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This volume contributes to one of the most important topics of
Fluid Mechanics in future and presents recent research results on
control theory and applied control methods. Understanding and
handling of control methods of nonlinear systems, typical of Fluid
Mechanics, is the key to reduce losses and to improve the
efficiency and safety of technical processes.
This volume offers a wide range of theoretical, numerical and
experimental research papers on fluid dynamics. The major fields of
research - fundamentals of fluid mechanics as well as their
applications - are treated: - stability phenomena: convective flow,
thermal and hydrodynamic systems - transition, turbulence and
separation: boundary-layer, turbulent combustion, rarefied
gasdynamics, near wall and off wall flow fields, energy dissipation
- transonic flow: homogeneous condensation, shock-waves, effects at
Mach number unity - hypersonic flow: flow over spheres,
aerothermodynamics, relaxation - fluid machinery: axial fans,
compressor cascades, fluid couplings - computational fluid
dynamics: passive shock control, zonal computation, cylinderflow,
flow over wings - miscellaneous problems.
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