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首页> 外文期刊>Acta astronautica >Investigation on flow and mixing characteristics of supersonic mixing layer induced by forced vibration of cantilever
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Investigation on flow and mixing characteristics of supersonic mixing layer induced by forced vibration of cantilever

机译:悬臂受迫振动引起的超声速混合层的流动和混合特性研究

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The mixing process has been an important issue for the design of supersonic combustion ramjet engine, and the mixing efficiency plays a crucial role in the improvement of the combustion efficiency. In the present study, nanoparticle-based planar laser scattering (NPLS), particle image velocimetry (Ply) and large eddy simulation (LES) are employed to investigate the flow and mixing characteristics of supersonic mixing layer under different forced vibration conditions. The indexes of fractal dimension, mixing layer thickness, momentum thickness and scalar mixing level are applied to describe the mixing process. Results show that different from the development and evolution of supersonic mixing layer without vibration, the flow under forced vibration is more likely to present the characteristics of three-dimensionality. The laminar flow region of mixing layer under forced vibration is greatly shortened and the scales of rolled up Kelvin-Helmholtz vortices become larger, which promote the mixing process remarkably. The fractal dimension distribution reveals that comparing with the flow without vibration, the turbulent fluctuation of supersonic mixing layer under forced vibration is more intense. Besides, the distribution of mixing layer thickness, momentum thickness and scalar mixing level are strongly influenced by forced vibration. Especially, when the forcing frequency is 4000 Hz, the mixing layer thickness and momentum thickness are 0.0391 m and 0.0222 m at the far field of 0.16 m, 83% and 131% higher than that without vibration at the same position, respectively. (C) 2015 IAA. Published by Elsevier Ltd. All rights reserved.
机译:混合过程一直是超音速冲压冲压发动机设计的重要课题,混合效率对提高燃烧效率起着至关重要的作用。在本研究中,基于纳米粒子的平面激光散射(NPLS),粒子图像测速(Ply)和大涡模拟(LES)被用来研究超声混合层在不同强迫振动条件下的流动和混合特性。利用分形维数,混合层厚度,动量厚度和标量混合指数来描述混合过程。结果表明,与没有振动的超音速混合层的发展和演化不同,在强迫振动下的流动更有可能呈现三维特征。在强迫振动下,混合层的层流区域大大缩短,开尔文-亥姆霍兹涡旋卷起的规模变大,极大地促进了混合过程。分形维数分布表明,与没有振动的流动相比,超音速混合层在强迫振动下的湍流波动更大。此外,混合层厚度,动量厚度和标量混合水平的分布受到强制振动的强烈影响。特别是,当强制频率为4000 Hz时,在0.16 m的远场下,混合层厚度和动量厚度分别为0.0391 m和0.0222 m,分别比在相同位置无振动的情况下高83%和131%。 (C)2015年IAA。由Elsevier Ltd.出版。保留所有权利。

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