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Dynamic behaviour of a rotating cracked beam

机译:旋转裂纹梁的动态行为

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This paper presents a new approach to investigate and analyse the vibrational behaviour of cracked rotating cantilever beams, which can for example represent helicopter or wind turbine blades. The analytical Hamiltonian method is used in modelling the rotating beam and two numerical methods, the Rayleigh-Ritz and FEM, are used to study the natural frequencies and the mode shapes of the intact rotating beams. Subsequently, a crack is introduced into the FE model and simulations are performed to identify the modal characteristics for an open cracked rotating beam. The effect of various parameters such as non-dimensional rotating speed, hub ratio and slenderness ratio are investigated for both the intact and the cracked rotating beam, and in both directions of chordwise and flapwise motion. The veering phenomena in the natural frequencies as a function of the rotational speed and the buckling speed are considered with respect to the slenderness ratio. In addition, the mode shapes obtained for the flapwise vibration are compared using the modal assurance criterion (MAC). Finally, a new three dimensional design chart is produced, showing the effect of crack location and depth on the natural frequencies of the rotating beam. This chart will be subsequently important in identifying crack defects in rotating blades.
机译:本文提出了一种研究和分析裂纹旋转悬臂梁的振动行为的新方法,其可以例如代表直升机或风力涡轮机叶片。分析Hamiltonian方法用于建模旋转光束和两个数值方法,使用瑞利丽泽和有限元,用于研究完整旋转光束的自然频率和模式形状。随后,将裂缝引入FE模型中,进行模拟以识别开放裂纹旋转光束的模态特性。研究了各种参数,例如非维旋转速度,轮毂比和细长比的效果,用于完整和裂缝旋转梁,以及曲线方向和刷装运动的两个方向。基于细长比考虑了作为转速和屈曲速度的函数的自然频率中的转向现象。另外,使用模态保证标准(MAC)进行比较用于葡萄振动的模式形状。最后,制造了一种新的三维设计图表,显示了裂缝位置和深度对旋转光束的自然频率的影响。随后该图表将在识别旋转刀片中的裂缝缺陷时很重要。

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