Assessment of wing deformation influence on airload determination at the initial design stages

S. V. Baranovski, Барановски Сергей Владиславович, K. Mikhaylovskiy, Михайловский Константин Валерьевич
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Abstract

At designing aircraft, much attention is given to the wing, as one of the most critical elements of the airframe. It is necessary to have a clear-eyed outlook at response sequence, efficiency of various factors and calculation features on the receipt timing and quality of the result. In addition, the design of a structural element is a complex multidisciplinary task affecting various fields of science, which is complicated by the use of polymer composite materials. In the furtherance of solving the urgent task of the methods of designing of a polymer composite wing, it is necessary to determine the influence of wing deformation on the airload used in the calculation and determination of product parameters. Methods of designing of a polymer composite wing used at the initial stages and taking into account the choice of the external appearance, justification of the structural arrangement and load-bearing elements. The paper considers the flow of air over the wing of a passenger airliner and analyzes the pressure values for various flight modes. A comparison is made of the initial theoretical wing surface and deformed during flight, and the difference in loading of the considered options is determined. A future methodology of polymer composite wing design based on parametric modelling will take these results into account and make use of them.
初始设计阶段机翼变形对空气载荷确定的影响评估
在设计飞机时,机翼作为机体最关键的部件之一,受到了很大的关注。有必要对响应顺序、各种因素的效率以及接收时间和结果质量的计算特征有一个清晰的认识。此外,结构元件的设计是一项复杂的多学科任务,影响到各个科学领域,高分子复合材料的使用使其变得更加复杂。为了进一步解决聚合物复合材料机翼设计方法的紧迫任务,有必要在计算和确定产品参数时确定机翼变形对气动载荷的影响。研究了聚合物复合材料机翼在初始阶段的设计方法,并考虑了机翼外观的选择、结构布置和承重元件的合理选择。本文考虑了客机机翼上的气流,分析了不同飞行模式下机翼上的压力值。对初始理论翼面和飞行过程中的变形进行了比较,确定了所考虑方案的载荷差异。未来基于参数化建模的聚合物复合材料机翼设计方法将考虑并利用这些结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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