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Effects of blade configuration and solidity on starting torque of Darrieus wind turbine

机译:叶片配置和固识对Darrius风力涡轮机启动扭矩的影响

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This study investigates the effects of blade configuration and solidity of Darrieus wind turbine on the starting torque characteristics. Generally, the configuration of Darrieus wind turbine is divided into Troposkien, parabola, Catenary, Sandia, modified-parabola and straight types. A numerical analysis has been carried out using Multiple Stream Tube (MST) method to investigate the effect of blade configuration and solidity of Darrieus wind turbine on the starting torque under the initial low range of rotational speed. The simulation results show that the starting torque of Darrieus wind turbine varies considerably depending on the blade configuration. The initial starting torque was larger with Troposkien, Parabola, Catenary, and Sandia configurations than with modified parabola or straight types. The increase in solidity with increasing number of blades raised the starting torque and improved the dynamic stability during the initial operational speed of Darrieus wind turbine. Additionally, these torque results represent basic data for fluid-structure interaction (FSI) simulation of the steady-dynamic operation of the turbine.
机译:本研究研究了Darrius风力涡轮机叶片配置和稳压对启动扭矩特性的影响。通常,Darries风力涡轮机的配置分为麦克风,抛物线,追盖,阳光,改性抛物线和直型。使用多流管(MST)方法进行了数值分析,以研究达里斯风力涡轮机在初始低旋转速度下的起始扭矩上的叶片配置和稳定性的影响。仿真结果表明,达赖斯风力涡轮机的起始扭矩根据叶片构造而显着变化。初始启动扭矩与Troposkien,Parabola,CateNary和Sandia配置大于改性抛物线或直接类型。随着叶片数量越来越多的叶片的升高而增加,并且在Darrius风力涡轮机的初始操作速度期间提高了动态稳定性。另外,这些扭矩结果代表了用于流体结构相互作用(FSI)模拟涡轮机稳态操作的基本数据。

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