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Ivan A. Golubev
Ivan A. Golubev
Leading Engineer, Ph.D.
Saint Petersburg Polytechnic University of Peter the Great
Leading Engineer, Ph.D.
Saint Petersburg Polytechnic University of Peter the Great

Articles

Modern Trends in Hydrocarbon Resources Development
  • Date submitted
    2022-03-25
  • Date accepted
    2022-09-06
  • Date published
    2022-12-29

Autoclave modeling of corrosion processes occurring in a gas pipeline during transportation of an unprepared multiphase medium containing CO2

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The problem of selecting a method for ensuring the reliability of the unprepared fluid transport facilities of an unprepared fluid in the presence of carbon dioxide is considered. Carbon dioxide corrosion is one of the dangerous types of damage to field and main pipelines. It has been shown that dynamic autoclave tests should be carried out during staged laboratory tests in order to determine the intensity of carbon dioxide corrosion and to select the optimal method of protection. A hypothesis about the imperfection of the existing generally accepted approaches to dynamic corrosion testing has been put forward and confirmed. A test procedure based on the use of an autoclave with an overhead stirrer, developed using elements of mathematical modeling, is proposed. The flows created in the autoclave provide corrosive wear of the sample surface similar to the internal surfaces elements wear of the pipelines piping of gas condensate wells. The autoclave makes it possible to simulate the effect of the organic phase on the flow rate and the nature of corrosion damage to the metal surface, as well as the effect of the stirrer rotation speed and, accordingly, the shear stress of the cross section on the corrosion rate in the presence/absence of a corrosion inhibitor. The given results of staged tests make it possible to judge the high efficiency of the developed test procedure.

How to cite: Shaposhnikov N.О., Golubev I.A., Khorobrov S.V., Kolotiy A.I., Ioffe A.V., Revyakin V.А. Autoclave modeling of corrosion processes occurring in a gas pipeline during transportation of an unprepared multiphase medium containing CO2 // Journal of Mining Institute. 2022. Vol. 258. p. 915-923. DOI: 10.31897/PMI.2022.92
Oil and gas
  • Date submitted
    2020-06-19
  • Date accepted
    2020-10-06
  • Date published
    2020-11-24

Practice of using the magnetic treatment devices to intensify the processes of primary oil treating

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During the primary treatment of oil, gas and water, complications arise associated with the presence of hard water-oil emulsions, which cause an increase in fluid pressure in the gathering systems, pipeline damage, as well as difficulties in gas separation and preliminary water discharge at the preliminary discharge unit (PRU). Additional problems arise during transportation of highly paraffinic oils associated with the crystallization of paraffin in the flow path of the oilfield equipment and on the inner surface of pipes, leading to a drop in the productivity of pipelines. Article discusses the technology of magnetic-reagent treatment of water-oil media, which allows intensifying the processes of primary oil treatment at the facilities of its production. Bench and pilot tests have shown the ability of the magnetic field to accelerate oil demulsification processes, increasing the percentage of separated water during subsequent settling, and to reduce asphalt-resin-paraffin deposits (ARPD) on the inner surface of oil and gas field equipment. Mechanism of the magnetic field effect on water-oil media is described. Effect of treatment on the integrity of the armour shells of oil-water emulsions was studied. Various modes of magnetic treatment have been investigated with evaluation of its effectiveness. It is shown that the best effect is achieved with the combined use of reagents and a magnetic field. Synergistic effect is observed, which consists in increasing their effectiveness. This made it possible to conclude that this method can be applied to reduce the consumption of reagents used in oil production while maintaining the treatment efficiency.

How to cite: Golubev I.A., Golubev A.V., Laptev А.B. Practice of using the magnetic treatment devices to intensify the processes of primary oil treating // Journal of Mining Institute. 2020. Vol. 245. p. 554-560. DOI: 10.31897/PMI.2020.5.7
Qestion of the geoecology
  • Date submitted
    2013-07-27
  • Date accepted
    2013-09-21
  • Date published
    2014-01-01

Development free-chemical metod of cltaning water out from oil on the cmf companies

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In this paper deals with the problem of pollution of oil-contaminated wastewater. A method of treatment which increases the quality of recyclable waste water, by improving existing production systems using Reagent-free method.

How to cite: Pashkevich M.A., Golubev I.A. Development free-chemical metod of cltaning water out from oil on the cmf companies // Journal of Mining Institute. 2014. Vol. 207. p. 199.

Two-stage cleaning technology water out from oil

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Existing methods of water treatment do not provide the required quality of water injected into formation. Everywhere in the fields is observed gradual effect ions reduce oil output. The reasons can be a lot of both technological and geological. One of the main- is injected is not enough pure water, which causes mudding pores, channels and  cracks.

How to cite: Pashkevich M.A., Golubev I.A. Two-stage cleaning technology water out from oil // Journal of Mining Institute. 2013. Vol. 203. p. 83.