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Vibration Analysis of the Low Speed Shaft and Hub of a Wind Turbine Using Sub Structuring Techniques

机译:基于子结构技术的风轮机低速轴和轮毂振动分析

摘要

The wind turbine vibration causes dynamic instability of components of the transmission system desired to generate electricity. The vibration motion of the hub relative to the shaft need to be studied in order to improve durability of components part and ensure that a good percentage of wind energy captured is transmitted to electricity. This paper attempts to do that. A sub-structuring technique was adopted in the analysis of the vibration motion. Firstly, the finite element equation was derived for the hub and shaft structures before coupling. After coupling, the appropriate boundary condition was used to minimize the system complexities. The solution to the eigenvalue problem was then developed using MATLAB. This results obtained show that sub-structuring is a suitable technique for the dynamic analysis of the transmission system of a wind turbine as compared with other approaches.
机译:风力涡轮机的振动导致期望发电的传输系统的组件的动态不稳定。需要研究轮毂相对于轴的振动运动,以提高零件的耐用性并确保捕获到的风能的很大一部分被传递给电。本文试图做到这一点。在振动运动分析中采用了子结构技术。首先,在耦合之前,针对轮毂和轴结构推导了有限元方程。耦合之后,使用适当的边界条件来最小化系统的复杂性。然后使用MATLAB开发了特征值问题的解决方案。所获得的结果表明,与其他方法相比,子结构是一种用于风力涡轮机传动系统动态分析的合适技术。

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