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Investigation of Flow Conditioners for Compact Jet Engine Simulator Rig Noise Reduction

机译:小型喷气发动机模拟器钻机降噪的流量调节器研究

摘要

The design requirements for two new Compact Jet Engine Simulator (CJES) units for upcoming wind tunnel testing lead to the distinct possibility of rig noise contamination. The acoustic and aerodynamic properties of several flow conditioner devices are investigated over a range of operating conditions relevant to the CJES units to mitigate the risk of rig noise. An impinging jet broadband noise source is placed in the upstream plenum of the test facility permitting measurements of not only flow conditioner self-noise, but also noise attenuation characteristics. Several perforated plate and honeycomb samples of high porosity show minimal self-noise but also minimal attenuation capability. Conversely, low porosity perforated plate and sintered wire mesh conditioners exhibit noticeable attenuation but also unacceptable self-noise. One fine wire mesh sample (DP450661) shows minimal selfnoise and reasonable attenuation, particularly when combined in series with a 15.6 percent open area (POA) perforated plate upstream. This configuration is the preferred flow conditioner system for the CJES, providing up to 20 dB of broadband attenuation capability with minimal self-noise.
机译:用于即将进行的风洞测试的两个新的紧凑型喷气发动机模拟器(CJES)单元的设计要求导致了钻机噪声污染的明显可能性。在与CJES单元相关的一系列操作条件下,研究了几种流量调节器设备的声学和空气动力学特性,以降低钻机噪音的风险。一个撞击的喷射宽带噪声源放置在测试设施的上游气室中,不仅可以测量流量调节器的自噪声,还可以测量噪声衰减特性。几个高孔隙率的多孔板和蜂窝样品显示出最小的自噪声,但衰减能力也最小。相反,低孔隙度的多孔板和烧结丝网调节剂表现出明显的衰减,但自噪声却不可接受。一个细金属丝网样品(DP450661)显示出最小的自噪声和合理的衰减,尤其是与上游15.6%的开孔(POA)穿孔板串联使用时。此配置是CJES的首选流量调节器系统,可提供高达20 dB的宽带衰减能力,并具有最小的自噪声。

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