Determination of the priority of withdrawal to repair of equipment of anti-corrosive protection on the section of the gas pipeline in the conditions of restriction of financing
https://doi.org/10.31615/j.corros.prot.2020.96.2-1
Abstract
Based on the experience of the operating organizations and results of previous studies, it is determined, that the more rational criterion for the withdrawal in the repair of insulation coating on the section of the pipeline is the reserve of the current from the nominal value, and the criterion of withdrawal in the repair of anode grounding is a reserve of voltage from the nominal value. It has been revealed that with data on changes in the output parameters of the cathode protection station and protection potential at the control point for a certain period, it is possible to predict the change in the factor of influence of the station at this point for a certain period and, therefore, to predict changes in the modes of operation of this station and the technical condition of the anti-corrosion protection system at the specified required range of maintenance level of protective potential. Based on the above conclusions, algorithms have been developed to assess the residual resource of the anti-corrosion protection system on the gas pipeline site and make management decisions on its extension based on the received values in the conditions funding restrictions. Also, an algorithm has been developed to determine the residual resource of the anti-corrosion protection system with the most effective redistribution of parameters between the cathode protection stations and an algorithm that allows to determine the priority of output in the repair of the system elements
About the Authors
S. V. SabanovRussian Federation
Sergey V. Sabanov, engineer
26, Alekseevskaya st., Nizhniy Novgorod
S. A. Nikulin
Russian Federation
Sergey A. Nikulin, Ph.D. in Technical Science, assistant
Professor, engineer
26, Alekseevskaya st., Nizhniy Novgorod
E. L. Karnavskiy
Russian Federation
Evgeniy L. Karnavskiy, Head of ECP CMS
26, Alekseevskaya st., Nizhniy Novgorod
References
1. Karnavskiy, E. L., Nikulin, S. A. (2016). Definition of the residual resource of the materials of the ACP system. Gas industry, 737, 14-17.
2. Nikulin, S. A. (2015). Improving the efficiency of preventing corrosion of oil and gas pipelines on the basis of optimal regulation of the modes of operation of cathode protection stations. Extended abstract of PhD dissertation. Ukhta.
3. Nikulin, S. A. (2016). Securing the gas mainline transport facility through compensatory measures. Gas industry. Special edition, 737, 14-18.
4. Nikulin, S. A. (2014). Structural and Parametric identification of the «pipe-earth» system in the task of electrochemical protection of main gas pipelines. Neurocomputers, 11, 79-85.
5. Corrosion Protection. Design ingesis of electrochemical protection of underground structures. (2009). STO Gazprom 9.2-003- 2009. Moscow: VNIIGAZ LLC.
6. A single corrosion and aging protection system. The structures are underground. General requirements for corrosion protection. (2017). GOST 9.602-2016. Moscow: VNIIGAZ LLC.
7. Steel Main Pipelines. General requirements for corrosion protection. (1998). GOST R 51164- 98. Moscow: Izdatelstvo Standartov Publishing House.
Review
For citations:
Sabanov S.V., Nikulin S.A., Karnavskiy E.L. Determination of the priority of withdrawal to repair of equipment of anti-corrosive protection on the section of the gas pipeline in the conditions of restriction of financing. Theory and Practice of Corrosion Protection. 2020;25(2):7-17. (In Russ.) https://doi.org/10.31615/j.corros.prot.2020.96.2-1