Computer modeling of electromagnetic field around the 22 kV high voltage overhead lines

Author(s):  
Dusan Medved ◽  
Marek Pavlik ◽  
Jan Zbojovsky
2019 ◽  
Vol 10 (1) ◽  
pp. 260
Author(s):  
Mihaela Frigura-Iliasa ◽  
Felicia Ioana Baloi ◽  
Flaviu Mihai Frigura-Iliasa ◽  
Attila Simo ◽  
Sorin Musuroi ◽  
...  

With respect to health issues, this paperpresents the results of an electromagnetic field (EMF) assessment in the proximity of a high voltage power station located in South Transylvania, Romania. The main parameters taken into account are, according to all standards and recommendations, the RMS (Root Mean Square) value of low frequency (0–300 Hz) electrical field strength E (in kV/m) and magnetic flux density B (in µT). Measurements were performed near all critical pieces of equipment (transformers, switches, busbars, overhead lines), according to the EMF European Directive. Some measurements were made as a function of distance from the HV (high-voltage) equipment, others as a time variation. The main objective was to verify that specific limits are met and, if necessary, to identify protective measures. Finally, safe exposure times for personnel operating at these sites were determined. In the future, detailed maps of EMF variations will be made available to the power companies.


2005 ◽  
Vol 18 (1) ◽  
pp. 105-111 ◽  
Author(s):  
Adrian Marincu ◽  
Marian Greconici ◽  
Sorin Musuroi

In this paper the analytical calculus and the experimental measurements of the electric and magnetic field around a high voltage 400KV electrical overhead lines has been analyzed. There have been analyzed the possible influences of the electromagnetic field on the health of the human beings. The calculus has been done using the Mat Lab medium, the experimental measurements of the electric strength have been done using a spherical dipole.


2014 ◽  
Vol 602-605 ◽  
pp. 2637-2640
Author(s):  
Ao Wang ◽  
Yu Hui Zhu ◽  
Rui Guan ◽  
Zi Wei Chen ◽  
Lian Qing Zhao

The research on 1000kV UHV AC transmission lines is to analysis the electromagnetic field strength around these lines, as well as the electromagnetic energy people absorbed at different distances under the lines. What’s more, suggestions for a further study and standards to improve are provided in the paper.


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