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Preliminary Design of Hydraulic and Pneumatic System Architectures for a Morphing Flight Control Structure

机译:变形飞行控制结构液压和气动系统架构的初步设计

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Bionics in aeronautics has the potential to increase the performance and efficiency of aircraft significantly. Inspired by the wings of birds, morphing wing structures have been extensively investigated over the last decades. The continuous adaption of the wings over a large scale of the flight envelope enables an optimization of the aerodynamic characteristics and, this way, a reduction of the fuel consumption. Additionally, those structures could support or replace traditional flight control surfaces. Depending on the morphing technology, different systems may be suitable to actuate the morphing structure. An early inclusion of the system architecture into the development of the morphing technology enables designing an optimal system in compliance with all requirements. Therefore, this paper discusses the conceptual design of system architectures for a novel morphing wing structure that is used for flight control. The benefits of morphing structures for aircraft applications are shown and the functionality of the used morphing structure is introduced. The morphing structure was designed to be actuated by fluids and is compatible with different gases and liquids. Since the fluid has a significant effect on the system architecture, characteristics of hydraulic and pneumatic systems were examined. Based on the requirements of the morphing structure, different system architectures were developed. Following, hydraulic and pneumatic architectures were selected for further investigations. Sizing functions for all main components, such as hydraulic pumps and electric motors, are presented. The preliminary design of the pneumatic system was additionally supported by a dynamic simulation. Finally, an evaluation of the selected architectures was conducted.
机译:航空公司的仿生学有可能显着提高飞机的性能和效率。灵感来自鸟类的翅膀,在过去几十年中已经广泛调查了变形翼结构。在大规模飞行包络上的翼的连续适应能够优化空气动力学特性,并以这种方式,降低燃料消耗。此外,这些结构可以支持或取代传统的飞行控制表面。根据变形技术,不同的系统可能适合致动变形结构。早期包含系统架构进入变形技术的开发,使得能够符合所有要求的最佳系统。因此,本文讨论了用于飞行控制的新型变形机翼结构的系统架构的概念设计。示出了飞机应用的变形结构的好处,并介绍了使用的变形结构的功能。变形结构被设计为由流体致动并且与不同的气体和液体相容。由于流体对系统架构具有显着影响,因此检查了液压和气动系统的特性。根据变形结构的要求,开发了不同的系统架构。以下,选择液压和气动架构进行进一步调查。提出了所有主要部件的尺寸,例如液压泵和电动机。通过动态模拟还支持气动系统的初步设计。最后,进行了对所选架构的评估。

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