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Report on Recent Upgrades to the Curved Duct Test Rig at NASA Langley Research Center

机译:NASA兰利研究中心最近对弯管试验台进行升级的报告

摘要

The Curved Duct Test Rig (CDTR) is an experimental facility that is designed to assess the acoustic and aerodynamic performance of aircraft engine nacelle liners in close to full scale. The test section is between 25% and 100% of the scale of aft bypass ducts of aircraft engines ranging in size from business jet to large commercial passenger jet. The CDTR has been relocated and now shares space with the Grazing Flow Impedance Tube in the Liner Technology Facility at NASA Langley Research Center. As a result of the relocation, research air is supplied to the CDTR from a 50,000 cfm centrifugal fan. This new air supply enables testing of acoustic liner samples at up to Mach 0.500. This paper documents experiments and analysis on a baseline liner sample, which the authors had analyzed and reported on prior to the move to the new facility. In the present paper, the experimental results are compared to those obtained previously in order to ensure continuity of the experimental capability. Experiments that take advantage of the facility s expanded capabilities are also reported. Data analysis features that enhance understanding of the physical properties of liner performance are introduced. The liner attenuation is shown to depend on the mode that is incident on the liner test section. The relevant parameter is the mode cut-on ratio, which determines the angle at which the sound wave is incident on the liner surface. The scattering of energy from the incident mode into higher order, less attenuated modes is demonstrated. The configuration of the acoustic treatment, in this case lined on one surface and hard wall on the opposite surface, is shown to affect the mode energy redistribution.
机译:弯曲风道试验台(CDTR)是一种实验设施,旨在评估飞机发动机机舱衬套的声学和空气动力性能接近满刻度。测试区域为飞机发动机后部旁通管规模的25%至100%,范围从公务机到大型民用客机。 CDTR已搬迁,现在与NASA兰利研究中心内衬技术设施中的掠流阻抗管共享空间。搬迁的结果是,研究空气从一个50,000 cfm的离心风机提供给CDTR。这种新的空气供应可以测试高达0.500马赫的声学衬里样品。本文记录了对基线衬管样品的实验和分析,在搬迁到新工厂之前,作者已经对其进行了分析和报告。在本文中,将实验结果与先前获得的结果进行比较,以确保实验能力的连续性。还报道了利用设施扩展功能的实验。引入了可增强对衬管性能的物理特性的理解的数据分析功能。所示的衬管衰减取决于入射到衬管测试部分的模式。相关参数是模式导通率,它确定声波入射到衬管表面的角度。证明了能量从入射模式到更高阶,衰减较小的模式的散射。声学处理的配置(在这种情况下,衬在一个表面上,而在相对表面上是硬壁)显示为影响模式能量的重新分配。

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