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SCREEN SELECTION FOR THE POWER FREQUENCY MAGNETIC FIELD SHIELDING OF UNDERGROUND POWER CABLES.

JANUARY 2013   -  Volume: 88 -  Pages: 105-113

DOI:

https://doi.org/10.6036/5024

Authors:

JUAN CARLOS PINO LOPEZ - PEDRO LUIS CRUZ ROMERO -
ALFONSO BACHILLER SOLER

Disciplines:

  • Electrical technology and engineering (CONDUCTORES AISLADOS )

Downloads:   205

How to cite this paper:  
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Received Date :   20 April 2012

Reviewing Date :   19 June 2012

Accepted Date :   24 June 2012


Key words:
líneas subterráneas, campo magnético, apantallado magnético, método de los elementos finitos, capacidad de transporte, underground cables, magnetic field, magnetic shielding, finite elements method, current rating
Article type:
ARTICULO DE INVESTIGACION / RESEARCH ARTICLE
Section:
RESEARCH ARTICLES

ABSTRACT:
This paper introduces one of the most used techniques to mitigate the magnetic field generated by underground power cables, such as screen shielding. Due to the complexity of these systems, it is difficult to choose the type of screen to use in a particular situation and its dimensions. Therefore, numerical methods, such as the finite elements method, are required to solve the coupled electromagnetic-thermal problem.

To show the recommended steps to follow in the selection and design process of a screen, the case of a 132 kV underground power line in flat formation is studied, where different open screens shapes made of aluminium are considered, taking into account the impact of the screen in the ampacity rating of the power line.

In the selection process, an economic study is also developed as a function of the screen dimensions, considering the material cost and the cost related to the power losses induced in the screen. As a consequence, the type of screen and its dimensions are selected to meet the mitigation requirements in the final placement, the lower cost and the lower derating of the ampacity of the mitigated line.

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