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Application of Adjoint Methodology to Supersonic Aircraft Design Using Reversed Equivalent Areas

机译:伴随方法在反向等效面积超音速飞机设计中的应用

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This paper presents an approach to shape an aircraft to equivalent area based objectives using the discrete adjoint approach. Equivalent areas can be obtained either using reversed augmented Burgers equation or direct conversion of off-body pressures into equivalent area. Formal coupling with CFD allows computation of sensitivities of equivalent area objectives with respect to aircraft shape parameters. The exactness of the adjoint sensitivities is verified against derivatives obtained using the complex step approach. This methodology has the benefit of using designer-friendly equivalent areas in the shape design of low-boom aircraft. Shape optimization results with equivalent area cost functionals are discussed and further refined using ground loudness based objectives.
机译:本文提出了一种使用离散伴随方法将飞机整形为基于等效区域的目标的方法。可以使用反向扩展的Burgers方程或将体外压力直接转换为等效面积来获得等效面积。与CFD的形式耦合可以计算等效面积目标相对于飞机形状参数的灵敏度。针对使用复杂步骤方法获得的衍生物验证了伴随灵敏度的准确性。这种方法的优点是在低吊杆飞机的形状设计中使用了设计者友好的等效区域。讨论了具有等效面积成本功能的形状优化结果,并使用基于地面响度的目标进行了进一步优化。

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