NUMERICAL-FIELD ANALYSIS OF THE CHARACTERISTICS OF A THREE-PHASE MAGNETIC FIELD INDUCTOR FOR THE TREATMENT OF VARIOUS SUBSTANCES WITH CURRENT STABILIZATION

IF 1.6 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC
V. Milykh, L. Shilkova
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引用次数: 2

Abstract

Introduction. A three-phase magnetic field inductor (MFI) similar to the asynchronous motor stator, which provides processing of various substances, is considered. This is done by means of oblong ferromagnetic elements moving with a rotating magnetic field and located in its cylindrical working chamber. Problem. The aim of the work is to develop the theory and conduct practical calculations of the parameters and characteristics of the MFI that connect the electromagnetic quantities and their phase relationships in the mode of its load. Methodology. The studies are carried out on the basis of numerical calculations of the magnetic field in the MFI taking into account the ferromagnetic elements in its working chamber. The calculation model of the chamber is represented by a homogeneous anisotropic magnetic medium for which the method of determining different magnetic permeabilities by its longitudinal and transverse axes is given. In order to obtain the characteristics of the presented MFI, the method of determining the electromagnetic parameters and phase relationships of the quantities accompanying its operation has been developed. Results. The theory and results of numerical-field analysis of electromagnetic quantities, their phase relationships and corresponding characteristics of three-phase MFI are presented. Calculations of characteristics are made for the inductor load mode depending on the phase shift of the magnetomotive force of the stator winding relative to the longitudinal axis of the chamber and while ensuring the constant value of the current of this winding. The characteristics include magnetic flux coupling, EMF and stator winding voltage, phase shifts between them and current, electromagnetic moment, input and output power, electrical and magnetic loss power, power factor and efficiency. Practical value. The technique of numerical-field calculations of electromagnetic quantities and their phase relationships is developed, and also the set of characteristics which should promote designing and perfection of inductors of the considered type is received. The presented technique is universal as it allows to display their cores practically of any shape.
用稳定电流处理各种物质的三相磁场电感器特性的数值场分析
介绍考虑了一种类似于异步电动机定子的三相磁场电感器(MFI),它提供各种物质的处理。这是通过长方形铁磁元件实现的,这些元件随着旋转磁场移动并位于其圆柱形工作室中。问题这项工作的目的是发展MFI的参数和特性的理论,并进行实际计算,这些参数和特性连接了电磁量及其在负载模式下的相位关系。方法论这些研究是在MFI中磁场的数值计算基础上进行的,考虑到其工作室中的铁磁元件。室的计算模型用均匀各向异性磁介质表示,给出了通过其纵轴和横轴确定不同磁导率的方法。为了获得所提出的MFI的特性,开发了一种确定电磁参数和伴随其操作的量的相位关系的方法。后果介绍了电磁量的数值场分析理论和结果、它们的相位关系以及三相MFI的相应特性。根据定子绕组的磁动势相对于腔室纵轴的相移,并在确保该绕组的电流恒定值的同时,对电感器负载模式的特性进行计算。其特性包括磁通耦合、EMF和定子绕组电压、它们与电流之间的相移、电磁矩、输入和输出功率、电损耗和磁损耗功率、功率因数和效率。实用价值。发展了电磁量及其相位关系的数值场计算技术,并获得了促进所考虑类型电感器设计和完善的一组特性。所提出的技术是通用的,因为它允许实际显示任何形状的核心。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Electrical Engineering & Electromechanics
Electrical Engineering & Electromechanics ENGINEERING, ELECTRICAL & ELECTRONIC-
CiteScore
2.40
自引率
50.00%
发文量
53
审稿时长
10 weeks
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