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Airfoil optimization for noise emission problem and aerodynamic performance criterion on small scale wind turbines

机译:小型风力发电机的噪声排放问题的翼型优化和空气动力性能准则

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摘要

Noise emission is one of the major concerns in wind turbine industry and especially for small scale wind turbines, which are mostly erected to the urban areas; the concern is turning into a problem. This paper focuses on the optimization of six airfoils which are widely used on small scale wind turbines in terms of the noise emission and performance criteria and the numerical computations are performed for a typical 10 kW wind turbine. The main purpose of this optimization process is to decrease the noise emission levels while increasing the aerodynamic performance of a small scale wind turbine by adjusting the shape of the airfoil. The sources of the broadband noise emission are defined and their dominancy is investigated with respect to the operating conditions. While redesigning, together with the principals of reducing the airfoil self-noise, the aerodynamic prospects of increasing the performance have been taken into account. The codes which are based on aero-acoustic empirical models and a collection of well-known aerodynamic functions are used in this study. The results obtained from the numerical analysis of the optimization process have shown that, the considered commercial airfoils for small scale wind turbines are improved in terms of aero-acoustics and aerodynamics. The pressure sides of the baseline airfoils have been manipulated together with the trailing edge and redesigned airfoils have lower levels of noise emission and higher lift to drag ratios.
机译:噪声排放是风力涡轮机行业特别是对于主要安装在城市地区的小型风力涡轮机的主要关注之一;担忧变成了问题。本文着眼于六种机翼的优化,这些机翼在噪声排放和性能标准方面均广泛用于小型风力涡轮机,并对典型的10 kW风力涡轮机进行了数值计算。该优化过程的主要目的是通过调整翼型来降低噪声排放水平,同时提高小型风力涡轮机的空气动力学性能。确定了宽带噪声发射的来源,并根据工作条件研究了它们的优势。在重新设计的同时,还考虑了降低翼型自噪声的原理,同时考虑了提高性能的空气动力学前景。在这项研究中使用了基于空气声学经验模型的代码以及一系列著名的空气动力学功能。从优化过程的数值分析中获得的结果表明,考虑到的用于小型风力涡轮机的商用机翼在空气声学和空气动力学方面得到了改进。基准翼型的压力侧已与后缘一起进行了操纵,重新设计的翼型具有较低的噪声发射水平和较高的升阻比。

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