首页> 美国政府科技报告 >Separation of Airborne and Structureborne Noise Radiated by Plates Constructed of Conventional and Composite Materials with Applications for Prediction of Interior Noise Paths in Propeller Driven Aircraft
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Separation of Airborne and Structureborne Noise Radiated by Plates Constructed of Conventional and Composite Materials with Applications for Prediction of Interior Noise Paths in Propeller Driven Aircraft

机译:常规和复合材料制成的板材辐射空气和结构噪声的分离及其在螺旋桨驱动飞机内部噪声路径预测中的应用

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The anticipated application of advanced turboprop propulsion systems and use of composite materials in primary structure is expected to increase the interior noise of future aircraft to unacceptability high levels. The absence of technically and economically feasible noise source-path diagnostic tools has been a primer obstacle in the development of efficient noise control treatments for propeller driven aircraft. A new diagnostic method which permits the separation and prediction of the fully coherent airborne and structureborne components of the sound radiated by plates or thin shells has been developed. Analytical and experimental studies of the proposed method were performed on plates constructed of both conventional and composite materials. The results of the study indicate that the proposed method can be applied to a variety of aircraft materials, could be used in flight, and has fewer encumbrances than the other diagnostic tools currently available. The study has also revealed that the noise radiation of vibrating plates in the low frequency regime due to combined airborne and structureborne inputs possesses a strong synergistic nature. The large influence of the interaction between the airborne and structureborne terms has been hitherto ignored by researchers of aircraft interior noise problems.

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