AUTOMATED FORMATION OF CALCULATION MODELS OF TURBOGENERATORS FOR SOFTWARE ENVIRONMENT FEMM

Attention is paid to the popular FEMM (Finite Element Method Magnetics) program which is effective in the numerical calculations of the magnetic fields of electrical machines. The main problem of its using - high costs in time on the formation of a graphical model representing the design and on the...

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Date:2015
Main Authors: Milykh, V. I., Polyakova, N. V.
Format: Article
Language:Russian
Published: National Technical University "Kharkiv Polytechnic Institute" and Аnatolii Pidhornyi Institute of Power Machines and Systems of NAS of Ukraine 2015
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Online Access:http://eie.khpi.edu.ua/article/view/2074-272X.2015.4.02
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Journal Title:Electrical Engineering & Electromechanics

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Electrical Engineering & Electromechanics
id eiekhpieduua-article-48725
record_format ojs
spelling eiekhpieduua-article-487252016-03-09T07:37:42Z AUTOMATED FORMATION OF CALCULATION MODELS OF TURBOGENERATORS FOR SOFTWARE ENVIRONMENT FEMM АВТОМАТИЗИРОВАННОЕ ФОРМИРОВАНИЕ РАСЧЕТНЫХ МОДЕЛЕЙ ТУРБОГЕНЕРАТОРОВ ДЛЯ ПРОГРАММНОЙ СРЕДЫ FEMM АВТОМАТИЗИРОВАННОЕ ФОРМИРОВАНИЕ РАСЧЕТНЫХ МОДЕЛЕЙ ТУРБОГЕНЕРАТОРОВ ДЛЯ ПРОГРАММНОЙ СРЕДЫ FEMM Milykh, V. I. Polyakova, N. V. program FEMM Finite Element Method turbogenerator graphical and physical models automated formation Lua script 621.313 681.3 программа FEMM метод конечных элементов турбогенератор графические и физические модели автоматизированное формирование Lua скрипт 621.313 681.3 програма FEMM метод скінченних елементів турбогенератор графічні та фізичні моделі автоматизоване формування Lua скрипт 621.313 681.3 Attention is paid to the popular FEMM (Finite Element Method Magnetics) program which is effective in the numerical calculations of the magnetic fields of electrical machines. The main problem of its using - high costs in time on the formation of a graphical model representing the design and on the formation of the physical model representing the materials properties and the winding currents of machines – is solved. For this purpose, principles of the automated formation of such models are developed and presented on the turbogenerator example. The task is performed by a program written in an algorithmic language Lua integrated into the package FEMM. The program is universal in terms of varying the geometry and dimensions of the designed turbogenerators. It uses a minimum of input information in a digital form representing the design of the whole turbogenerator and its fragments. A general structure of the Lua script is provided, significant parts of its text, the graphic results of work's phases, as well as explanations of the program and instructions for its use are given. Performance capabilities of the compiled Lua script are shown on the example of the real 340 MW turbogenerator. Представлены принципы автоматизированного формирования графической и физической моделей турбогенераторов на алгоритмическом языке Lua для расчета их магнитных полей и параметров в программной среде пакета FEMM. Возможности составленного скрипта Lua демонстрируются на примере реального турбогенератора. Представлені принципи автоматизованого формування графічної і фізичної моделей турбогенераторів на алгоритмичній мові Lua для розрахунку їх магнітних полів і параметрів у програмному середовищі пакету FEMM. Можливості складеного скрипту Lua демонструються на прикладі реального турбогенератора. National Technical University "Kharkiv Polytechnic Institute" and Аnatolii Pidhornyi Institute of Power Machines and Systems of NAS of Ukraine 2015-08-28 Article Article application/pdf http://eie.khpi.edu.ua/article/view/2074-272X.2015.4.02 10.20998/2074-272X.2015.4.02 Electrical Engineering & Electromechanics; No. 4 (2015); 7-14 Электротехника и Электромеханика; № 4 (2015); 7-14 Електротехніка і Електромеханіка; № 4 (2015); 7-14 2309-3404 2074-272X ru http://eie.khpi.edu.ua/article/view/2074-272X.2015.4.02/44944 Copyright (c) 2015 V. I. Milykh, N. V. Polyakova https://creativecommons.org/licenses/by-nc/4.0
institution Electrical Engineering & Electromechanics
baseUrl_str
datestamp_date 2016-03-09T07:37:42Z
collection OJS
language Russian
topic program FEMM
Finite Element Method
turbogenerator
graphical and physical models
automated formation
Lua script
621.313
681.3
spellingShingle program FEMM
Finite Element Method
turbogenerator
graphical and physical models
automated formation
Lua script
621.313
681.3
Milykh, V. I.
Polyakova, N. V.
AUTOMATED FORMATION OF CALCULATION MODELS OF TURBOGENERATORS FOR SOFTWARE ENVIRONMENT FEMM
topic_facet program FEMM
Finite Element Method
turbogenerator
graphical and physical models
automated formation
Lua script
621.313
681.3
программа FEMM
метод конечных элементов
турбогенератор
графические и физические модели
автоматизированное формирование
Lua скрипт
621.313
681.3
програма FEMM
метод скінченних елементів
турбогенератор
графічні та фізичні моделі
автоматизоване формування
Lua скрипт
621.313
681.3
format Article
author Milykh, V. I.
Polyakova, N. V.
author_facet Milykh, V. I.
Polyakova, N. V.
author_sort Milykh, V. I.
title AUTOMATED FORMATION OF CALCULATION MODELS OF TURBOGENERATORS FOR SOFTWARE ENVIRONMENT FEMM
title_short AUTOMATED FORMATION OF CALCULATION MODELS OF TURBOGENERATORS FOR SOFTWARE ENVIRONMENT FEMM
title_full AUTOMATED FORMATION OF CALCULATION MODELS OF TURBOGENERATORS FOR SOFTWARE ENVIRONMENT FEMM
title_fullStr AUTOMATED FORMATION OF CALCULATION MODELS OF TURBOGENERATORS FOR SOFTWARE ENVIRONMENT FEMM
title_full_unstemmed AUTOMATED FORMATION OF CALCULATION MODELS OF TURBOGENERATORS FOR SOFTWARE ENVIRONMENT FEMM
title_sort automated formation of calculation models of turbogenerators for software environment femm
title_alt АВТОМАТИЗИРОВАННОЕ ФОРМИРОВАНИЕ РАСЧЕТНЫХ МОДЕЛЕЙ ТУРБОГЕНЕРАТОРОВ ДЛЯ ПРОГРАММНОЙ СРЕДЫ FEMM
АВТОМАТИЗИРОВАННОЕ ФОРМИРОВАНИЕ РАСЧЕТНЫХ МОДЕЛЕЙ ТУРБОГЕНЕРАТОРОВ ДЛЯ ПРОГРАММНОЙ СРЕДЫ FEMM
description Attention is paid to the popular FEMM (Finite Element Method Magnetics) program which is effective in the numerical calculations of the magnetic fields of electrical machines. The main problem of its using - high costs in time on the formation of a graphical model representing the design and on the formation of the physical model representing the materials properties and the winding currents of machines – is solved. For this purpose, principles of the automated formation of such models are developed and presented on the turbogenerator example. The task is performed by a program written in an algorithmic language Lua integrated into the package FEMM. The program is universal in terms of varying the geometry and dimensions of the designed turbogenerators. It uses a minimum of input information in a digital form representing the design of the whole turbogenerator and its fragments. A general structure of the Lua script is provided, significant parts of its text, the graphic results of work's phases, as well as explanations of the program and instructions for its use are given. Performance capabilities of the compiled Lua script are shown on the example of the real 340 MW turbogenerator.
publisher National Technical University "Kharkiv Polytechnic Institute" and Аnatolii Pidhornyi Institute of Power Machines and Systems of NAS of Ukraine
publishDate 2015
url http://eie.khpi.edu.ua/article/view/2074-272X.2015.4.02
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AT polyakovanv automatedformationofcalculationmodelsofturbogeneratorsforsoftwareenvironmentfemm
AT milykhvi avtomatizirovannoeformirovanierasčetnyhmodelejturbogeneratorovdlâprogrammnojsredyfemm
AT polyakovanv avtomatizirovannoeformirovanierasčetnyhmodelejturbogeneratorovdlâprogrammnojsredyfemm
first_indexed 2025-07-17T11:45:25Z
last_indexed 2025-07-17T11:45:25Z
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