2 Flashcards

1
Q

Non- equilibrium thermodynamics

A

Deals with states and processes in systems that are not in thermodynamic equilibrium. In some cases these states and processes are stable for certain period of time in open systems: Steady state and Dissipative structures.

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2
Q

Equilibrium state

A

Values of all variables of the system are constant and equal in each point of the system and in the surroundings ⇒ no gradients, no structure, the system is homogeneous = HIGH ENTROPY

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3
Q

Non-equilibrium state

A

Values of all variables of the system are not constant and not equal in each point of the system and in the surroundings ⇒ gradients, structure, the system is inhomogeneous = LOW ENTROPY

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4
Q

Equilibrium process

A

Transition between two equilibrium states. The system is reversible; can return to the initial state spontaneously.

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5
Q

Non-equilibrium process

A

At least one state is a non-equilibrium state. The system is irreversible; cannot return to the initial state spontaneously.

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6
Q

Onsager’s relation

A

= A gradient is the driving force of a flow (flux) in non-equilibrium processes:

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7
Q

Steady (stationary) state

A

All state variables are constant in spite of ongoing processes
Jin = -Jex ⇒ constant values of all parameters of the system

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8
Q

Prigogine’s theorem

A

In a steady (stationary) state, the rate ot production of entropy (ΔS/Δt)in inside the system is always positive but has a minimal value. ⇒ The consumption of free energy is minimal.

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9
Q

Dissipative structure

A
  • non-equilibrium steady state in open systems
  • non-linear processes Li = f(Xi)
  • super critical values of gradients in the system
  • cooperative behaviour of fluxes

Example: Benard cells, fire, turbines, ect.

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