In this study we investigate the stability of three-dimensional disturbances imposed on a heated or cooled two-dimensional boundary layer flow with a compliant surface. Such compliant surfaces may delay laminar to turbulent transition and reduce drag and noise levels in fluid flow. We exploit the multi-deck structure of the flow in the limit of large Reynolds numbers to analyse asymptotically the perturbed flow and to derive linear neutral results. A limited parametric study is carried out; the work extends that of Motsa et al. (2002) to three-dimensional disturbances.
@article{489, title = {Three-dimensional stability of heated or cooled accelerating boundary layer flows over a compliant boundary}, journal = {ANZIAM Journal}, volume = {48}, year = {2008}, doi = {10.21914/anziamj.v44i0.489}, language = {EN}, url = {http://dml.mathdoc.fr/item/489} }
Shateyi, S.; Sibanda, P.; Motsa, S. S. Three-dimensional stability of heated or cooled accelerating boundary layer flows over a compliant boundary. ANZIAM Journal, Tome 48 (2008) . doi : 10.21914/anziamj.v44i0.489. http://gdmltest.u-ga.fr/item/489/