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Soteriou, M.C. and Ghoniem, A.F., " Vortex-Transport Element Simulation of an Exothermicially Reacting, Spatially Developing Shear Layer.
Inviscid shear-layer instabilities are resolved to highly nonlinear stages, which is shown by considering the doubly periodic two-dimensional shear layer as test configuration.
Soteriou, M.C. and Ghoniem, A.F., " Wake Effects on an Exothermic Spatially Developing Shear Layer, " 33rd Aerospace Sciences Meeting, Reno, NV, 1995, AIAA-95-0807.
Chapter 3 proposes a microfiltration model that pertains to non-deformable particles that are large enough to intrude significantly into the shear layer of a microchannel.
Ghoniem, A.F., Knio, O.M., and Heidarinejad, G., " The structure of the reaction zone in a reacting shear layer", Dynamics of Deflagration and Reactive Systems: Flames.
However, the lower shear layer stays nearly stationary.
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"Numerical-Simulation of a Thermally Stratified Shear-Layer Using the Vortex Element Method". Journal of Computational Physics.
A. F. Ghoniem and K. K. Ng. "Numerical Study of the Dynamics of a Forced Shear-Layer". Physics of Fluids.
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