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  1. Eng Technol Res

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Research Article

Engineering and Technology Research 1(3): 079-082, July 2019
DOI: 10.15413/etr.2019.0105

ISSN: 2682 5716
2019 Academia Publishing

Abstract

 

 

A poynting vector approach to electromechanical energy conversion on electric machine operation

 

 

Accepted 3rd June, 2019

 
Necati Fatih DEMIRAL1, Tayfun DOGAN1 and Necibe Fusun OYMAN SERTELLER2*

1Marmara University, Electrical – Electronics Engineering Department-Institute of Pure and Applied Sciences, Istanbul-TURKEY.
2Marmara University, Electrical – Electronics Engineering Department, Istanbul-TURKEY.

 

 

This study presents a good process of electromechanical energy conversion using the fundamental of magnetic circuits, fields, and mathematical techniques in interactive motion. With the help of the simulation program, we analyzed a conventional, brushed, two-layer direct current motor using the electromechanical conversion system by analyzing the effect of the magnetic and electric materials on it. We studied the analysis of various and most preferred ferromagnetic material on the rotor of the direct current motor using Finite Element Method. This study showed that the power flow through any area can be calculated using the Poynting vector formula appropriately and in detail. For motor effective analysis, the total electric and magnetic fields can be used to determine the total power flow through the energy conversion system. Furthermore, the Poynting vector approach is sufficient and suitable for the electrical power analysis of electrical machines when deriving mathematical models and designing electric machines. This simulation may be intended for research purposes as well as for educational studies.

Key words: Poynting vector, DC motor, magnetic field, finite element method.
 

Cite this article as:
Demiral NF, Dogan T, Fusun N, Serteller O (2019). A poynting vector approach to electromechanical energy conversion on electric machine operation. Eng. Technol. Res. 1(3): 079-082.


This is an open access article published under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.




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