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Structural design process and subsequent flight mechanical evaluation in preliminary aircraft design: demonstrated on passenger ride comfort assessment

机译:初步飞机设计中的结构设计过程和随后的飞行机械评估:乘客乘坐舒适评估证明

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New fuel-efficient aircraft designs have high aspect ratio wings. Consequently, those aircraft are more flexible. Additionally, load alleviation functions are implemented to reduce the structural loads, which results in further reductions of the structural stiffness. At the same time, the structural design impacts other disciplines in preliminary aircraft design, especially flight mechanics. For example, it is important to know how at that design stage such flexible aircraft with load alleviation affect passenger ride comfort in turbulent flight. For an efficient design process, it is essential to answer such questions with accurate multi-disciplinary tools and methods as early as possible to minimize development risk and avoid costly and time-consuming redesign loops. Current available tools and methods are not accurate enough for this task. To address this issue, the DLR MONA based design and the TUB flight mechanical assessment tool MITRA are linked to investigate the impact of the structural design on specific flight mechanical assessments such as passenger ride comfort. This is particularly interesting since the implemented load alleviation functions are designed to reduce loads, and not explicitly to improve passenger ride comfort. By conducting this assessment for a particular aircraft configuration, more insight into passenger ride comfort and the key contributors can be gained during preliminary design. This paper describes the combined toolchain and its application on a generic long-range reference aircraft to investigate the effects of load alleviation functions on passenger ride comfort and discusses the results.
机译:新的燃油效率飞机设计具有高纵横比翅膀。因此,这些飞机更灵活。另外,实施负载缓解功能以减少结构载荷,这导致结构刚度的进一步减少。与此同时,结构设计会影响初步飞机设计中的其他学科,特别是飞行机械。例如,重要的是要知道如何在这种设计阶段这种具有负荷缓解的柔性飞机如何影响乘客乘坐速度在湍流飞行中。对于有效的设计过程,尽早与准确的多学科工具和方法回答这些问题,以尽量减少开发风险,避免昂贵且耗时的重新设计环路。当前可用的工具和方法对于此任务不够准确。为了解决这个问题,基于DLR Mona的设计和浴缸飞行机械评估工具Mitra与乘客乘坐舒适度等特定飞行机械评估的影响探讨了结构设计的影响。这是特别有趣的,因为实现的负载缓解功能旨在减少负载,而不是明确以提高乘客乘坐舒适度。通过对特定飞机配置进行这一评估,可以在初步设计期间获得更多对乘客舒适和关键贡献者的洞察力。本文介绍了合并的工具链及其在通用远程参考飞机上的应用,以研究负载缓解功能对乘客乘坐舒适度的影响,并讨论结果。

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