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Saturation and the limit of jet mixing enhancement by single frequency plane wave excitation: Experiment and theory

机译:单频平面波激发的饱和度和混合射流增强的极限:实验和理论

摘要

The limitations of single frequency plane wave excitation in mixing enhancement are investigated for a circular jet. Measurements made in an 8.8 cm diameter jet are compared with a theoretical model. The measurements are made to quantify mixing at excitation amplitudes up to 2 percent of the jet exit velocity. The initial boundary layer state, the exit mean and fluctuating velocity profiles and spectra are documented for all cases considered. The amplitude of the fundamental wave is recorded along the jet axis for various levels of excitation. As the amplitude of excitation is increased the jet spreading rate is increased, but beyond a saturation amplitude further increases have no effect on the spreading. The experimental results are compared with theoretical estimates. In the theory the flow is split into the mean flow, large scale motions, and fine scale turbulence. Shape assumptions for the mean flow, and fine scale turbulence along with the shape for the large scale motions obtained from a linear stability theory provide the closure. The experimental results compare reasonably well with predictions.
机译:研究了单频率平面波激发在混合增强中的局限性。将在8.8厘米直径的喷嘴中进行的测量与理论模型进行比较。进行测量以量化在高达射流出口速度2%的激发振幅下的混合。对于所有考虑的情况,都记录了初始边界层状态,出口均值以及波动速度分布图和光谱。沿射流轴记录基波的振幅,以进行各种激发。随着激发幅度的增加,射流扩展速率增加,但是超过饱和幅度则进一步增加对扩展没有影响。将实验结果与理论估计值进行比较。在理论上,流量分为平均流量,大尺度运动和小尺度湍流。从线性稳定性理论获得的平均流量的形状假设,精细尺度的湍流以及大规模运动的形状都提供了封闭性。实验结果与预测结果相当吻合。

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