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Joint slip investigation based on finite element modelling verified by experimental results on wind turbine lattice towers

机译:基于有限元建模的联合滑移研究,并通过风轮机晶格塔的实验结果验证

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摘要

Slippage corresponds to the relative displacement of a bolted joint subjected to shear loads since the construction clearance between the bolt shank and the bolthole at assembly can cause joint slip. Deflections of towers with joint slippage effects is up to 1.9 times greater than the displacements obtained by linear analytical methods. In this study, 8 different types of joints are modelled and studied in the finite element program, and the results are verified by the experimental results which have been done in the laboratory. Moreover, several types of joints have been modelled and studied and load-deformation curves have also been presented. Finally, joint slip data for different types of angles, bolt diameter and bolt arrangements are generated. Thereupon, damping ratios (ζ) for different types of connections are reported. The study can be useful to help in designing of wind turbine towers with a higher level of accuracy and safety.
机译:滑移对应于承受剪切载荷的螺栓连接的相对位移,因为组装时螺栓杆和螺栓孔之间的构造间隙会导致接头滑移。具有关节滑移效应的塔架挠度比线性分析方法获得的位移高1.9倍。在这项研究中,在有限元程序中对8种不同类型的接头进行了建模和研究,并通过实验室中的实验结果验证了结果。此外,已经对几种类型的接头进行了建模和研究,并给出了载荷-变形曲线。最后,生成不同类型的角度,螺栓直径和螺栓布置的接头滑动数据。随即,报告了不同类型连接的阻尼比(ζ)。该研究对于帮助设计具有更高水平的准确性和安全性的风力涡轮机塔架可能是有用的。

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