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Mathematical model for predicting the blade behaviour of horizontal axis wind turbine

机译:预测水平轴风力发电机叶片特性的数学模型

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摘要

A mathematical model using both beam finite element and thin-walled structure theory is developed to predict the natural frequency and blade behaviour of a horizontal axis wind turbine under constant wind speed and turbulence condition. First of all, the deformation pattern of the blade is defined on the basis of thin-walled structure theory and Timoshenko beam theory, and by considering the blade as a rotation cantilever beam, the governing equation is obtained using the principle of virtual work. Then, it is discreted by a beam element. Constraints are applied to define boundary conditions and coupling of flapwise, edgewise, and elongation deformations on the governing equation using the penalty method. Finally, natural frequencies of the blade are analysed. Detailed expressions for centrifugal and Coriolis forces are obtained. The stress on the root and displacement at the tip are also analysed in detail. The blade's deflection in turbulent conditions is simulated and shown to mostly influence flapwise blade deformation. [PUBLICATION ABSTRACT]
机译:建立了使用梁有限元和薄壁结构理论的数学模型,以预测在恒定风速和湍流条件下水平轴风力发电机的固有频率和叶片行为。首先,根据薄壁结构理论和蒂莫申科梁理论,确定了叶片的变形模式,并以叶片为旋转悬臂梁,利用虚功原理得到了控制方程。然后,通过梁单元将其离散。使用惩罚方法,应用约束来定义边界条件以及控制方程上的襟翼方向,边缘方向和伸长变形的耦合。最后,分析叶片的固有频率。获得了离心力和科里奥利力的详细表达式。还详细分析了根部应力和尖端位移。模拟了在湍流条件下叶片的偏转,并显示出它主要影响翼片叶片的变形。 [出版物摘要]

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