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Development of thick airfoils for outboard sections and investigation into their application for large rotors

机译:开发用于舷外部分的厚翼型及其在大型旋翼中的应用研究

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摘要

The use of thick airfoils toward the outboard part of horizontal axis wind turbine blades is a promising concept to reduce the cost of wind energy. In fact, thick airfoils have higher area moments of inertia than those of thin airfoils, normally employed toward the outboard part of the blade. Replacing thin airfoils with thicker ones would therefore allow one to improve the structural properties of the blade, reducing the mass needed to ensure its structural integrity. Conventional thick airfoils, however, are generally characterized by worse aerodynamic performance with respect to those of thin airfoils, which make them less attracting for their use toward the outboard part of the blade. The research reported in this paper deals with the development of an optimization system for the aerodynamic design of thick airfoils, aiming to improve their aerodynamic performance, and therefore making them more suitable for their usage toward the outboard part of the blade. In order to determine the effect of the use of thick airfoils towards outboard sections, a blade design incorporating a newly designed 30% thick airfoil is assessed both statically and dynamically. The results showed that mass reduction can be achieved with the use of ad hoc optimized thick airfoils with limited penalty in power production.
机译:在水平轴风力涡轮机叶片外侧使用较厚的翼型是降低风能成本的一种有前途的概念。实际上,与通常用于叶片外侧部分的薄型翼型相比,厚型翼型具有更高的区域惯性矩。因此,用较厚的机翼代替薄的机翼将使人们能够改善叶片的结构性能,从而减少了确保其结构完整性所需的质量。然而,常规的厚型翼型通常相对于薄型翼型具有较差的空气动力学性能,这使得它们在向叶片的外侧部分使用时吸引力较小。本文报道的研究涉及为厚型翼型的空气动力学设计优化系统的开发,旨在提高其翼型的空气动力学性能,因此使其更适合在叶片外侧使用。为了确定在外侧部分使用厚翼型的效果,静态和动态评估了采用新设计的30%厚翼型的叶片设计。结果表明,通过使用经过优化的特制厚翼型可以降低质量,而对功率的生产具有有限的损失。

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