We generalize to non equilibrium states Onsager's minimum dissipation principle. We also interpret this principle and some previous results in terms of optimal control theory. Entropy production plays the role of the cost necessary to drive the system to a prescribed macroscopic configuration
The author points out the difficulties presented by the ordinary method for finding the minimum of e...
When systems are far from equilibrium, the temperature, the entropy and the thermodynamic entropy pr...
In this work, we consider the choice of a system suitable for the formulation of principles in noneq...
The fundamental optimization principle for non-equilibrium thermodynamics is given. The second entro...
We demonstrate that if the relaxation of a non-equilibrium system towards a steady-state satisfies t...
It is shown that Onsager’s principle of the least dissipation of energy is equivalent to the maximum...
We extend Onsager's minimum dissipation principle to stationary states that are only subject to loca...
The maximum energy dissipation related to maximum entropy production hypothesis has been revised ab...
Open systems are very important in science and engineering for their applications and the analysis o...
We extend Onsager’s minimum dissipation principle to stationary states that are only subject to loca...
There are many functional contexts where it is desirable to maintain a mesoscopic system in a nonequ...
It is well known that, according to the second law of thermodynamics, the entropy of a closed system...
In this chapter we introduce the dissipation function, and discuss the behaviour of its extrema. The...
Far-from-equilibrium thermodynamics underpins the emergence of life, but how has been a long-outstan...
peer reviewedIn an essential and quite general setup, based on networks, we identify Schnakenberg's ...
The author points out the difficulties presented by the ordinary method for finding the minimum of e...
When systems are far from equilibrium, the temperature, the entropy and the thermodynamic entropy pr...
In this work, we consider the choice of a system suitable for the formulation of principles in noneq...
The fundamental optimization principle for non-equilibrium thermodynamics is given. The second entro...
We demonstrate that if the relaxation of a non-equilibrium system towards a steady-state satisfies t...
It is shown that Onsager’s principle of the least dissipation of energy is equivalent to the maximum...
We extend Onsager's minimum dissipation principle to stationary states that are only subject to loca...
The maximum energy dissipation related to maximum entropy production hypothesis has been revised ab...
Open systems are very important in science and engineering for their applications and the analysis o...
We extend Onsager’s minimum dissipation principle to stationary states that are only subject to loca...
There are many functional contexts where it is desirable to maintain a mesoscopic system in a nonequ...
It is well known that, according to the second law of thermodynamics, the entropy of a closed system...
In this chapter we introduce the dissipation function, and discuss the behaviour of its extrema. The...
Far-from-equilibrium thermodynamics underpins the emergence of life, but how has been a long-outstan...
peer reviewedIn an essential and quite general setup, based on networks, we identify Schnakenberg's ...
The author points out the difficulties presented by the ordinary method for finding the minimum of e...
When systems are far from equilibrium, the temperature, the entropy and the thermodynamic entropy pr...
In this work, we consider the choice of a system suitable for the formulation of principles in noneq...