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首页> 外文期刊>Journal of the American Helicopter Society >Adjoint-Based Aeroacoustic Design-Optimization of Flexible Rotors in Forward Flight
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Adjoint-Based Aeroacoustic Design-Optimization of Flexible Rotors in Forward Flight

机译:基于伴随的航空声学设计-前向挠性旋翼的优化

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This paper presents the development and application of a time-dependent adjoint-based method for aeroacoustic design optimization of flexible helicopter rotors in forward flight. The rotor noise signature at a far-field observer is computed with the hybrid aeroacoustic approach. A near-body coupled computational fluid dynamics/computational structural dynamics solver provides flow and geometry data to a Ffowcs Williams-Hawkings acoustic module that propagates the acoustic waves to a far-field observer. Forward and adjoint sensitivity formulations are derived that correspond to analogues of the multidisciplinary flexible aeroacoustic analysis problem. The newly implemented aeroacoustic capability is first verified to effectively perform forward flight noise prediction by comparison with the PSU-WOPWOP acoustic tool. Upon successful validation, a gradient-based optimization method is used to minimize the required torque of the flexible HART-II rotor in trimmed forward flight while reducing the acoustic signature at a far-field observer by changing the shape of the blades. The adjoint formulation developed in this work is used to efficiently compute the sensitivity required by the optimization algorithm.
机译:本文提出了一种基于时变的基于伴随的方法,用于柔性直升机旋翼向前飞行的气动声学优化设计方法的开发和应用。远场观察者的转子噪声特征是通过混合气动声学方法计算的。近体耦合计算流体动力学/计算结构动力学求解器将流量和几何数据提供给Ffowcs Williams-Hawkings声学模块,该模块将声波传播到远场观察者。推导了对应于多学科灵活航空声学分析问题类似物的前向灵敏度和伴随灵敏度公式。通过与PSU-WOPWOP声学工具进行比较,首先验证了新实现的航空声学功能,可以有效地执行前向飞行噪声预测。在成功验证后,将使用基于梯度的优化方法来最小化柔性HART-II转子在修剪的前向飞行中所需的扭矩,同时通过更改叶片的形状来减少远场观察者的声学信号。在这项工作中开发的伴随公式用于有效地计算优化算法所需的灵敏度。

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