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Turbulent Flow Field Measurements of Separate Flow Round and Chevron Nozzles with Pylon Interaction Using Particle Image Velocimetry

机译:利用粒子图像测速仪测量带有主塔相互作用的分离流动圆形和人字形喷嘴的湍流场

摘要

Particle Image Velocimetry (PIV) measurements for six separate flow bypass ratio five nozzle configurations have recently been obtained in the NASA Langley Jet Noise Laboratory. The six configurations include a baseline configuration with round core and fan nozzles, an eight-chevron core nozzle at two different clocking positions, and repeats of these configurations with a pylon included. One run condition representative of takeoff was investigated for all cases with the core nozzle pressure ratio set to 1.56 and the total temperature to 828 K. The fan nozzle pressure ratio was set to 1.75 with a total temperature of 350 K, and the freestream Mach number was M = 0.28. The unsteady flow field measurements provided by PIV complement recent computational, acoustic, and mean flow field studies performed at NASA Langley for the same nozzle configurations and run condition. The PIV baseline configuration measurements show good agreement with mean flow field data as well as existing PIV data acquired at NASA Glenn. Nonetheless, the baseline configuration turbulence profile indicates an asymmetric flow field, despite careful attention to concentricity. The presence of the pylon increases the upper shear layer turbulence levels while simultaneously decreasing the turbulence levels in the lower shear layer. In addition, a slightly shorter potential core length is observed with the addition of the pylon. Finally, comparisons of computational results with PIV measurements are favorable for mean flow, slightly over-predicted for Reynolds shear stress, and underpredicted for Reynolds normal stress components.
机译:最近在NASA兰利喷气噪声实验室获得了六个独立的流量旁路比和五个喷嘴配置的粒子图像测速(PIV)测量。这六种配置包括带有圆形芯和风扇喷嘴的基线配置,位于两个不同时钟位置的八字形芯喷嘴,以及包含塔架的这些配置的重复。在所有情况下,将芯喷嘴压力比设置为1.56,总温度设置为828 K,对代表起飞的一种运行条件进行了研究。风扇喷嘴压力比设置为1.75,总温度为350 K,自由流马赫数是M = 0.28。 PIV提供的非稳态流场测量值是对NASA Langley在相同喷嘴配置和运行条件下进行的最新计算,声学和平均流场研究的补充。 PIV基线配置测量结果与平均流场数据以及在NASA Glenn获得的现有PIV数据显示出良好的一致性。尽管如此,尽管特别注意同心度,但基线配置湍流曲线仍显示出不对称的流场。塔的存在增加了上剪切层的湍流水平,同时降低了下剪切层的湍流水平。另外,添加塔架后,观察到的潜在核心长度略短。最后,将计算结果与PIV测量结果进行比较有利于平均流量,对于雷诺剪应力略有高估,而对于雷诺法向应力分量则低估了。

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