中的应用

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The results of numerical studies of Wells turbine aerodynamics are presented. In the first study, the ability of a hybrid active/passive device to alleviate post-stall buffet of an isolated NACA0012 aerofoil at 18/spl deg/ is evaluated. The passive boundary layer control device is a porous surface/plenum chamber which covers the 1% to 10% chord portion of the aerofoil, and active control is provided by applying suction to the plenum chamber. It is shown that the unsteady load experienced by the solid aerofoil at post-stall incidence is indeed alleviated by the active device; while the passive device has minimal impact on performance at pre-stall angles. The second study uses a three-dimensional numerical method to predict the performance of typical Wells turbines with various numbers of blades and tip clearances. The effect of solidity on turbine performance is predicted well both qualitatively and quantitatively, and the effect of clearance is qualitatively correct.
机译:给出了韦尔斯涡轮机空气动力学数值研究的结果。在第一个研究中,评估了混合主动/被动设备缓解孤立的NACA0012机翼在失速后以18 / spl deg /的失速后自助能力。被动边界层控制装置是一个多孔表面/增压室,它覆盖了翼型的1%到10%的弦部,并且通过对增压室施加吸力来提供主动控制。结果表明,主动装置确实减轻了失速后固体翼型承受的不稳定载荷。而无源器件在预失速角时对性能的影响最小。第二项研究使用三维数值方法来预测具有各种叶片和叶尖间隙的典型Wells涡轮机的性能。定性和定量都很好地预测了固体对涡轮机性能的影响,并且定性正确地证明了间隙的影响。

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