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Multi-disciplinary analysis and optimisation methodology for conceptual design of a box-wing aircraft

机译:箱式翼飞机概念设计的多学科分析和优化方法

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This paper presents a multi-disciplinary analysis methodology for a box-wing aircraft configuration optimised for a given mission scenario. This conceptual design methodology and associated toolchain combines well-established vortex lattice analysis and a newly developed structural analysis tool called WingMASS, allowing the design space to be explored from a combined aerodynamics and structural design perspective. For a given mission scenario, the method optimises a box-wing configuration and compares it with an equivalent conventional configuration. This study shows that, for a given mission, a box wing configuration can lead to a fuel burn reduction of up to 5% by optimising aspect ratio, horizontal and vertical wing separation.
机译:本文介绍了针对给定任务场景进行了优化的箱形翼飞机配置的多学科分析方法。这种概念设计方法和相关的工具链结合了完善的涡流格子分析和新开发的称为WingMASS的结构分析工具,从而可以从空气动力学和结构设计的角度来探索设计空间。对于给定的任务场景,该方法优化了机翼配置,并将其与等效的常规配置进行比较。这项研究表明,对于给定的任务,箱形机翼配置可以通过优化纵横比,水平和垂直机翼分离来减少多达5%的燃油消耗。

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