Home
|
Back to issue
|
ISSN 0474-8662. Information Extraction and Processing. 2023. Issue 51 (127)
Elliptical polarization of the magnetic field of parallel currents and methods of their determination
Dzhala R. M.
Karpenko Physico-Mechanical Institute of the NAS of Ukraine, Lviv
Dzhala V. R.
Karpenko Physico-Mechanical Institute of the NAS of Ukraine, Lviv
Verbenets B. Ya.
Karpenko Physico-Mechanical Institute of the NAS of Ukraine, Lviv
Senyuk O. I.
Karpenko Physico-Mechanical Institute of the NAS of Ukraine, Lviv
https://doi.org/10.15407/vidbir2023.51.045
Keywords: magnetic current field, elliptical polarization, parallel underground pipelines, methods of determining coordinates and pipeline currents.
Cite as: Dzhala R. M., Dzhala V. R., Verbenets B. Ya., Senyuk O. I. Elliptical polarization of the magnetic field of parallel currents and methods of their determination. Information Extraction and Processing. 2023, 51(127), 45-51. DOI:https://doi.org/10.15407/vidbir2023.51.045
Abstract
Determination of positions and electrical currents of underground pipelines using the electro¬magnetic method allows us to draw conclusions about the quality of the insulation of pipelines. The analysis of the spatial characteristics of the magnetic field of the low-frequency current of the pipeline is carried out on the basis of the Biot-Savard-Laplace law, which determines the dependence of the components of the magnetic field on the given current in a homogeneous, boundless space. It is shown that for two or more parallel pipelines to each other placed close, it is necessary to take into account their total magnetic field.
A mathematical model of the magnetic field of parallel rectilinear alternating electric currents was developed, taking into account the phase difference between them, which leads to the emergence of an elliptically polarized total magnetic field. The methods of determining the coordinates of the currents of parallel underground pipelines are analyzed. The relation of the components of the magnetic field for different coordinates of the pipelines, currents and the phase difference between the currents was obtained. Known methods of determining the coor¬dinates and currents of parallel underground pipelines are intended for the partial case of linear polarization of the magnetic field (with in-phase or anti-phase currents). In the general case of elliptic polarization of the magnetic field, a combination of tuning and scanning methods should be used.
References
1. Dzhala, R.M. Current state and problems of corrosion testing of underground pipelines. Proc. 4th Int. Conf.-Exhibition “Corrosion-98”, Lviv, 1998, 411-414. (in Ukrainian)
2. Dzhala, R.M.; Senyuk, O.I. Influence of a parallel current line on determining the current of an underground pipeline. Information Extraction and Processing, 1997, 11(87), 11-14.
(in Ukrainian)
3. Dzhala, R.M.; Dikmarova, L.P.; Dzhala V.R.; Verbenets B.Ya. Electromagnetic testing of insulation of underground pipelines. Kyiv: Naukova dumka, 2021. (in Ukrainian)
4. Dzhala, R.M. Electrodynamic model of parallel insulated pipelines. Radio electronics and telecommunications: Bulletin of Lviv Polytechnic State University, 2000, 387, 474-479.
(in Ukrainian)
5. Maksymenko, O.P.; Kulynych, Ya.P. Assessment of the capabilities of the induction method for determining the position of parallel engineering communications. Information Extraction and Processing. 1997, 11(87), 59-61.
6. Dzhala, R.M.; Mizyuk, L.Ya.; Maksymenko, O.P.; Senyuk, O.I. Determination of coordinates and currents of parallel pipelines. Materials of the 3rd scientific and practical seminar “Anti-corrosion protection of pipelines and structures and testing methods, KTS-99”. Lviv: FMI, 1999. 85-93.
(in Ukrainian)
7. Dzhala, R.M.; Mizyuk, L.Ya.; Maksymenko, O.P.; Senyuk, O.I. Study of the magnetic field of parallel pipelines excited by low-frequency currents. Methods and devices of quality control. 1999, 4, 3-6. (in Ukrainian)
8. Mizyuk, L.Ya.; Vakulskyi, O.A.; Dub, P.B.; Nichoga, V.O. Non-contact measurement of electrochemical protection currents of two parallel pipelines. Proc. 4th Int. Conf.-Exhibition “Corrosion-98”, Lviv, 1998, 461-464. (in Ukrainian)
9. Yavorskyi, A.V. Development of a method and system for non-contact monitoring of the state of insulation of industrial oil and gas pipelines: Ph.D. Dissertation Ivano-Frankivsk, 2005.
(in Ukrainian)
10. Kostiv, B.V. Improvement of non-contact determination of currents in the walls of underground pipelines to control their insulation coating: Ph.D. Dissertation. Ivano-Frankivsk, 2010. (in Ukrainian)
11. Svetov, B.S.; Mizyuk, L.Ya.; Podzhary, V.M. Ore electrical prospecting using the elliptically polarized field method. Nedra, 1969. (in Russian)