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A cross-sectional aeroelastic analysis and structural optimization tool for slender composite structures

机译:细长复合结构的横截面空气弹性分析与结构优化工具

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A fully open-source available framework for the parametric cross-sectional analysis and design optimization of slender composite structures, such as helicopter or wind turbine blades, is presented. The framework- Structural Optimization and Aeroelastic Analysis (SONATA)-incorporates two structural solvers, the commercial tool VABS, and the novel open-source code ANBA4. SONATA also parameterizes the design inputs, post processes and visualizes the results, and generates the structural inputs to a variety of aeroelastic analysis tools. It is linked to the optimization library OpenMDAO. This work presents the methodology and explains the fundamental approaches of SONATA. Structural characteristics were successfully verified for both VABS and ANBA4 using box beam examples from literature, thereby verifying the parametric approach to generating the topology and mesh in a cross section as well as the solver integration. The framework was furthermore exercised by analyzing and evaluating a fully resolved highly flexible wind turbine blade. Computed structural characteristics correlated between VABS and ANBA4, including off-diagonal terms. Stresses, strains, and deformations were recovered from loads derived through coupling with aeroelastic analysis. The framework, therefore, proves effective in accurately analyzing and optimizing slender composite structures on a high-fidelity level that is close to a three-dimensional finite element model.
机译:提出了一个完全开源可用的参数横截面分析和设计优化的可用框架,例如直升机或风力涡轮机叶片。框架 - 结构优化和空气弹性分析(奏鸣曲) - 森林林两种结构求解器,商业工具VAB和新颖的开源代码ANBA4。 SONATA还参加了设计输入,后处理并可视化结果,并为各种空气弹性分析工具产生了结构输入。它与优化库OpenMDAO相关联。这项工作介绍了方法,并解释了索纳塔的基本方法。使用来自文献的盒束示例成功验证了结构特征,从而成功地验证了VABS和ANBA4,从而验证了在横截面以及求解器集成中产生拓扑和网格的参数方法。此外,通过分析和评估完全解决的高度柔性风力涡轮机叶片,此外框架进一步行使。计算的结构特征在VABS和ANBA4之间相关,包括偏斜术语。从通过与空气弹性分析的偶联来源的负荷回收应力,菌株和变形。因此,该框架证明了在靠近三维有限元模型的高保真水平上准确地分析和优化细长复合结构。

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