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Large eddy simulation of serration effects on an ultra-high-bypass-ratio engine exhaust jet

机译:超高通道比引擎排气喷射的锯齿效应的大型涡流模拟

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摘要

Serrated jet nozzles are considered to be an efficient and practical passive control approach for jet noise. However, some fundamental mechanisms of serration effects on jet noise are not fully understood, especially in terms of the sound source. In this paper, a high-fidelity simulation framework using large-eddy simulation (LES) is demonstrated to predict near-field turbulence and far-field acoustics from an ultra-high-bypass-ratio engine with round and serrated nozzles. Far-field sound is predicted using Ffowcs Willams–Hawkings (FWH) integration. The results show that the serrated nozzle increases mixing near the nozzle and hence the turbulence decay rate, reducing the turbulence level downstream. The serrations shift the energy from the low frequencies to the high frequencies and decrease overall sound pressure levels by about 3 dB over the low-frequency range. Sound sources are analysed based on fourth-order space–time correlations. There are six major source components (R1111,R2222,R3333,R1313,R1212, andR2323) inside the jet shear layers. The serrations are able to reduce the amplitude of these source terms, causing them to decay rapidly to a level below the round nozzle jet within 2Ddownstream of the nozzle.
机译:锯齿状喷射喷嘴被认为是射流的有效实用的被动控制方法。然而,不完全理解对射流噪声的一些基本机制,特别是在声源方面。在本文中,使用大涡流仿真(LES)的高保真仿真框架,以预测来自超高旁路比发动机与圆形和锯齿状喷嘴的近场湍流和远场声学。使用FFOWCS-Hawkings(FWH)集成来预测远场声音。结果表明,锯齿状喷嘴增加了喷嘴附近的混合,从而增加了湍流衰减率,降低了下游的湍流水平。锯齿能量将能量从低频转移到高频,并在低频范围内将总声压水平降低约3dB。基于四阶空间相关性分析声源。喷射剪切层内部有六个主要源组件(R1111,R2222,R3333,R1212,ANDR2323)。锯齿能够降低这些源术语的幅度,导致它们迅速衰减到喷嘴的2ddownstream的圆形喷嘴射流下方的水平。

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