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Investigation of the flow in a circular cavity using stereo and tomographic particle image velocimetry

机译:使用立体和层析X射线图像图像测速技术研究圆形腔中的流动

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The turbulent flow over a circular cavity with an aspect ratio of D/H = 2 is investigated by multi-planar stereoscopic particle image velocimetry and with tomographic particle image velocimetry (PIV). The main aim of the study is the flow topology and the turbulent structure of the asymmetrical flow pattern that forms inside the cavity at these specific conditions. The flow field is measured in the vertical symmetry plane to describe the overall recirculation pattern in the cavity and the turbulent shear layer developing from the separation point. In this specific regime the shear layer fluctuations are recognized as those caused by instabilities together with the effect of the incoming boundary layer turbulence. Additional observations performed at several wall-parallel planes at different height inside the cavity allow to further evaluate the secondary flow circulation generated by this asymmetric regime. The observed flow pattern consists of a steady vortex, occupying the entire cavity volume and placed diagonally inside the cavity such to entrain the external flow from one side, capture it into a circulatory motion and eject it from the opposite side of the cavity. The spatial distribution of the turbulent fluctuations also reveals the same structure. The tomographic PIV measurement returns a visual inspection to the instantaneous three-dimensional structure of the turbulent fluctuations, which at the investigated height exhibit a low level of coherence with slightly elongated vortices in the recirculating flow inside the cavity.
机译:通过多平面立体粒子图像测速和层析X射线图像测速(PIV)研究了纵横比为D / H = 2的圆形空腔上的湍流。研究的主要目的是在这些特定条件下在腔体内形成的非对称流型的流动拓扑和湍流结构。在垂直对称平面上测量流场,以描述腔体和从分离点开始形成的湍流剪切层中的整体再循环模式。在这种特定状态下,剪切层波动被认为是由不稳定性以及进入的边界层湍流的影响所引起的。在空腔内不同高度的几个平行于墙壁的平面上进行的其他观察结果,可以进一步评估由这种不对称状态产生的二次流循环。观察到的流动模式包括一个稳定的涡流,该涡流占据整个腔体的体积,并斜向放置在腔体内部,以便从一侧夹带外部流,将其捕获为循环运动并从腔体的另一侧弹出。湍流涨落的空间分布也揭示了相同的结构。断层PIV测量可对湍流的瞬时三维结构进行目视检查,该结构在所研究的高度处显示出较低的相干性,并且在腔体内的循环流中涡旋略微拉长。

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