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Automated design optimization of supersonic airplane wing structures under dynamic constraints

机译:动态约束下超音速飞机机翼结构的自动设计优化

摘要

The problems of the preliminary and first level detail design of supersonic aircraft wings are stated as mathematical programs and solved using automated optimum design techniques. The problem is approached in two phases: the first is a simplified equivalent plate model in which the envelope, planform and structural parameters are varied to produce a design, the second is a finite element model with fixed configuration in which the material distribution is varied. Constraints include flutter, aeroelastically computed stresses and deflections, natural frequency and a variety of geometric limitations.
机译:超音速飞机机翼的初步和一级细节设计的问题被陈述为数学程序,并使用自动化的最佳设计技术加以解决。这个问题分两个阶段解决:第一阶段是简化的等效板模型,其中改变包络线,平面形状和结构参数以产生设计;第二阶段是具有固定配置的有限元模型,其中材料分布发生变化。约束包括颤振,气动弹性计算的应力和挠度,固有频率以及各种几何限制。

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