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The Performance Evaluation of Horizontal Axis Wind Turbine Torque and Mechanical Power Generation Affected by the Number of Blade

机译:叶片数量对水平轴风力发电机转矩和机械发电性能的影响。

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摘要

This paper presents the evaluation of horizontal axis wind turbine torque and mechanical power generation and its relation to the number of blades at a given wind speed. The relationship of wind turbine rotational frequency, tip speed, minimum wind speed, mechanical power and torque related to the number of blades are derived. The purpose of this study is to determine the wind energy extraction efficiency achieved for every increment of blade number. Effective factor is introduced to interpret the effectiveness of the wind turbine extracting wind energy below and above the minimum wind speed for a given number of blades. Improve factor is introduced to indicate the improvement achieved for every increment of blades. The evaluation was performance with wind turbine from 1 to 6 blades. The evaluation results shows that the higher the number of blades the lower the minimum wind speed to achieve unity effective factor. High improve factors are achieved between 1 to 2 and 2 to 3 blades increment. It contributes to better understanding and determination for the choice of the number of blades for wind turbine design.
机译:本文介绍了在给定风速下水平轴风力发电机转矩和机械功率的评估及其与叶片数量的关系。推导了与叶片数量有关的风力涡轮机转速,叶尖速度,最小风速,机械功率和扭矩之间的关系。这项研究的目的是确定每增加一个叶片数所获得的风能提取效率。引入有效因数来解释风力涡轮机提取给定数量叶片的最小风速以下的风能的效率。引入改善因子以指示每增加一个叶片所实现的改善。评估是使用1到6个叶片的风力涡轮机的性能。评估结果表明,叶片数量越多,获得统一有效系数的最小风速就越低。在1到2到2到3个刀片增量之间实现了很高的改进因子。它有助于更​​好地理解和确定用于风力涡轮机设计的叶片数量的选择。

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