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Recurrence Quantity Analysis of the Instantaneous Pressure Fluctuation Signals in the Novel Tank with Multi-Horizontal Submerged Jets

机译:多水平淹没式射流新型储罐瞬时压力波动信号的递推量分析

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摘要

The circulating jet tank (CJT) has been an alternative piece of equipment for mixing instead of the bottom-stirring tank, which is widely used in industrial applications. The recurrence plots (RPs) and recurrence quantification analysis (RQA) of pressure fluctuation signals (PFS) in the novel CJT were employed to reflect the chaotic extent of jet mixing. The recurrence rate, determinism and averaged diagonal line length of PFS were evaluated at different Reynolds numbers, radial positions and axial positions. The profiles of recurrence rate, determinism and averaged diagonal line length had similar tendency with the increasing Re, which showed that the determinism of PFS increased and the randomness of the chaotic system became small. With the increase in z/H, the recurrence characteristics of PFS at θm = π/6 gradually increased, which were smaller than that of other θm. The results of this study provide a deep understanding of the hydrodynamics in the CJT, and thus lay a foundation for further design optimization.
机译:循环射流油箱(CJT)代替了底部搅拌油箱,已成为混合设备的替代设备,该装置在工业应用中得到了广泛使用。新型CJT中压力波动信号(PFS)的递归图(RPs)和递归量化分析(RQA)被用来反映喷射混合的混乱程度。在不同的雷诺数,径向位置和轴向位置上评估了PFS的复发率,确定性和平均对角线长度。随着Re的增加,递归率,确定性和平均对角线长度的分布具有相似的趋势,这表明PFS的确定性增加并且混沌系统的随机性变小。随着z / H的增加,PFS在θm=π/ 6处的递归特性逐渐增加,小于其他θm。这项研究的结果提供了对CJT中流体动力学的深刻理解,从而为进一步的设计优化奠定了基础。

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