首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part G: Journal of Aerospace Engineering >A multi-body approach for modelling manoeuvring aeroelastic aircraft during preliminary design
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A multi-body approach for modelling manoeuvring aeroelastic aircraft during preliminary design

机译:在初步设计过程中对机动弹性飞机进行建模的多体方法

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During preliminary design, aircraft are described with a limited level of detail, the focus being on rapid investigation of a large number of cases and quickly changing configurations and parameters. Therefore in the majority of cases, dynamic aeroelastic deformations are neglected. In this paper, an approach to modelling aeroelastic aircraft based on multi-body dynamics at the preliminary design stage is presented. The elastic structure is discretized by means of rigid bodies and connected by rotational springs to account for wing bending and rotational stiffness. For the aerodynamics, the strip theory, corrected for the influence of a finite wing, is used. Flight mechanics are included via library elements that describe the degree of freedom between the (inertial) reference system and the moving airframe. The complete model allows a free-flight simulation of the aircraft, including trim and manoeuvres. The evaluation puts special emphasis on flight load calculation. Scenarios include free flight, a pull-up, and investigations of changes in ground loads due to changes in structural elasticity.
机译:在初步设计期间,仅以有限的详细程度描述了飞机,其重点是对大量情况进行快速调查并迅速更改配置和参数。因此,在大多数情况下,动态气动弹性变形被忽略了。本文提出了一种在初步设计阶段基于多体动力学对气动弹性飞机建模的方法。弹性结构通过刚体离散化,并通过旋转弹簧连接以解决机翼弯曲和旋转刚度问题。对于空气动力学,采用了带状理论,并针对有限机翼的影响进行了校正。通过库元素包括飞行力学,该库元素描述了(惯性)参考系统和移动的机体之间的自由度。完整的模型可以对飞机进行自由飞行仿真,包括配平和操纵。该评估特别强调飞行负荷的计算。场景包括自由飞行,引体向上以及对由于结构弹性变化而引起的地面载荷变化的研究。

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