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首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >Analysis of Coherent Structures in the Far-Field Region of an Axisymmetric Free Jet Identified Using Particle Image Velocimetry and Proper Orthogonal Decomposition
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Analysis of Coherent Structures in the Far-Field Region of an Axisymmetric Free Jet Identified Using Particle Image Velocimetry and Proper Orthogonal Decomposition

机译:轴对称自由射流远场区域相干结构的粒子图像测速和正确正交分解分析

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摘要

This paper investigates an isothermal free water jet discharging horizontally from a circular nozzle (9 mm) into a stationary body of water. The jet exit velocity was 2.5 m/s and the exit Reynolds number was 22,500. The large-scale structures in the far field were investigated by performing a proper orthogonal decomposition (POD) analysis of the velocity field obtained using a particle image velocimetry system. The number of modes used for the POD reconstruction of the velocity fields was selected to recover 40% of the turbulent kinetic energy. A vortex identification algorithm was then employed to quantify the size, circulation, and direction of rotation of the exposed vortices. A statistical analysis of the distribution of number, size, and strength of the identified vortices was carried out to explore the characteristics of the coherent structures. The results clearly reveal that a substantial number of vortical structures of both rotational directions exist in the far-field region of the jet. The number of vortices decreases in the axial direction, while their size increases. The mean circulation magnitude is preserved in the axial direction. The results also indicate that the circulation magnitude is directly proportional to the square of the vortex radius and the constant of proportionality is a function of the axial location.
机译:本文研究了从圆形喷嘴(9毫米)水平排放到静止水体中的等温自由水射流。射流出口速度为2.5 m / s,出口雷诺数为22,500。通过对使用粒子图像测速系统获得的速度场进行适当的正交分解(POD)分析,研究了远场中的大型结构。选择用于速度场的POD重建的模式数量以恢复40%的湍动能。然后采用涡旋识别算法来量化暴露涡旋的大小,环流和旋转方向。对确定涡旋的数量,大小和强度的分布进行统计分析,以探索相干结构的特征。结果清楚地表明,在喷射流的远场区域中存在大量的两个旋转方向的涡旋结构。旋涡的数量在轴向方向上减少,而其尺寸则增加。平均循环量沿轴向保持。结果还表明,循环量与涡旋半径的平方成正比,比例常数是轴向位置的函数。

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