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Empennage Noise Shielding Benefits for an Open Rotor Transport

机译:敞开式转子运输的尾气屏蔽效果

摘要

NASA sets aggressive, strategic, civil aircraft performance and environmental goals and develops ambitious technology roadmaps to guide its research efforts. NASA has adopted a phased approach for community noise reduction of civil aircraft. While the goal of the near-term first phase focuses primarily on source noise reduction, the goal of the second phase relies heavily on presumed architecture changes of future aircraft. The departure from conventional airplane configurations to designs that incorporate some type of propulsion noise shielding is anticipated to provide an additional 10 cumulative EPNdB of noise reduction. One candidate propulsion system for these advanced aircraft is the open rotor engine. In some planned applications, twin open rotor propulsors are located on the aft fuselage, with the vehicle s empennage shielding some of their acoustic signature from observers on the ground. This study focuses on predicting the noise certification benefits of a notional open rotor aircraft with tail structures shielding a portion of the rotor noise. The measured noise of an open rotor test article--collected with and without an acoustic barrier wall--is the basis of the prediction. The results are used to help validate NASA s reliance on acoustic shielding to achieve the second phase of its community noise reduction goals. The noise measurements are also compared to a popular empirical diffraction correlation often used at NASA to predict acoustic shielding.
机译:NASA制定了具有挑战性的战略民用飞机性能和环境目标,并制定了雄心勃勃的技术路线图来指导其研究工作。美国国家航空航天局(NASA)采用了分阶段的方法来降低民用飞机的社区噪音。虽然近期第一阶段的目标主要集中在降低源噪声上,但是第二阶段的目标在很大程度上取决于未来飞机的假定架构变化。从传统的飞机配置到结合了某种类型的推进噪声屏蔽的设计的变化预计会提供额外的10累积EPNdB降噪。这些先进飞机的一种候选推进系统是开放式旋翼发动机。在某些计划的应用中,双开式转子推进器位于机身后部,车辆的尾翼将其一些声学特征与地面观察者隔离开来。这项研究的重点是预测具有尾部结构的部分敞开式机头的概念性开放旋翼飞机的噪声认证益处。带有或不带有隔音墙的敞开式转子测试物品的测量噪声是预测的基础。结果可帮助验证NASA对隔音的依赖,以实现其社区降噪目标的第二阶段。噪声测量值也与NASA经常用来预测声屏蔽的流行经验衍射相关性进行了比较。

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    Berton Jeffrey J.;

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  • 年度 2012
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