Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
8254652 | Chaos, Solitons & Fractals | 2016 | 11 Pages |
Abstract
The transition of laterally heated flows in a vertical layer and in the presence of a streamwise pressure gradient is examined numerically for the case of different values Prandtl number. The stability analysis of the basic flow for the pure hydrodynamic case (Pr=0) was reported in [1]. We find that in the absence of transverse pumping the previously known critical parameters are recovered [2], while as the strength of the Poiseuille flow component is increased the convective motion is delayed considerably. Following the linear stability analysis for the vertical channel flow our attention is focused on a study of the finite amplitude secondary travelling-wave (TW) solutions that develop from the perturbations of the transverse roll type imposed on the basic flow and temperature profiles. The linear stability of the secondary TWs against three-dimensional perturbations is also examined and it is shown that the bifurcating tertiary flows are phase-locked to the secondary TWs.
Keywords
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Physical Sciences and Engineering
Physics and Astronomy
Statistical and Nonlinear Physics
Authors
Takeshi Akinaga, Tomoaki Itano, Sotos Generalis,