In the first paper of this series, we prove that by choosing the proper variational function and variables, the variational approach proposed by Doi in soft matter physics is equivalent to the Conservation-Dissipation Formalism. To illustrate the correspondence between these two theories, several novel examples in soft matter physics, including the particle diffusion in dilute solutions, polymer phase separation dynamics and nematic liquid crystal flows, are carefully examined. Based on our work, a deep connection among the generalized Gibbs relation, the second law of thermodynamics and the variational principle in non-equilibrium thermodynamics is revealed
A variational principle is proposed which allows to derive the equations of motion for a dissipative...
We compare the collective phenomena in physics and cooperative phenomena in biology/chemistry in ter...
A variational formulation of the coupled thermo-mechanical boundary-value problem for general dissip...
Variational principles play a fundamental role in deriving the evolution equations of physics. They ...
In physics there exist a number of variational principles such as the Lagrangian approach, Fermat’s ...
We present a new variational framework for dissipative general relativistic fluid dynamics. The mode...
In this note we wish to examine two cases in which variational principles seem to follow from expres...
International audienceIn this paper, we present a Lagrangian variational formulation for nonequilibr...
A variational principle is proposed that allows to derive the equations of motion for a fluid with a...
Macroscopic equations arising out of stochastic particle systems in detailed balance (called dissipa...
Abstract:- Nonequilibrium statistical mechanics helps to estimate corrections to the entropy and ene...
We present a formalism for Newtonian multifluid hydrodynamics derived from an unconstrained variatio...
International audiencePart I of this paper introduced a Lagrangian variational formulation for noneq...
Macroscopic equations arising out of stochastic particle systems in detailed balance (called dissipa...
Abstract: The speed-gradient variational principle (SG-principle) is formulated and applied to ther-...
A variational principle is proposed which allows to derive the equations of motion for a dissipative...
We compare the collective phenomena in physics and cooperative phenomena in biology/chemistry in ter...
A variational formulation of the coupled thermo-mechanical boundary-value problem for general dissip...
Variational principles play a fundamental role in deriving the evolution equations of physics. They ...
In physics there exist a number of variational principles such as the Lagrangian approach, Fermat’s ...
We present a new variational framework for dissipative general relativistic fluid dynamics. The mode...
In this note we wish to examine two cases in which variational principles seem to follow from expres...
International audienceIn this paper, we present a Lagrangian variational formulation for nonequilibr...
A variational principle is proposed that allows to derive the equations of motion for a fluid with a...
Macroscopic equations arising out of stochastic particle systems in detailed balance (called dissipa...
Abstract:- Nonequilibrium statistical mechanics helps to estimate corrections to the entropy and ene...
We present a formalism for Newtonian multifluid hydrodynamics derived from an unconstrained variatio...
International audiencePart I of this paper introduced a Lagrangian variational formulation for noneq...
Macroscopic equations arising out of stochastic particle systems in detailed balance (called dissipa...
Abstract: The speed-gradient variational principle (SG-principle) is formulated and applied to ther-...
A variational principle is proposed which allows to derive the equations of motion for a dissipative...
We compare the collective phenomena in physics and cooperative phenomena in biology/chemistry in ter...
A variational formulation of the coupled thermo-mechanical boundary-value problem for general dissip...