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首页> 外文期刊>Journal of the American Helicopter Society >An Integrated Three-Dimensional Aeromechanics Analysis of the NASA Tilt Rotor Aeroacoustic Model
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An Integrated Three-Dimensional Aeromechanics Analysis of the NASA Tilt Rotor Aeroacoustic Model

机译:NASA俯仰转子空气声学模型的综合三维空气力学分析

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This paper presents the first use of integrated three-dimensional (3D) aeromechanics modeling, defined as a coupling of 3D solid finite element analysis structural dynamics with 3D computational fluid dynamics (CFD), to study a real rotor, the NASA Tilt Rotor Aeroacoustic Model (TRAM) proprotor. The goal is to demonstrate the development of this new methodology and assess its capabilities. The X3D structural dynamics solver is coupled to Helios for this analysis, which is the first coupled CFD/computational structural dynamics analysis of a proprotor in edgewise flight. Airloads predictions show that trends are well captured, though there are errors in the magnitude of vortex interaction peaks. Blade loads predictions capture measured trends at low thrust, but at high thrust 3/rev flap and lag bending is not captured. These discrepancies are attributed to a lack of accurate composite material properties. Detailed 3D stress fields are studied at several azimuths, revealing complex localized stress patterns.
机译:本文介绍了首次使用集成三维(3D)航空力学模型(定义为将3D固体有限元分析结构动力学与3D计算流体动力学(CFD)耦合)来研究实际转子,NASA倾斜转子航空声学模型(TRAM)proprotor。目的是演示这种新方法的发展并评估其功能。 X3D结构动力学求解器与Helios耦合以进行此分析,这是首次在侧面飞行中对proprotor进行CFD /计算结构动力学分析。空载预测表明趋势得到了很好的捕获,尽管涡旋相互作用峰的大小存在误差。叶片载荷预测可捕获低推力下的测量趋势,但在高推力3 / rev襟翼下不会捕获滞后弯曲。这些差异归因于缺乏精确的复合材料特性。在几个方位角研究了详细的3D应力场,揭示了复杂的局部应力模式。

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