Research of distribution of the magnetic field intensity in the inertial device of the ship engine oil purification

In the paper experimental data showing the magnetic field distribution in the hydrocyclone working chamber according to radius and height have been presented. One of the most important parameter of magnetic hydrocyclones is the distribution of the magnetic field along the radius and height of the wo...

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Main Authors: Masyutkin E. P., Avdeyev B. A., Prosvirnin V. I.
Format: Article
Language:Russian
Published: Murmansk State Technical University 2016-12-01
Series:Vestnik MGTU
Online Access:http://vestnik.mstu.edu.ru/show.shtml?art=1825&pdf=1
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spelling doaj-fa550dcd40594a2c8821dd3debce4fb62020-11-24T23:21:39ZrusMurmansk State Technical UniversityVestnik MGTU1560-92781997-47362016-12-0119473774310.21443/1560-9278-2016-4-737-743Research of distribution of the magnetic field intensity in the inertial device of the ship engine oil purificationMasyutkin E. P. 0Avdeyev B. A.1Prosvirnin V. I. 2Kerch State Maritime Technological UniversityKerch State Maritime Technological UniversityKerch State Maritime Technological UniversityIn the paper experimental data showing the magnetic field distribution in the hydrocyclone working chamber according to radius and height have been presented. One of the most important parameter of magnetic hydrocyclones is the distribution of the magnetic field along the radius and height of the working chamber necessary to calculate the coagulation and magnetic forces that act on the particle or the flocculation. The magnetic field intensity has been calculated by the magnetic intensity measured by the magnetometer at regular intervals and with different values of DC supply. The resulting values of the magnetic intensity have been presented in graphs. Data that show the distribution of the magnetic field in the hydrocyclone working chamber are the same as those published in domestic and foreign scientific journals. There are several data points that do not fit in the relationship caused by non-ideal manufacturing apparatus and the procedure measuring the magnetic field. Field distribution curves received by the previously found dependencies have been constructed; correlation coefficients have been calculated and proved that analyzed dependence can be used in further calculations forces coagulation and magnetic force as theoretical and experimental data are in good agreement. In most of the hydrocyclone height the field can be considered constant by height and radius and sufficient for the coagulation of the magnetic particles. The change of the magnetic field has been considered where the outer part of the magnetic circuit is not formed whole but in the form of vertical strips. The research has shown that the area with the minimum field strength is enough to not only save the already formed floccules, but also to continue the process of floccule formation.http://vestnik.mstu.edu.ru/show.shtml?art=1825&pdf=1
collection DOAJ
language Russian
format Article
sources DOAJ
author Masyutkin E. P.
Avdeyev B. A.
Prosvirnin V. I.
spellingShingle Masyutkin E. P.
Avdeyev B. A.
Prosvirnin V. I.
Research of distribution of the magnetic field intensity in the inertial device of the ship engine oil purification
Vestnik MGTU
author_facet Masyutkin E. P.
Avdeyev B. A.
Prosvirnin V. I.
author_sort Masyutkin E. P.
title Research of distribution of the magnetic field intensity in the inertial device of the ship engine oil purification
title_short Research of distribution of the magnetic field intensity in the inertial device of the ship engine oil purification
title_full Research of distribution of the magnetic field intensity in the inertial device of the ship engine oil purification
title_fullStr Research of distribution of the magnetic field intensity in the inertial device of the ship engine oil purification
title_full_unstemmed Research of distribution of the magnetic field intensity in the inertial device of the ship engine oil purification
title_sort research of distribution of the magnetic field intensity in the inertial device of the ship engine oil purification
publisher Murmansk State Technical University
series Vestnik MGTU
issn 1560-9278
1997-4736
publishDate 2016-12-01
description In the paper experimental data showing the magnetic field distribution in the hydrocyclone working chamber according to radius and height have been presented. One of the most important parameter of magnetic hydrocyclones is the distribution of the magnetic field along the radius and height of the working chamber necessary to calculate the coagulation and magnetic forces that act on the particle or the flocculation. The magnetic field intensity has been calculated by the magnetic intensity measured by the magnetometer at regular intervals and with different values of DC supply. The resulting values of the magnetic intensity have been presented in graphs. Data that show the distribution of the magnetic field in the hydrocyclone working chamber are the same as those published in domestic and foreign scientific journals. There are several data points that do not fit in the relationship caused by non-ideal manufacturing apparatus and the procedure measuring the magnetic field. Field distribution curves received by the previously found dependencies have been constructed; correlation coefficients have been calculated and proved that analyzed dependence can be used in further calculations forces coagulation and magnetic force as theoretical and experimental data are in good agreement. In most of the hydrocyclone height the field can be considered constant by height and radius and sufficient for the coagulation of the magnetic particles. The change of the magnetic field has been considered where the outer part of the magnetic circuit is not formed whole but in the form of vertical strips. The research has shown that the area with the minimum field strength is enough to not only save the already formed floccules, but also to continue the process of floccule formation.
url http://vestnik.mstu.edu.ru/show.shtml?art=1825&pdf=1
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AT prosvirninvi researchofdistributionofthemagneticfieldintensityintheinertialdeviceoftheshipengineoilpurification
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