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Dimensional reduction analyzing the thermoelastic behavior of wind turbine blades based on the variational asymptotic multiscale method

机译:基于变分渐近多尺度方法的风力涡轮机叶片热弹性行为分析

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摘要

Accurate and effective prediction of the thermoelastic behavior of composite wind blades is critical to the optimal design and performance evaluation. In this paper, a high-fidelity dimensional reduction model of composite wind blade is established based on the variational asymptotic multiscale method. First, the thermoelastic variational expression of 3-D composite wind blade was derived. Then, the thermoelastic energy functional was extended asymptotically to a series of 2-D energies by using the inherent small parameters of the structure, so that the original 3-D thermoelastic problem of composite wind blades was strictly divided into 2-D airfoil section analysis and 1-D beam analysis. The local displacement and stress fields were recovered based on the global response without a priori assumptions and unnecessary scale separation assumptions. Finally, the numerical examples of composite wind blades with NACA2412 airfoil and MH 104 airfoil are provided to verify the accuracy and effectiveness of the model by comparison with the three-dimensional finite element model (3D-FEM). The results show that the predicted thermoelastic behavior and local 3-D stress field of the composite wind blades are in good agreement with 3D-FEM, but the calculation efficiency is greatly improved.
机译:对复合风叶片的热弹性行为的准确有效预测对最佳设计和性能评估至关重要。本文基于变分渐近多尺度方法建立了复合风叶片的高保真尺寸减少模型。首先,推导出3d复合风叶片的热弹性变分性表达。然后,通过使用结构的固有的小参数,热弹性能量函数延伸至一系列2-D能量,使复合风叶片的原始3-D热弹性问题被严格分为2-D翼型截面分析和1-D光束分析。基于全局响应恢复局部位移和应力字段,而无需先验假设和不必要的比例分离假设。最后,提供了通过与三维有限元模型(3D-FEM)的比较来验证模型的复合风叶片和MH 104翼型的复合风叶片的数值例子。结果表明,复合风叶片的预测热弹性行为和局部3-D应力场与3D-FEM良好,但计算效率大大提高。

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