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Flying-hot-film anemometry measurements of the effect of back ground turbulence on a turbulent jet

机译:飞行热薄膜的水平测量后部湍流对湍流喷射的影响

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An experimental study into the effect of background turbulence on the velocity field of a momentum-driven, axisymmetric, turbulent jet is presented. An approximately homoge-neous, isotropic turbulent background with zero mean flow was generated by a Random Jet Array (RJA) in a water tank and is characterized by flying hot-film anemometry. Subsequently, velocity measurements of the jet evolution in quiescent and turbulent backgrounds were also performed using the flying hot-film anemometer. The results show that the background turbulence increases the rate of decay of the jet, which is expected to decrease the entrainment. Furthermore, the axial RMS turbulent velocity increases when external turbulence is present. Comparing the results with the literature and those of similar experiments measured using Acoustic Doppler Velocimetry (ADV), mean velocities are estimated relatively accurately by both techniques, while the ADV overestimates the RMS velocities.
机译:呈现了背景湍流对动量驱动,轴对称,湍流射流的速度场的效果的实验研究。具有零平均流量的大约同性恋的各向同性湍流背景由水箱中的随机喷射阵列(RJA)产生,其特征在于飞行热薄膜风速。随后,还使用飞行热膜风速计进行静态和湍流背景中喷射进化的速度测量。结果表明,背景湍流增加了喷射的衰减速率,这预计将减少夹带。此外,当存在外部湍流时,轴向rms湍流速度增加。将结果与文献的结果和使用声学多普勒测速器测量的类似实验的结果进行比较,通过两种技术估计平均速度,而ARP高估RMS速度。

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