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Three-dimensional flow features in a nominally two-dimensional rectangular cavity

机译:标称二维矩形腔中的三维流动特征

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摘要

The object of the present paper was to look at the three-dimensional features of a flow in a nominally two-dimensional rectangular cavity having the length-to-depth ratio equal to 3, with laminar incoming boundary layer. The motivation was to give a contribution to the understanding of the origin of the spanwise flow structures observed in cavity flows. Particle image velocimetry was used to highlight the flow structure at low Reynolds number in the plane parallel to the cavity external flow and normal to the cavity bottom (vertical plane) and in planes parallel to cavity bottom (horizontal planes). The results demonstrate that the present measurements are qualitatively and quantitatively in agreement with published studies having as object the observation of the cavity flow behavior in the vertical plane, assuming the cavity to be nominally two-dimensional. Results in the planes parallel to the cavity bottom show the three-dimensional nature of the flow, characterized by the discontinuous presence of jet-like flows directed towards the cavity leading edge and towards the cavity trailing edge. The origin and nature of these discontinuous "jets" are examined and discussed in the paper. The flow structures are characterized by a wavelength scaling with the cavity length in proximity of the leading edge and with the cavity depth in the region of the trailing edge. Isolated three-dimensional flow structures consisting of side by side counter-rotating vortices have been also observed in the horizontal planes and tentatively interpreted as secondary flows induced by the instability of the main recirculation bubble.
机译:本文的目的是研究具有纵横比进入边界层的长/深比等于3的名义上二维的矩形腔体中流动的三维特征。这样做的动机是有助于理解腔流中观测到的展向流结构的起源。粒子图像测速法用于在平行于腔体外部流动且垂直于腔体底部的平面(垂直平面)和平行于腔体底部的平面(水平平面)中以低雷诺数突出流动结构。结果表明,当前的测量在质量和数量上与已发表的研究一致,这些研究以观察腔在名义上是二维的为目的,以垂直平面上观察腔的流动行为为对象。平行于型腔底部的平面中的结果显示了流动的三维性质,其特征在于不连续地存在朝向型腔前缘和型腔后缘的喷射流。这些不连续的“喷射”的起源和性质在本文中进行了检查和讨论。流动结构的特征在于波长缩放,其中腔长度在前缘附近并且腔深度在后缘区域中。在水平面中也观察到由​​并排反向旋转涡流组成的孤立三维流动结构,并暂时解释为由主再循环气泡的不稳定性引起的二次流动。

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