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Design, analysis and optimization of thin walled semi-monocoque wing structures using different structural idealization in the preliminary design phase

机译:在初步设计阶段采用不同结构理想化的薄壁半硬壳式机翼结构的设计,分析和优化

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Purpose - In modeling an aircraft wing, structural idealizations are often employed in hand calculations to simplify the structural analysis. In real applications of structural design, analysis and optimization, finite element methods are used because of the complexity of the geometry, combined and complex loading conditions. The purpose of this paper is to give a comprehensive study on the effect of using different structural idealizations on the design, analysis and optimization of thin walled semi-monocoque wing structures in the preliminary design phase. Design/methodology/approach - In the design part of the paper, wing structures are designed by employing two different structural idealizations that are typically used in the preliminary design phase. In the structural analysis part, finite element analysis of one of the designed wing configurations is performed using six different one and two dimensional finite element pairs which are typically used to model the sub-elements of semi-monocoque wing structures. Finally in the optimization part, wing structure is optimized for minimum weight by using finite element models which have the same six different finite element pairs used in the analysis phase. Findings - Based on the results presented in the paper, it is concluded that with the simplified methods, preliminary sizing of the wing configurations can be performed with enough confidence as long as the simplified method based designs are also optimized iteratively, which is what is practiced in the design phase of this study. Originality/value - This research aims at investigating the effect of using different one and two dimensional element pairs on the final analyzed and optimized configurations of the wing structure, and conclusions are inferred with regard to the sensitivity of the optimized wing configurations with respect to the choice of different element types in the finite element model.
机译:目的-在对飞机机翼建模时,经常在手工计算中采用结构理想化以简化结构分析。在结构设计,分析和优化的实际应用中,由于几何结构的复杂性,组合载荷条件和复杂载荷条件,使用了有限元方法。本文的目的是在初步设计阶段全面研究使用不同的结构理想化对薄壁半硬壳式机翼结构的设计,分析和优化的影响。设计/方法/方法-在本文的设计部分中,机翼结构是通过采用两种在初始设计阶段通常使用的不同结构理想化来设计的。在结构分析部分中,使用六种不同的一维和二维有限元对执行设计的机翼配置之一的有限元分析,这些对通常用于对半单壳式机翼结构的子元素进行建模。最后,在优化部分,通过使用有限元模型对机翼结构进行最小化优化,该模型具有在分析阶段使用的六个相同的有限元对。发现-根据本文提供的结果,得出的结论是,使用简化的方法,只要对基于简化方法的设计进行迭代优化,就可以以足够的置信度对机翼配置进行初步定型。在这项研究的设计阶段。独创性/价值-这项研究旨在研究使用不同的一维和二维元素对对机翼结构的最终分析和优化配置的影响,并就优化机翼配置相对于机翼的敏感性得出结论。在有限元模型中选择不同的元素类型。

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