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GENERAL BEAM CROSS-SECTION ANALYSIS USING A 3D FINITE ELEMENT SLICE

机译:使用3D有限元切片的一般梁横截面分析

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A formulation for analysis of general cross-section properties has been developed. This formulation is based on the stress-strain states in the classic six equilibrium modes of a beam by considering a finite thickness slice modelled by a single layer of 3D finite elements. The displacement variation in the lengthwise direction is in the form of a cubic polynomial, which is here represented by Hermitian interpolation, whereby the degrees of freedom are concentrated on the front and back faces of the slice. The theory is illustrated by application to a simple cross-section for which an analytical solution is available. The paper also shows an application to wind turbine blade cross-sections and discusses the effect of the finite element discretization on the cross-section properties such as stiffness parameters and the location of the elastic and shear centers.
机译:已经开发出用于分析一般横截面特性的配方。该公式基于梁的经典六种平衡模式下的应力-应变状态,其中考虑了由单层3D有限元建模的有限厚度切片。长度方向上的位移变化为三次多项式的形式,在此用埃尔米特插值表示,由此自由度集中在切片的正面和背面。该理论通过应用到一个简单的横截面来说明,对于该横截面可以使用分析解决方案。本文还展示了在风力涡轮机叶片横截面上的一种应用,并讨论了有限元离散化对横截面特性(例如刚度参数以及弹性和剪切中心的位置)的影响。

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