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Acoustics and Aeroperformance of Nozzles With Screwdriver Shaped and Axisymmetric Plugs

机译:螺丝刀形和轴对称塞的喷嘴的声学和气动性能

摘要

The recent experimental and numerical tests of corrugated nozzles have shown some acoustic and thrust benefits relative to traditional round nozzles. For example, a Bluebell nozzle which was obtained by 3D nozzle design incorporating a corrugated cross section nozzle shape with a sinusoidal lip line nozzle edge, can provide an acoustic benefit up to 4dB with about a 1% thrust augmentation. In references, this effect was explained as being the result of the corrugated design producing more efficient mixing of the exhausted jet with ambient air. Based on this argument, the authors have proposed the application of this concept for a centerbody (plug) which can form several vortices downstream from the centerbody. Several different corrugated designs are proposed and described in detail in this paper. The main design is a Screwdriver shaped centerbody or plug (SCR) which was tested experimentally and numerically. The acoustic tests were conducted in the anechoic chamber of the Central AeroHydrodynamics Institute (TsAGI, Moscow) under Civilian Research and Development Foundation (CRDF) grant. These experiments have shown an essential acoustic benefit of about 10-13% with the application of the co-annular nozzles by comparison with the reference round nozzle with the same mass flow rate. However, the expected acoustic benefits with the application of the 4-petal Screwdriver shaped centerbody were not obtained by comparison with the reference axisymmetric centerbody (CON) having the same length and the same cross section areas at the same distance from the nozzle throat. Moreover, for some angles (Theta = 60 deg and 90 deg) noise increase was observed (about 1-3%). These tests will be continued with the goal of obtaining better acoustic results. In particular, acoustic characteristics are hoped to be improved by moving t lie centerbody into the nozzle and using penetrable walls for the SCR and/or for the main nozzle. Preliminary results for such approach are very promising. Aeroperformance effects were analyzed numerically. The nozzle thrust, calculations were based on a full Navier--Stokes equations solver (NSE), and both full and marching Euler codes: CFL3D, CRAFT, and Krayko-Godunov . Grid preparation and its optimization were conducted using GRIDGEN and our own codes. The general conclusion of this numerical analysis is some thrust loss with the application of SCR design (about 1 - 1.5%). But, again, some constructive features of SCR design give some promising perspectives for its application in aviation and domestic industries.
机译:最近对波纹状喷嘴的实验和数值测试表明,相对于传统的圆形喷嘴而言,在声学和推力方面都有好处。例如,通过3D喷嘴设计获得的Bluebell喷嘴结合了波纹横截面喷嘴形状和正弦唇线喷嘴边缘,可在大约1%推力增加的情况下提供高达4dB的声学效果。在参考文献中,这种效果被解释为是波纹设计的结果,该设计使排气流与周围空气更有效地混合。基于这一论点,作者提出了将该概念应用于中心体(塞子),该中心体可以在中心体的下游形成多个涡流。本文提出并详细描述了几种不同的瓦楞纸设计。主要设计是螺丝刀形的中心体或塞子(SCR),已通过实验和数值测试。声学测试是在平民研究与发展基金会(CRDF)的资助下,在中央空气流体力学研究所(TsAGI,莫斯科)的消声室内进行的。这些实验表明,与同质量流量的参考圆形喷嘴相比,使用同环形喷嘴的声学效果大约为10-13%。但是,与具有相同长度和相同横截面面积且距喷管喉距相同的参考轴对称中心体(CON)相比,使用四瓣螺丝刀形中心体时无法获得预期的声学效果。此外,对于某些角度(θ= 60度和90度),观察到噪声增加(大约1-3%)。为了获得更好的声学效果,将继续进行这些测试。特别地,希望通过将中心体移动到喷嘴中并且对SCR和/或主喷嘴使用可穿透的壁来改善声学特性。这种方法的初步结果很有希望。数值分析了空气性能的影响。喷嘴推力的计算基于完整的Navier-Stokes方程求解器(NSE),以及完整的和行进的Euler代码:CFL3D,CRAFT和Krayko-Godunov。使用GRIDGEN和我们自己的代码进行了网格准备及其优化。该数值分析的一般结论是,采用SCR设计时会产生一些推力损失(大约1-1.5%)。但是,SCR设计的一些建设性特征再次为在航空和民用工业中的应用提供了前景广阔的前景。

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