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Wavelet analysis on particle dynamics in a horizontal air–solid two-phase pipe flow at low air velocity

机译:小风速水平气固两相流中颗粒动力学的小波分析

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High-speed particle image velocimetry (PIV) is first used to measure two components of the fluctuating particle velocities for different particle sizes and solid mass flow rates at low air velocity in a horizontal pipe. Then, the continuous wavelet transform and orthogonal wavelet multi-resolution techniques are employed to analyze and decompose the fluctuating particle velocities to provide both quantitative and qualitative information on the particle fluctuation velocity of various frequencies. It is revealed that the fluctuating energy of axial particle velocity is mainly contributed from the wavelet components of low frequency, accounting for about 84%, near the bottom part of the pipe cross-section. However, the contribution to the fluctuating energy of vertical particle velocity accounts for about 82% from the wavelet components of high frequency. The auto-correlation analysis suggests a quasi-periodical large-scale axial particle fluctuating velocity. On the other hand, the spatial correlation analysis indicates that the low-frequency components of the axial particle velocity exhibit a large correlation near the bottom part of the pipe cross-section. From the probability density function (PDF) distribution, it is found that the low-frequency components of the axial particle velocity exhibit larger fluctuation, and this fluctuation reduces as the frequencies increase near the bottom part of the pipe cross-section. Near the top part of the pipe cross-section, however, a larger fluctuating axial particle velocity appears in the high-frequency range.
机译:高速颗粒图像测速仪(PIV)首先用于在水平管道中以低风速测量不同粒径和固体质量流速下波动颗粒速度的两个分量。然后,采用连续小波变换和正交小波多分辨率技术对波动的粒子速度进行分析和分解,以提供关于各种频率的粒子波动速度的定量和定性信息。结果表明,轴向粒子速度的波动能量主要来自低频小波分量,约占管道横截面底部的84%。但是,垂直的粒子速度对波动能量的贡献约占高频小波分量的82%。自相关分析表明准周期性大尺度轴向粒子脉动速度。另一方面,空间相关性分析表明轴向粒子速度的低频分量在管道横截面的底部附近表现出较大的相关性。从概率密度函数(PDF)分布,发现轴向粒子速度的低频分量表现出较大的波动,并且该波动随着频率在管道横截面底部附近增加而减小。但是,在管道横截面的顶部附近,在高频范围内会出现较大的轴向波动速度。

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