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Tiltrotor CFD Part II - aerodynamic optimisation of tiltrotor blades

机译:Tiltrotor CFD Part II-倾斜转子叶片的空气动力学优化

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摘要

This paper presents aerodynamic optimisation of tiltrotor blades with high-fidelity computational fluid dynamics. The employed optimisation framework is based on a quasi-Newton method, and the required high-fidelity flow gradients were computed using a discrete adjoint solver. Single-point optimisations were first performed to highlight the contrasting requirements of the helicopter and aeroplane flight regimes. It is then shown how a trade-off blade design can be obtained using a multi-point optimisation strategy. The parametrisation of the blade shape allowed the twist and chord distributions to be modified and a swept tip to be introduced. The work shows how these main blade shape parameters influence the optimal performance of the tiltrotor in helicopter and aeroplane modes, and how an optimised blade shape can increase the overall tiltrotor performance. Moreover, in all the presented cases, the accuracy of the adjoint gradients resulted in a small number of flow evaluations for finding the optimal solution, thus indicating gradient-based optimisation as a viable tool for modern tiltrotor design.
机译:本文提出了具有高保真计算流体动力学的倾斜转子叶片的空气动力学优化。所采用的优化框架基于拟牛顿法,并且使用离散的伴随求解器计算了所需的高保真流量梯度。首先进行单点优化,以突出直升机和飞机飞行体制的不同要求。然后显示了如何使用多点优化策略来获得折衷的刀片设计。叶片形状的参数化可以修改扭曲和弦的分布并引入后掠尖端。这项工作表明了这些主要叶片形状参数如何在直升机和飞机模式下影响倾转旋翼的最佳性能,以及优化的叶片形状如何可以提高整体倾转旋翼的性能。此外,在所有提出的情况下,伴随梯度的准确性导致为评估最佳解决方案而进行的少量流量评估,因此表明基于梯度的优化是现代倾斜转子设计的可行工具。

著录项

  • 来源
    《The Aeronautical Journal》 |2017年第1239期|611-636|共26页
  • 作者单位

    Univ Glasgow, Sch Engn, CFD Lab, James Watt South Bldg, Glasgow, Lanark, Scotland;

    Univ Glasgow, Sch Engn, CFD Lab, James Watt South Bldg, Glasgow, Lanark, Scotland;

    Univ Glasgow, Sch Engn, CFD Lab, James Watt South Bldg, Glasgow, Lanark, Scotland;

    Leonardo Helicopters, Aerodynam Dept, Yeovil, England;

    Leonardo Helicopters, Aerodynam Dept, Yeovil, England;

    Leonardo Helicopters, Aerodynam Dept, Yeovil, England;

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  • 正文语种 eng
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