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Nonlinear effects on tonal sound in lined ducts

机译:衬管中音调声音的非线性影响

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摘要

Porous sound absorbers are a familiar and supposedly well-understood feature of the noise control palette. As in many other aspects of engineering, however, aerospace applications require a degree of mastery well beyond the common place: sound absorbers must be designed to be effective at high noise levels within strict mass and volume constraints. In the process of fine-tuning sound absorbers for jet aircraft, it was discovered that high incident sound pressure levels cause the performance of lined ducts to diverge from small-signal predictions. The underlying physics was not fully understood prior to the early 1980s, at which point NASA-sponsored research disclosed and quantified the primary mechanism. Further research by others continues building on that foundation down to the present. This paper gives a brief overview of the topic, summarizes one of the research efforts, and adapts its findings for lined duct applications.
机译:多孔吸声器是噪声控制面板中一个熟悉的并且应该被很好理解的功能。但是,与工程学的许多其他方面一样,航空航天应用需要一定程度的掌握才能,远远超出寻常之处:吸声器必须设计成在严格的质量和体积约束下在高噪声水平下有效。在对喷气飞机的吸声器进行微调的过程中,发现高的入射声压级会导致带衬里的管道的性能与小信号预测产生偏差。在1980年代初期之前,还没有完全理解基础物理学,那时,美国国家航空航天局(NASA)资助的研究揭示并量化了主要机理。直到现在,其他人的进一步研究仍在此基础上继续进行。本文对该主题进行了简要概述,总结了其中的一项研究成果,并将其发现用于衬里管道应用。

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