DocumentCode :
6209
Title :
Stability of composite thermodynamic systems with interconnection constraints
Author :
Gromov, Dmitry ; Caines, Peter E.
Author_Institution :
Fac. of Appl. Math., St.-Petersburg State Univ., St. Petersburg, Russia
Volume :
9
Issue :
11
fYear :
2015
fDate :
7 16 2015
Firstpage :
1629
Lastpage :
1636
Abstract :
In this study, a formulation of thermodynamic systems in terms of contact geometry is proposed. Furthermore, a systematic approach to the description and analysis of composite thermodynamic systems, that is, systems containing a number of interacting thermodynamic subsystems, is developed. In such systems, there are always heat, work or matter flows between the subsystems which, together with constructive restrictions, form the interconnection structure of the composite system. This structure can be described by a set of constraints imposed on the system. In geometric terms, this can be seen as a restriction of the system space to a certain `constraint sub-manifold´. Moreover, there are kinematic (non-holonomic) constraints which restrict the system´s dynamics while imposing no restrictions on the system configuration. Both geometric and kinematic constraints and their influence on the dynamics of the composite system are discussed. Finally, several types of composite thermodynamic system are presented and the LaSalle Invariance Principle is used to analyse the asymptotic dynamical behaviour of one important example.
Keywords :
kinematics; thermodynamics; LaSalle invariance principle; asymptotic dynamical behaviour; composite thermodynamic systems; constraint submanifold; contact geometry; geometric constraints; interacting thermodynamic subsystems; interconnection constraints; interconnection structure; kinematic constraints; nonholonomic constraints;
fLanguage :
English
Journal_Title :
Control Theory & Applications, IET
Publisher :
iet
ISSN :
1751-8644
Type :
jour
DOI :
10.1049/iet-cta.2014.0867
Filename :
7151863
Link To Document :
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