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An Integrated Approach for the Multidisciplinary Design of Optimum Rotorcraft Operations

机译:旋翼航空器最佳操作的多学科设计的综合方法

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摘要

This work focuses on the development and application of a generic methodology targeting the design of optimum rotorcraft operations in terms of fuel burn, gaseous emissions, and ground noise impact. An integrated tool capable of estimating the performance and emitted noise of any defined rotorcraft configuration within any designated mission has been deployed. A comprehensive and cost-effective optimization strategy has been structured. The methodology has been applied to two generic, baseline missions representative of current rotorcraft operations. Optimally designed operations for fuel burn, gaseous emissions, and ground.noise impact have been obtained. A comparative evaluation has been waged between the acquired optimum designs. The respective trade-off arising from the incorporation of flight paths optimized for different objectives has been quantified. Pareto front derived models for fuel burn and emitted noise have been structured for each mission. The Pareto models have been subsequently deployed for the design of operations optimized in a multidisciplinary manner. The results have shown that the proposed methodology is promising with regards to achieving simultaneous reduction in fuel burn, gaseous emissions, and ground noise impact for any defined mission. The obtainable reductions are found to be dependent on the designated mission. Finally, the potential to design optimum operations in a multidisciplinary fashion using only a single design criterion is demonstrated.
机译:这项工作专注于针对燃油消耗,气体排放和地面噪声影响方面的最佳旋翼航空器运行设计的通用方法的开发和应用。已经部署了能够估计在任何指定任务内任何已定义旋翼飞机配置的性能和发出的噪声的集成工具。已经制定了全面且具有成本效益的优化策略。该方法已应用于代表当前旋翼航空器运行的两个通用基准任务。获得了针对燃油消耗,气体排放和地面噪声影响的最佳设计操作。在获得的最佳设计之间进行了比较评估。由于纳入了针对不同目标而优化的飞行路线,因此产生了各自的权衡。已为每个任务构建了Pareto前端派生的燃料燃烧和排放噪声模型。 Pareto模型随后被部署用于以多学科方式优化操作的设计。结果表明,对于同时完成任何定义的任务,可同时减少燃料消耗,气体排放和地面噪声的影响,所提出的方法是有希望的。得出的减少量取决于指定的任务。最后,展示了仅使用一个设计标准就可以以多学科方式设计最佳运行的潜力。

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  • 来源
    《Journal of Engineering for Gas Turbines and Power》 |2012年第9期|p.091701.1-091701.10|共10页
  • 作者单位

    Department of Power & Propulsion Cranfield University, Bedfordshire MK43 OAL, UK;

    Department of Power & Propulsion Cranfield University, Bedfordshire MK43 OAL, UK;

    R & D Manager NOESIS Solutions, Gaston Geenslaan, 11, B4, 3001 Leuven, BE;

    National Aerospace Laboratory NLR, Anthony Fokkerweg 2, 1059 CM Amsterdam, NL;

    AgustaWestland, Westland Works,Lysander Road, Yeovil BA20 2YB, UK;

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