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Effect of design parameters on the mass of a variable-span morphing wing based on finite element structural analysis and optimization

机译:基于有限元结构分析和优化的设计参数对变跨变翼质量的影响

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In the past years, the development of morphing wing technologies has received a great deal of interest from the scientific community. These technologies potentially enable an increase in aircraft efficiency by changing the wing shape, thus allowing the aircraft to fly near its optimal performance point at different flight conditions. However, these technologies often present an undesired mass increase due to their inherent complexity. Therefore, the aim of the current work is to ascertain the influence of geometrical and inertial parameters on the structural mass of a Variable-span Wing (VSW). The structural mass prediction is based on a parametric study. A minimum mass optimization problem with stiffness and strength constraints is implemented and solved, being the design variables structural thicknesses and widths, using a parametric Finite Element Model (FEM) of the wing. The study is done for a conventional fixed wing and the VSW, which are then combined to ascertain the VSW mass increment, i.e., the mass penalization of the adopted morphing concept. Polynomials are found to produce good approximations of the wing mass. The effects of the various VSW design parameters in the structural mass are discussed. On one hand, it was found that the span and chord have the highest impact in the wing mass. On the other hand, the VSW to fixed wing mass ratio proved that the influence of span variation ratio in the wing mass is not trivial. It is found that the mass increase does not grow proportionally with span variation ratio increase and that for each combination of span and chord, exists a span variation ratio that minimizes the mass penalty. In the future, the developed polynomials could be used to create a mass prediction model to aid the design of morphing wings during the conceptual design phase. (C) 2018 Elsevier Masson SAS. All rights reserved.
机译:在过去的几年中,变形机翼技术的发展引起了科学界的极大兴趣。这些技术可能通过改变机翼形状来提高飞机效率,从而允许飞机在不同的飞行条件下接近其最佳性能点飞行。然而,由于它们固有的复杂性,这些技术通常呈现出不希望的质量增加。因此,当前工作的目的是确定几何参数和惯性参数对可变跨度机翼(VSW)的结构质量的影响。结构质量预测基于参数研究。使用机翼的参数有限元模型(FEM),可以实现并解决具有刚度和强度约束的最小质量优化问题,即设计变量的结构厚度和宽度。对常规固定翼和VSW进行了研究,然后将它们组合起来以确定VSW的质量增量,即采用的变形概念的质量损失。发现多项式可以很好地近似机翼质量。讨论了各种VSW设计参数对结构质量的影响。一方面,发现翼展和弦对机翼质量的影响最大。另一方面,VSW与固定机翼质量比证明,翼展变化比对机翼质量的影响并不小。发现质量增加不随跨度变化率的增加成比例地增长,并且对于跨度和弦的每种组合,都存在使质量损失最小的跨度变化率。将来,开发的多项式可用于创建质量预测模型,以在概念设计阶段协助变形机翼的设计。 (C)2018 Elsevier Masson SAS。版权所有。

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