风力机叶片复合模型临界载荷建模问题研究

Oleksiy Domin, O. Larin
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引用次数: 0

摘要

本文讨论了风力机叶片在临界载荷作用下的变形状态设计与分析问题。考虑到复杂的曲线几何形状和内部加筋部件的存在,建立了壳体的三维仿真模型。基于有限元法确定了风荷载作用下的应力-应变状态参数。采用壳式十节点等参数有限元。所建立的叶片有限元模型考虑了复合材料结构,并重现了沿壳体厚度存在的不同数量的复合材料层,单个层上纤维的多样性,特别是力学性能的曲线正交异性。提出了多层结构的设置方法,在接缝处可将多层复合材料层层叠加,保证了模型符合工艺特点。考虑升力和空气头力,进行了结构静力分析和变形计算。根据最大变形准则对各层进行了强度分析。关键词:复合材料,风力机叶片,强度,有限元分析,正交异性特性
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigation of problems in modeling critical loads on a composite model of a wind turbine blade
This article deals with the problems of designing and analysis of the deformed state of the wind turbine blade under critical loads. A three-dimensional shell simulation model is built, taking into account the complex curvilinear geometry and the presence of reinforcing internal parts. The determination of the parameters of the stress-strain state under the influence of wind load was carried out on the basis of the finite element method. A shell ten-node isoparametric finite element was used. The constructed finite element model of the blade allows taking into account the composite structure and reproduced the presence of a different number of composite layers along the thickness of the shell, the diversity of fibers on individual layers, in particular, the curvilinear orthotropy of mechanical properties was modeled. The procedure of multi-layer structure setting is presented, which provides for superimposition of layers of composite one on the other in places of joint, which ensures compliance of model with technological peculiarities. Static analysis of structural deformation calculation is carried out taking into account lifting force and air head force. The strength analysis was performed for each of the layers according to the criterion of maximum deformations. Key words: composite material, wind turbine blade, strength, finite-elemental analysis, orthotropy of characteristics.
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