首页> 外文会议>ASME gas turbine India conference >OPTIMIZATION OF AERODYNAMIC PARAMETERS OF AN ELLIPTICAL-BLADED SAVONIUS WIND ROTOR USING MULTI-OBJECTIVE GENETIC ALGORITHMS
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OPTIMIZATION OF AERODYNAMIC PARAMETERS OF AN ELLIPTICAL-BLADED SAVONIUS WIND ROTOR USING MULTI-OBJECTIVE GENETIC ALGORITHMS

机译:基于多目标遗传算法的椭圆叶片萨沃尼风转子气动参数优化

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The Savonius wind rotor, a drag-based machine, despite having lesser efficiency has got several advantages such as low price, easy installation, better starting capability independency to wind direction. In order to enhance the performance of such rotor, several design modifications have been built by changing the geometric parameters such as overlap ratio, aspect ratio, tip speed ratio, number of rotor blades and effect of shaft and end plates. Apart from the various geometric parameters, several rotor blades and augmentation techniques has evolved to improve the performance of the Savonius rotor. This has been achieved by using a host of numerical and experimental methods. In the present investigation, the multi-objective genetic algorithms have been used to optimize the incoming velocity, and the torque and lift coefficient for a novel elliptical-bladed profile for maximizing the rotor power coefficient. The multi-physics solver ANSYS direct optimization technique has been used to implement the genetic algorithms. The results obtained from the genetic algorithms have been compared with the established results under identical conditions.
机译:Savonius风力转子是一种基于阻力的机器,尽管效率较低,但仍具有许多优点,例如价格低,易于安装,与风向无关的更好的启动能力。为了提高这种转子的性能,通过改变几何参数,例如重叠比,纵横比,叶尖速度比,转子叶片的数量以及轴和端板的影响,已经进行了几种设计修改。除了各种几何参数,还开发了几种转子叶片和增强技术来提高Savonius转子的性能。这是通过使用大量的数值和实验方法来实现的。在本研究中,多目标遗传算法已用于优化输入速度,以及用于最大化转子功率系数的新型椭圆叶片轮廓的转矩和升力系数。多物理场求解器ANSYS直接优化技术已用于实现遗传算法。从遗传算法获得的结果已与相同条件下的既定结果进行了比较。

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