2014_1_10

Title of the article

THE PROBLEM OF SYNTHESIS OF KINETIC SIMPLE MATRIX SUBSYSTEMS BASED ON EXPERIMENTAL DATA

Authors

Starostin Igor' Evgen'evich candidate of technical sciences, research associate, Vacancies «Experimental Workshop NaukaSoft»

Index UDK

536.12

Abstract

Today to describe the dynamics of nonequilibrium processes there exist two approaches: microscopic and macroscopic. Microscopic approach based on statistical physics and kinetic theory based on the equations of motion of particles, such as kinetic equations Pauli basing on certain models of molecules. Macroscopic approach, based on the modern nonequilibrium thermodynamics is generally characterized by the rejection of the hypothesis of local thermodynamic equilibrium (rational thermodynamics). Under this cause of thermodynamics and a prerequisite course of non-equilibrium processes are thermodynamic forces. However, as was shown by the author in his earlier published works, the thermodynamic forces clearly do not define the character of the non-equilibrium processes, in addition to these forces has these features are determined more and some properties of the system, called the author earlier kinetic, regardless of thermodynamic forces. Therefore, the author of previously introduced matrix susceptibilities (kinetic matrix) defined by these kinetic properties, allowing to relate the thermodynamic forces at speeds by writing equations previously developed by the author potentially streaming method. The author has previously shown that the kinetic matrix of complex system is built , knowing the kinetic matrix of simple subsystems, and the last matrix in turn constructed from the experimental data of these simple subsystems. In this paper we develop a formalism for constructing kinetic matrices of simple subsystems of the experimental data.

Key words

non-equilibrium systems, simple subsystems, kinetic matrix, formalism of constructing kinetic matrix of simple subsystems.

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Дата создания: 04.04.2015 22:18
Дата обновления: 04.04.2015 22:18