The two classes of primary modal instability in laminar separation bubbles
The two classes of primary modal instability in laminar separation bubbles
复制标题
层流分离气泡中的两类主模态不稳定性
DOI:
10.1017/jfm.2013.504
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发表时间:
2013
影响因子:
3.7
通讯作者:
Rodríguez D
中科院分区:
文献类型:
--
作者:
Rodríguez D
The self-excited global instability mechanisms existing in flat-plate laminar separation bubbles are studied here, in order to shed light on the causes of unsteadiness and three-dimensionality of unforced, nominally two-dimensional separated flows. The presence of two known linear global mechanisms, namely an oscillator behaviour driven by local regions of absolute inflectional instability and a centrifugal instability giving rise to a steady three-dimensionalization of the bubble, is studied in a series of model separation bubbles. These results indicate that absolute instability, and consequently a global oscillator behaviour, does not exist for two-dimensional bubbles with a peak reversed-flow velocity below . These findings suggest a route to the three-dimensionality and unsteadiness observed in experiments and simulations substantially different from that usually found in the literature of laminar separation bubbles, in which two-dimensional vortex shedding is followed by three-dimensionalization.
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DOI:
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