气动/隐身翼型设计优化中的多模态研究

Zhang Wei, Gao Zhenghong, Zhou Lin, Deng Jun, Xia Lu, Zuo Yingtao
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引用次数: 2

摘要

现代战斗机的翼型除了需要良好的气动性能和隐身性能外,还需要较大的正力矩来保持纵向纵倾。新的设计要求将增加设计空间中多模态的可能性。为了解决这一问题,本文采用平行小生境的方法来识别多模态的存在和可能的来源,基于对称翼型的气动和隐身形状优化。为了分离空间多模态的实例,分别通过改变设计变量的数量和范围以及正矩约束来研究几个子问题。结果表明,气动设计空间中多模态的出现与正矩约束和设计变量的取值范围密切相关。此外,气动空间的局部极小值与隐身空间的局部极小值非常接近,说明在某些情况下,气动设计与隐身设计之间并没有太大的冲突。这一发现可能为飞机气动/隐身设计开辟一条新途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Research on Multimodality in Aerodynamic/Stealth Airfoil Design Optimization
The airfoil on modern fighters needs large positive moment to maintain longitudinal trim in addition to good aerodynamic and stealth performance. The novel design requirements would increase the likelihood of multimodality in design space. To address this issue, this paper uses parallel niching method to identify the existence and possible sources of multimodality in the aerodynamic and stealth shape optimizations based on a symmetrical airfoil. To isolate the instances of space multimodality, several subproblems are studied by varying the number and range of design variables, as well as positive moment constraints, respectively. The results demonstrate that the occurrences of multimodality in aerodynamic design space are highly related to positive moment constraint and ranges of design variables. Additionally, it’s found that some local minimums in aerodynamic space are very close to that of stealth space, indicating that the there’s not that large conflict between aerodynamic and stealth design under certain circumstances. This discovery may appeal a new approach of aerodynamic/stealth design of aircraft.
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