Study on magnetic field parameters in the inductor working chamber

The inductor which allows the usage of the magnetic field in the agriculture technological processes is considered. The measuring technique of the electromagnetic field vector characterization - magnetic induction that evaluates the quality of the technological process in the inductor chamber - is o...

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Main Authors: Nikolay V. Limarenko, Victor P. Zharov, Yury V. Panov, Boris G. Shapoval
Format: Article
Language:Russian
Published: Don State Technical University 2016-03-01
Series:Advanced Engineering Research
Subjects:
Online Access:https://www.vestnik-donstu.ru/jour/article/view/67
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spelling doaj-1eff3d93da60434490c52b37e9e5c9c42021-10-02T18:41:36ZrusDon State Technical UniversityAdvanced Engineering Research2687-16532016-03-0116113614210.12737/1827567Study on magnetic field parameters in the inductor working chamberNikolay V. Limarenko0Victor P. Zharov1Yury V. Panov2Boris G. Shapoval3Don State Technical UniversityDon State Technical UniversityDon State Technical UniversityDon State Technical UniversityThe inductor which allows the usage of the magnetic field in the agriculture technological processes is considered. The measuring technique of the electromagnetic field vector characterization - magnetic induction that evaluates the quality of the technological process in the inductor chamber - is offered. Intensity, directivity, and uniformity of the magnetic field in the inductor working chamber are investigated. The techniques of the instrumental, direct and indirect measurements, and statistical data processing, as well as methods of analog-to-digital data conversion are used. A cybernetic model of the experimental research to assess the inductor performance quality is developed. The distribution of the radial and axial components of the magnetic induction in the working chamber is determined; the area with the most uniform magnitude and the magnetic-field direction which forms the inductor working area is identified. The most significant component of the magnetic induction vector for this process and the type of inductor is revealed. The results obtained are important for the development of new inductor constructions.https://www.vestnik-donstu.ru/jour/article/view/67индукторрабочая камера индукторамагнитная индукцияинтенсивностьнаправленностьinductorinductor working chambermagnetic inductionintensitydirectivity
collection DOAJ
language Russian
format Article
sources DOAJ
author Nikolay V. Limarenko
Victor P. Zharov
Yury V. Panov
Boris G. Shapoval
spellingShingle Nikolay V. Limarenko
Victor P. Zharov
Yury V. Panov
Boris G. Shapoval
Study on magnetic field parameters in the inductor working chamber
Advanced Engineering Research
индуктор
рабочая камера индуктора
магнитная индукция
интенсивность
направленность
inductor
inductor working chamber
magnetic induction
intensity
directivity
author_facet Nikolay V. Limarenko
Victor P. Zharov
Yury V. Panov
Boris G. Shapoval
author_sort Nikolay V. Limarenko
title Study on magnetic field parameters in the inductor working chamber
title_short Study on magnetic field parameters in the inductor working chamber
title_full Study on magnetic field parameters in the inductor working chamber
title_fullStr Study on magnetic field parameters in the inductor working chamber
title_full_unstemmed Study on magnetic field parameters in the inductor working chamber
title_sort study on magnetic field parameters in the inductor working chamber
publisher Don State Technical University
series Advanced Engineering Research
issn 2687-1653
publishDate 2016-03-01
description The inductor which allows the usage of the magnetic field in the agriculture technological processes is considered. The measuring technique of the electromagnetic field vector characterization - magnetic induction that evaluates the quality of the technological process in the inductor chamber - is offered. Intensity, directivity, and uniformity of the magnetic field in the inductor working chamber are investigated. The techniques of the instrumental, direct and indirect measurements, and statistical data processing, as well as methods of analog-to-digital data conversion are used. A cybernetic model of the experimental research to assess the inductor performance quality is developed. The distribution of the radial and axial components of the magnetic induction in the working chamber is determined; the area with the most uniform magnitude and the magnetic-field direction which forms the inductor working area is identified. The most significant component of the magnetic induction vector for this process and the type of inductor is revealed. The results obtained are important for the development of new inductor constructions.
topic индуктор
рабочая камера индуктора
магнитная индукция
интенсивность
направленность
inductor
inductor working chamber
magnetic induction
intensity
directivity
url https://www.vestnik-donstu.ru/jour/article/view/67
work_keys_str_mv AT nikolayvlimarenko studyonmagneticfieldparametersintheinductorworkingchamber
AT victorpzharov studyonmagneticfieldparametersintheinductorworkingchamber
AT yuryvpanov studyonmagneticfieldparametersintheinductorworkingchamber
AT borisgshapoval studyonmagneticfieldparametersintheinductorworkingchamber
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