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首页> 外文期刊>Journal of Fluid Mechanics >Instability and transition in the boundary layer driven by a rotating slender cone
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Instability and transition in the boundary layer driven by a rotating slender cone

机译:旋转细长锥驱动的边界层中的不稳定性和过渡

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Instability and transition in the boundary layer on a slender cone (600 apex angle) rotating in still fluid are investigated using hot-wire anemometry as well as through linear stability analysis. In contrast to broad cones (including the disk), where a cross-flow instability dominates the transition and different studies report similar transition Reynolds numbers, the reported transition Reynolds numbers on slender cones are scattered. The present experiments provide quantitative experimental datasets and the stability and transition are evaluated based on both the Reynolds number and a Girder number. The results consistently show that the instability development depends on the Gortler number rather than the Reynolds number and that transition starts at a well-defined Gortler number, whereas the transition Reynolds number depends on the rotational rate. The measured disturbance that first grows in the laminar region has a frequency approximately the same as or twice the rotational rate of the cone, which according to the stability analysis corresponds to the critical frequency of a slightly inclined vortex structure with respect to the cone axis or an axisymmetric vortex structure. These structures are similar to those observed in the flow visualisations of Kobayashi & Izumi (J. Fluid Mech., vol. 127, 1983, pp. 353-364) and considered as being due to a centrifugal instability.
机译:采用热线风速仪和线性稳定性分析方法,研究了在静止流体中旋转的细长圆锥体(600顶角)边界层的不稳定性和转捩。与宽锥体(包括圆盘)相比,在宽锥体(包括圆盘)中,横流不稳定性主导了转捩,不同的研究报告了相似的转捩雷诺数,而细长锥体上报告的转捩雷诺数是分散的。本实验提供了定量实验数据集,并基于雷诺数和梁数对稳定性和过渡进行了评估。结果一致地表明,不稳定性的发展取决于戈特勒数而不是雷诺数,过渡开始于定义明确的戈特勒数,而过渡雷诺数取决于转速。首先在层流区域生长的测量扰动的频率大约等于或两倍于锥体的旋转速率,根据稳定性分析,该频率对应于相对于锥体轴或轴对称涡结构略微倾斜的涡结构的临界频率。这些结构与小林和小泉(J.Fluid Mech.,vol.127,1983,pp.353-364)的流动可视化中观察到的结构相似,被认为是由于离心不稳定性造成的。

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