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Integration of Propulsion-Airframe-Aeroacoustic Technologies and Design Concepts for a Quiet Blended-Wing-Body Transport

机译:推进-机体-飞机声学技术与安静的混合翼机体运输设计概念的集成

摘要

This paper summarizes the results of studies undertaken to investigate revolutionary propulsion-airframe configurations that have the potential to achieve significant noise reductions over present-day commercial transport aircraft. Using a 300 passenger Blended-Wing-Body (BWB) as a baseline, several alternative low-noise propulsion-airframe-aeroacoustic (PAA) technologies and design concepts were investigated both for their potential to reduce the overall BWB noise levels, and for their impact on the weight, performance, and cost of the vehicle. Two evaluation frameworks were implemented for the assessments. The first was a Multi-Attribute Decision Making (MADM) process that used a Pugh Evaluation Matrix coupled with the Technique for Order Preference by Similarity to Ideal Solution (TOPSIS). This process provided a qualitative evaluation of the PAA technologies and design concepts and ranked them based on how well they satisfied chosen design requirements. From the results of the evaluation, it was observed that almost all of the PAA concepts gave the BWB a noise benefit, but degraded its performance. The second evaluation framework involved both deterministic and probabilistic systems analyses that were performed on a down-selected number of BWB propulsion configurations incorporating the PAA technologies and design concepts. These configurations included embedded engines with Boundary Layer Ingesting Inlets, Distributed Exhaust Nozzles installed on podded engines, a High Aspect Ratio Rectangular Nozzle, Distributed Propulsion, and a fixed and retractable aft airframe extension. The systems analyses focused on the BWB performance impacts of each concept using the mission range as a measure of merit. Noise effects were also investigated when enough information was available for a tractable analysis. Some tentative conclusions were drawn from the results. One was that the Boundary Layer Ingesting Inlets provided improvements to the BWB's mission range, by increasing the propulsive efficiency at cruise, and therefore offered a means to offset performance penalties imposed by some of the advanced PAA configurations. It was also found that the podded Distributed Exhaust Nozzle configuration imposed high penalties on the mission range and the need for substantial synergistic performance enhancements from an advanced integration scheme was identified. The High Aspect Ratio Nozzle showed inconclusive noise results and posed significant integration difficulties. Distributed Propulsion, in general, imposed performance penalties but may offer some promise for noise reduction from jet-to-jet shielding effects. Finally, a retractable aft airframe extension provided excellent noise reduction for a modest decrease in range.
机译:本文总结了为研究具有革命性意义的推进式飞机机身配置而进行的研究的结果,这些配置有可能在当今的商用运输飞机上实现显着的降噪。以300名乘客的混合机翼机体(BWB)为基准,研究了几种替代的低噪声推进器机身空气声(PAA)技术和设计概念,它们在降低整体BWB噪声水平方面的潜力以及它们的对车辆的重量,性能和成本的影响。为评估实施了两个评估框架。第一个是多属性决策(MADM)过程,该过程使用了Pugh评估矩阵以及与理想解决方案相似的订单偏好技术(TOPSIS)。此过程对PAA技术和设计概念进行了定性评估,并根据它们对所选设计要求的满意程度对其进行了排名。从评估结果可以看出,几乎所有的PAA概念都给BWB带来了噪音,但降低了其性能。第二个评估框架涉及确定性和概率性系统分析,这些系统分析是在不多选择的BWB推进配置中结合了PAA技术和设计概念进行的。这些配置包括具有边界层进气口的嵌入式发动机,安装在吊舱发动机上的分布式排气喷嘴,高纵横比矩形喷嘴,分布式推进器以及固定和可伸缩的后机身扩展件。系统分析将任务范围作为绩效指标,重点放在每个概念对BWB性能的影响上。当有足够的信息可用于易于分析时,还对噪声影响进行了调查。从结果中得出一些初步结论。一个是,边界层进风口通过提高巡航时的推进效率,改善了BWB的任务范围,因此提供了一种抵消某些高级PAA配置所施加的性能损失的方法。还发现,荚状的分布式排气喷嘴配置对任务范围施加了很高的惩罚,并且确定了需要先进的集成方案来显着提高协同性能的需求。高宽高比喷嘴显示不确定的噪声结果,并带来很大的集成困难。总的来说,分布式推进会对性能造成一定的影响,但可能会为减少喷气对喷气的屏蔽效应带来噪音。最后,可伸缩的尾部机体延伸件可实现出色的降噪效果,并适度减小航程。

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