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Instantaneous energy separation in a free jet―Part Ⅱ. Total temperature measurement

机译:自由射流中的瞬时能量分离-第二部分。总温度测量

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The mechanism of energy separation in a free jet and its enhancement by acoustic excitation are investigated using an experimental technique to measure instantaneous velocity and total temperature simultaneously. The measured velocity and total temperature data are analyzed and compared by both time-averaged and spectral methods. By introducing the skewness of the total temperature fluctuation, the characteristics of energy separation can be identified. The results show that the frequencies of dominant total temperature fluctuation coincide with those of velocity fluctuation which represent the passing frequencies of vortices at give locations. This confirms that the mechanism of energy separation is induced by the motion of the coherent vortical structure which generates pressure fluctuation with the flow field. Spectral analysis of the data with acoustic excitation indicate that the enhancement of energy separation by acoustic excitation should result from vortex pairing processes induced by the acoustic excitation.
机译:利用实验技术同时测量瞬时速度和总温度,研究了自由射流中能量分离的机理及其通过声激发的增强。通过时间平均和频谱方法分析并比较了测得的速度和总温度数据。通过引入总温度波动的偏度,可以确定能量分离的特征。结果表明,总温度的主要起伏频率与速度的起伏频率一致,这表示给定位置的涡流通过频率。这证实了能量分离的机制是由相干涡结构的运动引起的,该相干涡结构随流场产生压力波动。带有声激发的数据的频谱分析表明,声激发引起的能量分离增强应归因于声激发引起的涡旋配对过程。

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