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Investigation of nonlinear dynamic behavior of lattice structure wind turbines

机译:格架式风力发电机的非线性动力学行为研究

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Wind turbines are kinds of electricity generators, proliferating nowadays due to their consistency with the environment. The rotation of the wind turbine blades duo to wind, burdens some frequencies on the wind turbine tower. Therefore, in addition to common design due to service loads, the wind turbine tower should be checked in the frequency analysis so that its natural frequencies do not coincide with the frequencies caused by blades rotation, resulting in the resonance of the tower and its failure. This makes the design of these structures to be complex. In this research, the frequency analysis of the lattice tower of a three-blade horizontal-axis wind turbine including different sources of nonlinearities, i.e., geometric, material and joint slip effect is carried out and the natural frequencies are obtained using the developed Nonlinear Analysis Software for Towers-NASTower-. It is observed that the joint slip effect can substantially reduce the natural frequencies of the lattice tower, which are significant in the design of these structures. In addition, the wind turbine displacements due to different design load cases are investigated, indicating that incorporating the joint slip effect into the analysis substantially increases the wind turbine displacements, which could affect on its performance. (C) 2016 Elsevier Ltd. All rights reserved.
机译:风力涡轮机是发电机的一种,由于其与环境的一致性,如今正在激增。风力涡轮机叶片的旋转使风力增加了风力涡轮机塔架上的某些频率。因此,除了因使用负载而导致的通用设计之外,还应在频率分析中检查风力涡轮机塔架,以使其自然频率与叶片旋转引起的频率不一致,从而导致塔架共振和故障。这使得这些结构的设计变得复杂。在这项研究中,对三叶片水平轴风力涡轮机的晶格塔进行了频率分析,该方法包括不同的非线性源,即几何,材料和接头滑移效应,并使用开发的非线性分析获得了固有频率。 Towers-NASTower-的软件。可以看出,联合滑移效应可以大大降低格构塔的固有频率,这在这些结构的设计中很重要。此外,研究了由于不同设计工况引起的风力涡轮机位移,表明将关节滑移效应纳入分析可显着增加风力涡轮机位移,这可能会影响其性能。 (C)2016 Elsevier Ltd.保留所有权利。

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