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Mathematical modeling for H-type vertical axis wind turbine

机译:H型垂直轴风力发电机的数学模型

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H-type vertical axis wind turbine (VAWT), with higher wind energy utilization, is one of the most common forms of Darrieus-type vertical axis wind turbine. A simplified mathematical modeling analysis is proposed to obtain the performance of H-type VAWT in this research. Blade element momentum theory is used to calculation the power and efficiency of H-type VAWT, and computational fluid dynamics (CFD) is used in two dimensional numerical simulation for the flow field performance of H-type VAWT. The renormalization-group (RNG) k-ε two equations turbulence model is selected as a computational model for analyzing the flow-field distribution of the wind turbine in different locations. The aerodynamic performance with change of attack angle, the force and torque on blade elements is analyzed by proposed mathematical model. Finally, some aerodynamic properties are discussed for H-type VAWT such as the relationships between rotational speed and the tip speed ratio, the speed vector distributions of the rotor in different locations, and the torque moment characteristics to over time.
机译:H型垂直轴风力发电机(VAWT)具有更高的风能利用率,是Darrieus型垂直轴风力发电机的最常见形式之一。为了获得H型VAWT的性能,提出了简化的数学建模分析。叶片单元动量理论用于计算H型VAWT的功率和效率,而计算流体力学(CFD)用于二维数值模拟,用于H型VAWT的流场性能。选择重归一化组(RNG)k-ε两个方程湍流模型作为计算模型,以分析风力涡轮机在不同位置的流场分布。通过提出的数学模型分析了随攻角,叶片力和扭矩变化的气动性能。最后,讨论了H型VAWT的一些空气动力学特性,例如转速与叶尖速比之间的关系,转子在不同位置的速度矢量分布以及随时间变化的转矩特性。

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