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VELOCITY AND PRESSURE MEASUREMENTS OF A MACH 0.85 AXISYMMETRIC JET

机译:马赫0.85轴对称喷射的速度和压力测量

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The turbulent properties of a heated and unheated Mach 0.85 axisymmetric jet have been studied. The velocity field of the jet at static temperature ratios of 0.87 and 2.34, was measured in the streamwise radial plane using Particle Image Velocimetry. The velocity measurements were acquired between streamwise locations of 3D and 8D downstream from the nozzle exit. Proper Orthogonal Decomposition (POD) was applied to the velocity field using snapshot POD. The POD analysis showed that the eigenvalues of the heated jet had higher fraction of energy. The POD eigenfunctions or modes of the streamwise velocity of both jets were similar, while the POD modes of the radial velocity of both jets were very different. The POD modes of radial velocity of the unheated jet were symmetrical about the jet centerline, and the modes of the heated jet seemed to merge at the centerline. The near field pressure measurements were acquired just outside the shearlayer. A linear array of five pressure transducers was placed at 7° to the nozzle lipline, so that it would be parallel to the shear layer. The transducers in the array were spaced one diameter apart. Pressure measurements were acquired at streamwise locations between 4.25D and 10.25D from the nozzle exit. Based on the slope of the pressure spectra, the propagating events in the two jets were identified. The POD was also applied to the pressure data, and the POD modes of the two jets were compared. The peak in the amplitude of the POD mode of the heated jet was at a higher frequency. With increasing mode numbers, the peak in the POD mode of both jets shifted to a downstream location.
机译:研究了加热和未加热马赫0.85轴对称喷射的湍流性质。使用颗粒图像速度,在流动径向平面中测量静态温度比0.87和2.34的静态温度比的速度场。在从喷嘴出口的3D和8D下游的流动位置之间获取速度测量。使用快照吊舱将适当的正交分解(POD)应用于速度场。 POD分析表明,加热射流的特征值具有更高的能量。两个喷射器的流动速度或两种喷射的速度速度的模式相似,而两个喷射器的径向速度的荚模式非常不同。未加热射流的径向速度的POD模式对称围绕喷射中心线进行对称,并且加热喷射的模式似乎在中心线处合并。在Shearlayer之外获得近场压力测量。将五个压力传感器的线性阵列放置在7°的喷嘴Lipline上,使其平行于剪切层。阵列中的换能器间隔开一个直径。在从喷嘴出口的4.25d和10.25d之间的流动位置获得压力测量。基于压力光谱的斜率,鉴定了两个喷射器中的传播事件。豆荚也被应用于压力数据,并比较两个喷射器的豆荚模式。加热射流的POD模式的幅度处于较高的频率。随着模式编号的增加,两个喷射器的POD模式中的峰值移至下游位置。

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