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Multi-disciplinary optimization of variable rotor speed and active blade twist rotorcraft: Trade-off between noise and emissions

机译:变量转子速度和主动刀片扭转旋翼飞行的多学科优化:噪音与排放之间的权衡

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The concepts of variable rotor speed and active blade twist are emerging technologies for the next generation of civil rotorcraft. Previous research has focused on the optimum implementation of these technologies for improved fuel economy and environmental impact. Within this work, an integrated approach is deployed to quantify the concurrent reductions in rotor noise and NOx emissions. A relaxation-based free-wake inflow model, coupled with unsteady blade aerodynamics modeling, resolves the flow-field around the main rotor. Aero-acoustic predictions are performed through an acoustic analogy-based formulation. Gaseous emissions are then predicted via stirred-reactor modeling, coupled with zero-dimensional engine performance analysis method. This strategy is incorporated into a multidisciplinary genetic algorithm optimization process based on surrogate modeling. Optimal schedules of combined variable rotor speed and active blade twist controls are derived for a twin-engine light helicopter in descent. The accrued schedules suggest NOx reductions between 6% and 21%, simultaneously with source-noise reductions of the order of 2-8 dB, relative to the non-morphing rotor case. The developed strategy constitutes an enabling methodology for the holistic and multi-disciplinary assessment of morphing helicopter rotor configurations. (c) 2020 Elsevier Masson SAS. All rights reserved.
机译:可变转子速度和主动刀片扭曲的概念是下一代民用旋翼飞行器的新兴技术。以前的研究专注于这些技术的最佳实施,以提高燃油经济性和环境影响。在这项工作中,部署了一种集成方法,以量化转子噪声和NOx排放中的并行减少。基于弛豫的自由唤醒流入模型,加上不稳定的刀片空气动力学建模,解决了主转子周围的流场。通过基于声学类比的配方进行航空声预测。然后通过搅拌反应器建模预测气体排放,与零维发动机性能分析方法相结合。该策略纳入基于代理建模的多学科遗传算法优化过程。用于组合的变量转子速度和有源叶片扭转控制的最佳时间表用于下降的双引擎灯直升机。应计的时间表表明,相对于非变形转子壳,同时具有2-8 dB阶数的源极噪声减少的NOx减少。发达的策略构成了变形直升机转子配置的整体和多学科评估的能力方法。 (c)2020 Elsevier Masson SAS。版权所有。

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