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Probabilistic micromechanical analysis of composite material stiffness properties for a wind turbine blade

机译:风力发电机叶片复合材料刚度特性的概率微力学分析

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This work presents a coupled approach for stiffness property prediction of composite materials used in wind turbine blades using an advanced micromechanics and reliability-based methodologies. This approach demonstrates how to map the uncertainties in the fiber and matrix properties onto the equivalent stiffness properties of composite laminates. Square and hexagonal unit cells were employed for the estimation of the composite equivalent properties. The finite element formulation of the unit cells were performed in the ANSYS Multiphysics. The results from numerical experimentation conform well with the available test data and to the results from the Modified Rule of Mixture (MROM). A probabilistic analysis using Monte Carlo Simulation with Latin Hypercube Sampling was used to assess the uncertainties in the equivalent properties according to the variability in the basic properties of the constituents. Furthermore, a sensitivity analysis based on the Spearman Rank Order correlation coefficients was carried out to highlight the influence of important properties of the constituents. As an illustration, the above approach is applied to analyze a 5 MW wind turbine blade section under static loading. Results demonstrate the possibility of the coupled approach at macro level (structure) from micro level (unit cell) with the aim to design robust structures. (C) 2015 Elsevier Ltd. All rights reserved.
机译:这项工作提出了一种使用先进的微力学和基于可靠性的方法对风力涡轮机叶片中使用的复合材料的刚度特性进行预测的耦合方法。该方法演示了如何将纤维和基体性能的不确定性映射到复合材料层压板的等效刚度性能上。正方形和六边形晶胞用于估算复合等效性能。在ANSYS Multiphysics中执行了晶胞的有限元公式化。数值实验的结果与可用的测试数据以及修正的混合规则(MROM)的结果非常吻合。使用蒙特卡洛模拟和拉丁超立方采样的概率分析根据成分基本属性的可变性来评估等效属性的不确定性。此外,基于Spearman等级顺序相关系数进行了敏感性分析,以突出显示成分的重要属性的影响。作为说明,以上方法适用于分析静态载荷下的5兆瓦风力涡轮机叶片截面。结果表明,从微观水平(单位单元)到宏观水平(结构)的耦合方法的可能性,旨在设计坚固的结构。 (C)2015 Elsevier Ltd.保留所有权利。

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