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A surrogate-based multi-disciplinary design optimization framework modeling wing-propeller interaction

机译:基于代理的多学科设计优化框架,对机翼与螺旋桨相互作用进行建模

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摘要

This paper presents a multi-disciplinary design optimization (MDO) framework for design of a general aviation aircraft wing considering the effects of tractor propellers on the wing aerodynamic characteristics. In pursuit of this objective, a wing-propeller full-interaction aerodynamic routine was developed and integrated with structural and performance models. A substantive contribution of the work is the approach for effectively modeling wing effects on propeller slipstream development while still leveraging traditional propeller and wing analysis toots. Several optimizations were carried out, starting from an existing aircraft design, to test different local and global surrogate-based optimization frameworks and to allow for the assessment of the resulting solutions and corresponding computational performance metrics. Examination of the total function calls and run times showed that the use of surrogate models improves overall optimization performance, provided that suitable surrogate modeling techniques are chosen. (C) 2018 Elsevier Masson SAS. All rights reserved.
机译:本文提出了一种通用设计的多学科设计优化(MDO)框架,该框架考虑了牵引螺旋桨对机翼空气动力特性的影响,设计了通用航空机翼。为了实现这一目标,开发了机翼螺旋桨全交互空气动力学程序,并将其与结构和性能模型集成在一起。这项工作的实质性贡献在于,该方法可以有效地模拟机翼对螺旋桨滑流发展的影响,同时仍然利用传统的螺旋桨和机翼分析工具。从现有飞机的设计开始,进行了多项优化,以测试不同的基于本地和全局代理的优化框架,并允许评估所得解决方案和相应的计算性能指标。对总函数调用和运行时间的检查表明,只要选择了合适的代理建模技术,使用代理模型可以提高总体优化性能。 (C)2018 Elsevier Masson SAS。版权所有。

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