Controlled experiments to study corrosion effects due to external varying fields in embedded pipelines

We present controlled laboratory tests carried out to study corrosion effects due to induction currents on pipes embedded in environments with electrical resistance lateral discontinuities. Sacrificial anodes were connected to underground pipes, and corrosion rates were estimated by measuring the ma...

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Autor principal: López, Ernesto Luis
Otros Autores: Osella, Ana María, Martino, Luis Angel
Formato: Capítulo de libro
Lenguaje:Inglés
Publicado: 2006
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100 1 |a López, Ernesto Luis 
245 1 0 |a Controlled experiments to study corrosion effects due to external varying fields in embedded pipelines 
260 |c 2006 
270 1 0 |m Osella, A.; Departamento de Física, Facultad de Ciencias Exactas y Naturales, Ciudad Universitaria, Pab. 1, 1428 Buenos Aires, Argentina; email: osella@df.uba.ar 
504 |a Tishkov, Somlev, (1994) Geo-microbiological J., 12, p. 53 
504 |a Feliú, S., Andrade, M.C., Metallic corrosion and protection (1991) Consejo Superior de Investigaciones Científicas, 1. , Madrid 
504 |a Boteler, D.H., Cookson, M.J., Telluric currents and their effects on pipelines in the Cook Strait region of New Zealand (1986) Mater. Perfom., 25 (3), pp. 27-32 
504 |a Campbell, W.H., An interpretation of induced electric currents in long pipelines caused by natural sources of the upper atmosphere (1986) Surveys Geophys., 8, pp. 239-259 
504 |a Martin, B.A., Telluric effects on a buried pipeline (1993) Corrosion, 49 (4), pp. 343-350 
504 |a Waters, F.O., Alternating current corrosion (1962) First International Congress on Metallic Corrosion, , Butterworth & Co. Pub. London 
504 |a Osella, A., Favetto, A., López, E., Currents induced by geomagnetic storms on buried pipelines as a cause of corrosion (1998) J. Appl. Geophys., 38 (3), pp. 219-233 
504 |a Peabody, A.W., Corrosion aspects of arctic pipelines (1979) Mater. Perfom., 30, pp. 27-32 
504 |a Pirjola, R., Boteler, D., Viljanen, A., Amm, O., Prediction of geo-magnetically induced currents in power transmission systems (2000) Adv. Space Res., 26 (1), pp. 5-14 
504 |a Pulkkinen, A., Pirjola, R., Boteler, D., Viljanen, A., Yegorov, L., Modeling of space weather effects on pipelines (2001) J. Appl. Geophys., 48 (9), pp. 233-256 
504 |a Osella, A., Favetto, A., López, E., Corrosion rates in buried pipelines due to geomagnetic storms (1999) Corrosion, 55 (7), pp. 699-705 
504 |a Osella, A., Favetto, A., Effects of soil resistivity in buried pipelines (2000) J. Appl. Geophys., 44, pp. 303-312 
504 |a Osella, A., Martinelli, P., Favetto, A., López, E., Induction effects of 2D structures on buried pipelines (2002) IEEE Geosci. Remote Sensing, 40 (1), pp. 197-205 
504 |a Telford, W.M., Geldart, L.P., Sheriff, R.E., (1990) Applied Geophysics, , Cambridge University Press Cambridge 
504 |a Loke, M., Baker, R., (1995) Geophysics, 60 (6), pp. 1682-1690 
506 |2 openaire  |e Política editorial 
520 3 |a We present controlled laboratory tests carried out to study corrosion effects due to induction currents on pipes embedded in environments with electrical resistance lateral discontinuities. Sacrificial anodes were connected to underground pipes, and corrosion rates were estimated by measuring the mass loss in each anode. We considered 1 Hz and 50 Hz inducting fields, and the effects produced on the pipes were compared with cases without an external field. The results indicated an increase in the corrosion rate when the pipe was under the effect of induction currents, particularly where there was a change of electrical resistance in the soil. © 2005 Elsevier Ltd. All rights reserved.  |l eng 
536 |a Detalles de la financiación: Agencia Nacional de Promoción Científica y Tecnológica 
536 |a Detalles de la financiación: Universidad de Buenos Aires 
536 |a Detalles de la financiación: This work has been made possible thanks to the support of Universidad de Buenos Aires and Agencia Nacional de Promoción Científica y Tecnológica. 
593 |a Departamento de Física, Facultad de Ciencias Exactas y Naturales, Ciudad Universitaria, Pab. 1, 1428 Buenos Aires, Argentina 
593 |a CBC, University of Buenos Aires, Argentina 
593 |a CONICET (Consejo Nacional de Investigaciones Científicas y Técnicas), Argentina 
593 |a ANPCyT (Agencia Nacional de Promoción Científica y Tecnoló Gica) 
650 1 7 |2 spines  |a CORROSION 
650 1 7 |2 spines  |a CORROSION 
690 1 0 |a IRON PIPELINES 
690 1 0 |a MODELLING STUDIES 
690 1 0 |a SELECTIVE OXIDATION 
690 1 0 |a INDUCTION CURRENTS 
690 1 0 |a IRON PIPELINES 
690 1 0 |a MODELLING STUDIES 
690 1 0 |a SELECTIVE OXIDATION 
690 1 0 |a ANODES 
690 1 0 |a ELECTRIC CURRENTS 
690 1 0 |a ELECTRIC RESISTANCE 
690 1 0 |a OXIDATION 
690 1 0 |a PIPELINES 
690 1 0 |a CONTROL 
690 1 0 |a PIPELINE 
700 1 |a Osella, Ana María 
700 1 |a Martino, Luis Angel 
773 0 |d 2006  |g v. 48  |h pp. 389-403  |k n. 2  |p Corros. Sci.  |x 0010938X  |w (AR-BaUEN)CENRE-4330  |t Corrosion Science 
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856 4 0 |u https://doi.org/10.1016/j.corsci.2005.02.006  |y DOI 
856 4 0 |u https://hdl.handle.net/20.500.12110/paper_0010938X_v48_n2_p389_Lopez  |y Handle 
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