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Coherent structures in the near-field of swirling turbulent jets: A tomographic PIV study

机译:旋流湍流射流近场中的相干结构:X射线断层摄影研究

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The present paper reports on high-speed tomographic particle image velocimetry measurements of large-scale coherent structures in the near field of swirling turbulent jets. Three flow cases are considered: a jet without superimposed swirl; a jet with low swirl; and a high-swirl jet with bubble-type vortex breakdown and a central recirculation zone. Local pressure fluctuations and their correlations with velocity were evaluated based on the Poisson equation and an effective viscosity model. Spatial Fourier transform and proper orthogonal decomposition were applied to evaluate the energies of different azimuthal modes for different cross-sections of the jet and to extract coherent structures. Toroidal vortices were observed in the mixing layer of the non-swirling and low-swirl jets. In the latter case, the vortices broke up earlier due to the swirl effect and formed longitudinal vortex filaments in the outer mixing layer of the jet. Deviation of the jet centreline from the axis of nozzle symmetry was detected for both non-swirling and low-swirl jets. In the latter case, this deviation was attributed to the intermittent vortex core precession. The amplitude of the axisymmetric mode increased downstream of the non-swirling and low-swirl jets, with development of the ring-like vortices. For the low-swirl jet, this increase was also associated with intensive velocity and pressure fluctuations along the jet axis. Although the high-swirl jet was more turbulent, a long helical vortex could be distinguished from other smaller eddies in the outer mixing layer. The flow dynamics was associated with a strong flow precession around the central recirculation zone. The first azimuthal mode had the largest amplitude until two nozzle diameters downstream and contained a rotating coherent structure. The second most intensive mode was related to the opposite axisymmetric oscillations of the axial velocity of the annular jet and reverse flow in the central recirculation zone.
机译:本文报道了高速湍流射流湍流射流附近的大型相干结构的层析X射线图像成像测速技术。考虑了三种流动情况:没有叠加涡流的射流;低涡流高涡流射流具有气泡型涡旋破裂和中央回流区。基于泊松方程和有效粘度模型评估了局部压力波动及其与速度的关系。应用空间傅立叶变换和适当的正交分解来评估射流不同截面的不同方位模的能量,并提取相干结构。在非旋流和低旋流射流的混合层中观察到环形涡旋。在后一种情况下,涡旋由于旋涡效应而较早破裂,并在射流的外部混合层中形成了纵向涡旋丝。对于非旋流和低旋流的射流,都检测到射流中心线偏离喷嘴对称轴。在后一种情况下,这种偏差归因于间歇性旋涡芯进动。随着环状涡旋的发展,轴对称模式的振幅在非旋流和低旋流射流的下游增加。对于低涡旋射流,这种增加还与沿射流轴的剧烈速度和压力波动有关。尽管高旋流的湍流更加湍流,但在外混合层中,可以将长螺旋旋涡与其他较小的涡旋区分开。流动动力学与中央再循环区周围强烈的旋进有关。第一方位模式具有最大振幅,直到下游两个喷嘴直径为止,并且包含旋转的相干结构。第二高强度模式与环形射流的轴向速度的相反轴对称振荡和中央再循环区域中的逆流有关。

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