A MATHEMATICAL MODEL OF THERMAL POWER PLANTS SMOKE EXHAUSTERS INDUCTION MOTORS SYSTEM OPERATION MODES

Purpose. Development of a model-software complex (MSC) for computer analysis of modes of the system of induction motors (IM) of smoke exhausters of thermal power plant (TPP), the basic elements of which are mathematical models and corresponding software written in the programming language FORTRAN....

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Autor principal: K. M. Vasyliv
Formato: article
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RU
UK
Publicado: National Technical University "Kharkiv Polytechnic Institute" 2017
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spelling oai:doaj.org-article:fbac93292d9f4cfead079003336a9c262021-12-02T17:49:36ZA MATHEMATICAL MODEL OF THERMAL POWER PLANTS SMOKE EXHAUSTERS INDUCTION MOTORS SYSTEM OPERATION MODES10.20998/2074-272X.2017.3.032074-272X2309-3404https://doaj.org/article/fbac93292d9f4cfead079003336a9c262017-06-01T00:00:00Zhttp://eie.khpi.edu.ua/article/view/2074-272X.2017.3.03/100680https://doaj.org/toc/2074-272Xhttps://doaj.org/toc/2309-3404Purpose. Development of a model-software complex (MSC) for computer analysis of modes of the system of induction motors (IM) of smoke exhausters of thermal power plant (TPP), the basic elements of which are mathematical models and corresponding software written in the programming language FORTRAN. Methodology. Mathematical model serves as a system of differential equations of electrical and mechanical condition. The equation of electric state is written in phase coordinates based on Kirchhoff's laws, and mechanical condition described by the d'Alembert equation. Mathematical model focuses on explicit numerical integration methods. Scientific novelty. The equation of state of electrical connections takes into account the mutual electromagnetic circuits for transformer of own needs (TON) and induction motors and interdependence (in all possible combinations) between: TON (from which motors powered) and each of the two IM and blood pressure between themselves. The complex allows to simulate electromagnetic and electromechanical processes in transitional and steady, symmetric and asymmetric modes including modes of self-induction motors. Results. Complex is used for computer analysis of electromagnetic and electromechanical processes and established the basic laws of motion modes of starting, stopping and self-start of IM of smoke exhausters of the TPP unit. Practical value. The complex is suitable for computer analysis of modes of other similar units of own needs of thermal power plants.K. M. VasylivNational Technical University "Kharkiv Polytechnic Institute"articlemathematic modelnumerical methodsthermal power plantinduction motorsElectrical engineering. Electronics. Nuclear engineeringTK1-9971ENRUUKElectrical engineering & Electromechanics, Iss 3, Pp 19-26 (2017)
institution DOAJ
collection DOAJ
language EN
RU
UK
topic mathematic model
numerical methods
thermal power plant
induction motors
Electrical engineering. Electronics. Nuclear engineering
TK1-9971
spellingShingle mathematic model
numerical methods
thermal power plant
induction motors
Electrical engineering. Electronics. Nuclear engineering
TK1-9971
K. M. Vasyliv
A MATHEMATICAL MODEL OF THERMAL POWER PLANTS SMOKE EXHAUSTERS INDUCTION MOTORS SYSTEM OPERATION MODES
description Purpose. Development of a model-software complex (MSC) for computer analysis of modes of the system of induction motors (IM) of smoke exhausters of thermal power plant (TPP), the basic elements of which are mathematical models and corresponding software written in the programming language FORTRAN. Methodology. Mathematical model serves as a system of differential equations of electrical and mechanical condition. The equation of electric state is written in phase coordinates based on Kirchhoff's laws, and mechanical condition described by the d'Alembert equation. Mathematical model focuses on explicit numerical integration methods. Scientific novelty. The equation of state of electrical connections takes into account the mutual electromagnetic circuits for transformer of own needs (TON) and induction motors and interdependence (in all possible combinations) between: TON (from which motors powered) and each of the two IM and blood pressure between themselves. The complex allows to simulate electromagnetic and electromechanical processes in transitional and steady, symmetric and asymmetric modes including modes of self-induction motors. Results. Complex is used for computer analysis of electromagnetic and electromechanical processes and established the basic laws of motion modes of starting, stopping and self-start of IM of smoke exhausters of the TPP unit. Practical value. The complex is suitable for computer analysis of modes of other similar units of own needs of thermal power plants.
format article
author K. M. Vasyliv
author_facet K. M. Vasyliv
author_sort K. M. Vasyliv
title A MATHEMATICAL MODEL OF THERMAL POWER PLANTS SMOKE EXHAUSTERS INDUCTION MOTORS SYSTEM OPERATION MODES
title_short A MATHEMATICAL MODEL OF THERMAL POWER PLANTS SMOKE EXHAUSTERS INDUCTION MOTORS SYSTEM OPERATION MODES
title_full A MATHEMATICAL MODEL OF THERMAL POWER PLANTS SMOKE EXHAUSTERS INDUCTION MOTORS SYSTEM OPERATION MODES
title_fullStr A MATHEMATICAL MODEL OF THERMAL POWER PLANTS SMOKE EXHAUSTERS INDUCTION MOTORS SYSTEM OPERATION MODES
title_full_unstemmed A MATHEMATICAL MODEL OF THERMAL POWER PLANTS SMOKE EXHAUSTERS INDUCTION MOTORS SYSTEM OPERATION MODES
title_sort mathematical model of thermal power plants smoke exhausters induction motors system operation modes
publisher National Technical University "Kharkiv Polytechnic Institute"
publishDate 2017
url https://doaj.org/article/fbac93292d9f4cfead079003336a9c26
work_keys_str_mv AT kmvasyliv amathematicalmodelofthermalpowerplantssmokeexhaustersinductionmotorssystemoperationmodes
AT kmvasyliv mathematicalmodelofthermalpowerplantssmokeexhaustersinductionmotorssystemoperationmodes
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