The rate of viscous energy dissipation in a shear layer of incompressible Newtonian fluid with injection and suction is studied by means of exact solutions, nonlinear and linearized stability theory, and rigorous upper bounds. The injection and suction rates are maintained constant and equal and this leads to solutions with constant throughput. For strong enough suction, expressed in terms of the entry angle between the injection velocity and the boundaries, a steady laminar flow is nonlinearly stable for all Reynolds numbers. For a narrow range of small but nonzero angles, the laminar flow is linearly unstable at high Reynolds numbers. The upper bound on the energy dissipation rate—valid even for turbulent solutions of the Navier–Stokes eq...
This is joint work with Romain Nguyen van yen and Marie Farge. We revisit the problem posed by Eul...
A survey is presented of several extrema principles of energy dissipation as applied to problems in ...
The one-dimensional surrogate for the dimensionless energy dissipation rate C/sub epsilon / is measu...
The rate of viscous energy dissipation in a shear layer of incompressible Newtonian fluid with injec...
Improved upper bounds on viscous energy dissipation rates of wall-driven shear flow subject to unifo...
An exact expression is derived for the viscous dissipation function of a real homogeneous and isotro...
International audienceA qualitative explanation for the scaling of energy dissipation by high-Reynol...
A new equation for the dissipation rate of turbulent kinetic energy is derived exactly in conservati...
Recent developments in the field of nonequilibrium thermodynamics associated with viscous flows are ...
New results from direct numerical simulation of decaying isotropic turbulence show that Taylor’s exp...
The total dissipation rate for magnetohydrodynamic (MHD) flows in plane geometry with both velocity ...
The equilibrium structure of homogeneous turbulent shear flow is investigated from a theoretical sta...
This book presents an in-depth systematic investigation of a dissipative effect which manifests itse...
The rate of energy dissipation in solutions of the body-forced 3-d incompressible Navier-Stokes equa...
This is joint work with Romain Nguyen van yen and Marie Farge. We revisit the problem posed by Eul...
A survey is presented of several extrema principles of energy dissipation as applied to problems in ...
The one-dimensional surrogate for the dimensionless energy dissipation rate C/sub epsilon / is measu...
The rate of viscous energy dissipation in a shear layer of incompressible Newtonian fluid with injec...
Improved upper bounds on viscous energy dissipation rates of wall-driven shear flow subject to unifo...
An exact expression is derived for the viscous dissipation function of a real homogeneous and isotro...
International audienceA qualitative explanation for the scaling of energy dissipation by high-Reynol...
A new equation for the dissipation rate of turbulent kinetic energy is derived exactly in conservati...
Recent developments in the field of nonequilibrium thermodynamics associated with viscous flows are ...
New results from direct numerical simulation of decaying isotropic turbulence show that Taylor’s exp...
The total dissipation rate for magnetohydrodynamic (MHD) flows in plane geometry with both velocity ...
The equilibrium structure of homogeneous turbulent shear flow is investigated from a theoretical sta...
This book presents an in-depth systematic investigation of a dissipative effect which manifests itse...
The rate of energy dissipation in solutions of the body-forced 3-d incompressible Navier-Stokes equa...
This is joint work with Romain Nguyen van yen and Marie Farge. We revisit the problem posed by Eul...
A survey is presented of several extrema principles of energy dissipation as applied to problems in ...
The one-dimensional surrogate for the dimensionless energy dissipation rate C/sub epsilon / is measu...