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Aerodynamic Shape Design and Validation of an Advanced High-Lift Device for a Regional Aircraft with Morphing Droop Nose

机译:用于变形下垂鼻子的区域飞机先进高升机装置的空气动力学设计与验证

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摘要

In the present work, the aerodynamic shape design of an advanced high-lift system for a natural laminar flow (NLF) wing, based on the combination of a morphing droop nose and a single slot trailing edge flap, is presented. The paper presents both the aerodynamic design and optimization of the NLF wing and the high-lift configuration considering the mutual effects of both flap devices. Concerning the morphing droop nose (DN), after defining the parameterization techniques adopted to describe the geometry in terms of morphing shape and flap settings, the external configuration is obtained by an aerodynamic shape optimization procedure able to meet geometrical constraints and the skin structural requirements due to the morphing. The final performance assessment of the three-dimensional high-lift configurations is performed by high-fidelity aerodynamic analyses. The design procedure is applied to a twin-prop regional aircraft equipped with a natural laminar flow wing. The morphing droop nose is compatible with an NLF wing that requires the continuity of the skin and, at the same time, extends the possibilities to improve the performances of the class of regional aircraft which usually are not equipped with conventional leading edge devices. Additionally, the morphing technology applied to the flap allows the design of a tracking system fully integrated inside the airfoil geometry, leading to a solution without external fairings and so with no extra friction drag penalty for the aircraft.
机译:在本作工作中,提出了基于变形下垂鼻鼻和单个槽后缘襟翼的组合的自然层流(NLF)翼的高级高升电翼的空气动力学形状设计。本文介绍了NLF翼的空气动力学设计和优化,考虑到两个襟翼装置的相互影响的高升力配置。关于变形下垂鼻(DN),在定义所采用的参数化技术之后,在变形形状和翻盖设置方面采用的参数化技术,外部配置通过能够满足几何约束的空气动力学优化程序和所得的皮肤结构要求获得对变形。通过高保真空气动力学分析进行三维高升力配置的最终性能评估。设计程序适用于配备自然层流动翼的双面地区飞机。变形下垂鼻子与需要皮肤连续性的NLF翼兼容,同时延长改善通常不配备传统的前缘装置的区域飞机的性能的可能性。此外,应用于襟翼的变形技术允许设计完全集成在翼型几何内的跟踪系统,导致没有外部公平的解决方案,因此对飞机没有额外的摩擦拖损。

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