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Airframe noise modeling and prediction

机译:机身噪声建模与预测

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With the installation on the most recent aircraft of large engines with a bypass ratio of 10-12, the engine noise contribution to the overall aircraft noise was reduced, and airframe noise has now become one of the most important noise sources during the approach phase. The paper presents a review of airframe noise analytical modeling and prediction. Indeed, aircraft manufacturers need prediction tools for rapid assessment of noise exposure around airports, standards certification noise levels as defined by the International Civil Aviation Organisation and optimized operational procedures at various stage of aircraft design. At present, this kind of noise model can only be based on analytical or semi-empirical modeling. For both slats, flaps and landing gears, main noise mechanisms are presented, as well as the associated noise models used at Airbus for airframe noise prediction. These models were validated with specific noise flight tests on various Airbus aircraft dedicated specifically to airframe noise measurements. Validation cases are presented at the end of the paper for three examples.
机译:在最新型的大型飞机上安装旁路比为10-12的大型发动机后,发动机噪声对飞机总体噪声的贡献降低了,机身噪声现已成为进近阶段最重要的噪声源之一。本文介绍了机体噪声分析模型和预测。实际上,飞机制造商需要预测工具来快速评估机场周围的噪声暴露,国际民航组织定义的标准认证噪声水平以及在飞机设计各个阶段的优化操作程序。目前,这种噪声模型只能基于分析或半经验建模。对于板条,襟翼和起落架,都提出了主要的噪声机制,以及在空中客车公司用于机身噪声预测的相关噪声模型。这些模型已通过在各种专门用于机身噪声测量的空中客车飞机上进行的特定噪声飞行测试进行了验证。验证案例在本文末尾给出了三个示例。

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