Improving the modeling of geomagnetically induced currents in Spain
Author
Other authors
Publication date
2017-04-19Abstract
Vulnerability assessments of the risk posed by geomagnetically induced currents (GICs) to power
transmission grids benefit from accurate knowledge of the geomagnetic field variations at each node of the
grid, the Earth’s geoelectrical structures beneath them, and the topology and relative resistances of the
grid elements in the precise instant of a storm. The results of previous analyses on the threat posed by GICs to the Spanish 400 kV grid are improved in this study by resorting to different strategies to progress in the three aspects identified above. First, although at midlatitude regions the source fields are rather uniform, we
have investigated the effect of their spatial changes by interpolating the field from the records of several
close observatories with different techniques. Second, we have performed a magnetotelluric (MT) sounding
in the vicinity of one of the transformers where GICs are measured to determine the geoelectrical
structure of the Earth, and we have identified the importance of estimating the MT impedance tensor when
predicting GIC, especially where the effect of lateral heterogeneities is important. Finally, a sensitivity analysis to network changes has allowed us to assess the reliability of both the information about the network topology and resistances, and the assumptions made when all the details or the network status are not available. In our case, the most essential issue to improve the coincidence between model predictions and actual observations came from the use of realistic geoelectric information involving local MT measurements.
Document Type
Article
Language
English
Keywords
Pages
13p
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© L'autor/a
Except where otherwise noted, this item's license is described as http://creativecommons.org/licenses/by-nc-nd/4.0/