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The aim of the International Journal of Applied Electromagnetics and Mechanics is to contribute to intersciences coupling applied electromagnetics, mechanics and materials. The journal also intends to stimulate the further development of current technology in industry. The main subjects covered by the journal are:
- Physics and mechanics of electromagnetic materials and devices
- Computational electromagnetic in materials and devices
- Applications of electromagnetic fields and forces
The three interrelated key subjects - materials, electromagnetics and mechanics - include the following aspects: control, micromachines, intelligent structure, inverse problem, eddy current analysis, electromagnetic NDE, magnetic materials, magnetoelastic effects in materials, bioelectromagnetics, magnetosolid mechanics, magnetic levitations, applied physics of superconductors, superconducting magnet technology, superconducting propulsion system, nuclear fusion reactor components and wave propagation in electromagnetic fields.
Authors: Wang, Jingang | Tao, Yaqin | Tian, Tian | Ren, Ran
Article Type: Research Article
Abstract: Eddy-current loss will cause waste of electric energy and affect service life of cable. In order to study the method of reducing eddy-current loss of cable trench in metal top pipe, a finite element simulation model was established. Firstly, influence factors of eddy-current loss were determined through a theoretical analysis, including arrangement mode of cable phase, top pipe size and cable distance. Finite element method was then used for optimal calculation of structure of cable trench and effective optimization design method was proposed. Results indicate that: for three-phase multiloop cable trench of metal top pipe, phase arrangement mode has important …influence on eddy-current loss. For top pipe size, a comprehensive consideration of eddy-current loss and pipe stability should be taken in the thickness selection, and slotting position could only be at the position with maximum loss density. Both increase of distance between cable loop and top pipe and reduction of spacing between cables on the same loop will contribute to reduction of eddy-current loss of top pipe. Therefore, a cable trench structure commonly used in engineering was optimized and then its eddy-current loss was reduced by 70% effectively. Show more
Keywords: Cable trench, eddy-current loss, finite element method, optimization design
DOI: 10.3233/JAE-170130
Citation: International Journal of Applied Electromagnetics and Mechanics, vol. 56, no. 3, pp. 499-510, 2018
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