RUS  ENG
Full version
JOURNALS // Matematicheskoe modelirovanie

Mat. Model., 2022, Volume 34, Number 9, Pages 107–122 (Mi mm4407)

Mathematical modeling of the transition resistance of the insulation of the main pipeline according to the data of measurements of the magnetic induction vector modulus
V. N. Krizsky, S. V. Viktorov, Ya. A. Luntovskaya

References

1. L. A. Goldobina, P. S. Orlov, “Analiz prichin korrozionnykh razrushenii podzemnykh truboprovodov i novye resheniia povysheniia stoikosti stali k korrozii”, Zapiski Gornogo instituta, 219 (2016), 459–464  crossref
2. ISO 15589-1: 2003 (E) Petroleum and Natural gas Industries – Cathodic Protection for Pipeline Transportation Systems – Part 1: On-land Pipelines.
3. V. M. Sakson, A. B. Sergeev, A. B. Prokazin, “Diagnostika stalnykh truboprovodov metodom beskontaktnoi magnitometrii”, Mir izmerenii, 2012, no. 6, 17–21
4. A. N. Liubchik, “Sposob distantsionnogo magnitometricheskogo kontrolia tekhnicheskogo sostoianiia magistralnykh truboprovodov”, Zapiski Gornogo Instituta, 195 (2012), 268–271
5. D. Hausamann, W. Zirnig, G. Schreier, “Monitoring Of Gas Transmission Pipelines A Customer Driven Civil UAV Application”, Proceedings of the ONERA-DLR Symposium ODAS 2003, S3-6-1–S3-6-15 https://elib.dlr.de/19883/
6. A. M. Bolotnov, N. N. Glazov, N. P. Glazov et al., “Mathematical model and algorithm for computing the electric field of pipeline cathodic protection with extended anodes”, Prot. Met., 44 (2008), 408–411  crossref  elib
7. V. N. Tkachenko, “Raschet elektrokhimicheskoi zashchity truboprovodnykh setei ot korrozii metodom diskretizatsii”, Elektrichestvo, 2007, no. 12, 41–47
8. V. N. Krizsky, P. N. Aleksandrov, A. A. Kovalsky, S. V. Viktorov, “Modelirovanie elektromagnitnykh polei sistem katodnoi zashchity magistralnykh truboprovodov v gorizontalno-sloistykh sredakh”, Nauka i tekhnologii truboprovodnogo transporta nefti i nefteproduktov, 9:5 (2019), 558–567  crossref
9. V. N. Krizsky, P. N. Aleksandrov, A. A. Kovalsky, S. V. Viktorov, “Matematicheskoe modelirovanie elektricheskikh polei katodnoi zashchity magistralnykh truboprovodov v anizotropnykh sredakh”, Nauka i tekhnologii truboprovodnogo transporta nefti i nefteproduktov, 10:1 (2020), 52–63  crossref
10. L. D. Landau, E. M. Lifshits, The Classical Theory of Fields, Pergamon press, 387 pp.  mathscinet  mathscinet
11. A. N. Tikhonov, V. Ia. Arsenin, Metody resheniia nekorrektnykh zadach, Nauka. Glavnaia redaktsiia fiziko-matematicheskoi literatury, M., 1986, 288 pp.
12. A. G. Iagola, Ianfei Van, I. E. Stepanova, V. N. Titarenko, Obratnye zadachi i metody ikh resheniia. Prilozheniia k geofizike, Binom. Laboratoriia znanii, M., 2014, 216 pp.
13. V. N. Krizsky, S. V. Viktorov, M. B. Beliaeva, Matematicheskoe modelirovanie geoelektricheskikh polei v kusochno-odnorodnykh kvazitrekhmernykh sredakh, Sterlitamakskii filial BashGU, Sterlitamak, 2015, 103 pp.
14. C. T. Kelley, Iterative Methods for Optimization, SIAM, Philadelphia, 1999, 180 pp.  mathscinet


© Steklov Math. Inst. of RAS, 2026