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Review of computational and experimental approaches to analysis of aerodynamic performance in horizontal-axis wind turbines (HAWTs)

机译:审查水平轴风力涡轮机(HAWT)的空气动力学性能的计算和实验方法

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摘要

Horizontal-axis wind turbines (HAWTs) are the primary devices used in the wind energy sector. Systems used to evaluate the design of turbine blades and generators are key to improve the performance of HAWTs. Analysis of aerodynamic performance in turbine blades focuses on wind speed, rotational speed, and tip speed ratios (TSRs). This paper reviews computational as well as experimental methods used to measure the aerodynamic performance of HAWT blades. Among the numerical methods, we examine classical blade element momentum (BEM) theory and the modified BEM as well as computational fluid dynamics (CFD) and the BEM-CFD mixed approach. We also discuss the current computational methods for investigating turbine wake flows. Among the experimental methods, we examine field testing and wind tunnel experiment including aerodynamic torque measurement and blockage effects. A comparison of numerical and experimental approaches can help to improve accuracy in the prediction of wind turbine performance and facilitate the design of HAWT blades. (C) 2016 Elsevier Ltd. All rights reserved.
机译:水平轴风力涡轮机(HAWT)是风能领域中使用的主要设备。用于评估涡轮叶片和发电机设计的系统是提高HAWT性能的关键。涡轮叶片的空气动力性能分析着重于风速,转速和叶尖速比(TSR)。本文回顾了用于测量HAWT叶片空气动力学性能的计算和实验方法。在数值方法中,我们研究了经典叶片元动量(BEM)理论和改进的BEM以及计算流体力学(CFD)和BEM-CFD混合方法。我们还将讨论用于研究涡轮尾流的当前计算方法。在这些实验方法中,我们检查了现场测试和风洞实验,包括空气动力学扭矩测量和阻塞效应。数值和实验方法的比较可以帮助提高风力涡轮机性能预测的准确性,并简化HAWT叶片的设计。 (C)2016 Elsevier Ltd.保留所有权利。

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