학술논문

Methods for Eddy Current Energy Losses Reduction in Vortex-Layer Devices
Document Type
Conference
Source
2019 International Ural Conference on Electrical Power Engineering (UralCon) Electrical Power Engineering (UralCon), 2019 International Ural Conference on. :428-432 Oct, 2019
Subject
Power, Energy and Industry Applications
Inductors
Energy loss
Eddy currents
Power engineering
Magnetic fields
Heating systems
vortex-layer device
eddy current
energy losses
cylindrical shell
cut
Language
Abstract
This paper discusses several methods to reduce the eddy current energy losses in a working area of the vortex-layer devices. Using a known mathematical model numerical experiments were carried out to evaluate effectiveness, to identify and analyze all the advantages and disadvantages for each of the proposed methods. The calculation results are presented as graphs of the dependences of the energy losses on the working area shell thickness and on the frequency of the field inductors; as graphs of the distribution eddy current flow function along the working area shell length with the varying field frequency; as graphs of the distribution primary magnetic field and shell reaction field on the symmetry axis. It was established that for the three-inductor vortex-layer device addition of two equally spaced orthogonal cuts in the working area shell leads to a 43% energy losses reduction, and an alternating configuration of the inductors gives a reduction from 20% to 29% depending on the connection method.