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首页> 外文期刊>MATEC Web of Conferences >Optimization Twist Angle of Darrius Wind Turbine with Computational Fluid Dynamics (CFD) Simulation for Highway Area Application
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Optimization Twist Angle of Darrius Wind Turbine with Computational Fluid Dynamics (CFD) Simulation for Highway Area Application

机译:基于计算流体力学(CFD)模拟的Darrieus风力发电机组最佳扭转角在公路领域的应用

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The research conducted to analyze and optimization of Darrius wind turbine based on air velocity and twist angle blade which can influence of turbine torque, turbine rotation speed and turbine power capacity. The method of research uses three steps that is the air velocity observation, wind turbine design, and simulation of wind turbine design. The twist angle as a variable parameter has degree angle of 0° and 30°. The result showed that the Darrius wind turbine with the twist angle of 30° which has chosen has the torque value is 0.285 N m that capable to increase the rotation speed is 6.42 rpm, and generate the turbine power capacity is 0.221 W. The research will be continuing to data validation with the result of pilot scale experiment.
机译:该研究基于风速和转角叶片对达里乌斯风力发电机进行分析和优化,这些因素会影响涡轮转矩,涡轮转速和涡轮功率。研究方法采用三个步骤,即风速观测,风机设计和风机设计仿真。作为可变参数的扭转角具有0°和30°的度角。结果表明,所选择的扭转角为30°的Darrius风力发电机的转矩值为0.285 N m,能够提高转速为6.42 rpm,并产生的风力发电机功率为0.221W。继续通过中试规模的结果进行数据验证。

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