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        Study of the dynamics of changes in the thermal conductivity coefficient of organic deposits

        Ilyushin Pavel,Vyatkin Kirill,Kozlov Anton 한국자원공학회 2023 Geosystem engineering Vol.26 No.6

        Ensuring flow in an oil field is one of the most costly problems in oil production and transportation. The fight against the formation of paraffin deposits consists both in the application of methods for the prevention and removal of deposits, and in the modeling of this process. An important parameter for the application of some technologies for preventing the formation of deposits and modeling the temperature regime of the pipeline is the coefficient of thermal conductivity of these deposits. The paper presents a study of the influence of the thermal conductivity of organic deposits on the rate of their formation, measured for 5 hours at the Cold Rod installation. According to the research results, it was found that over time, the thermal conductivity of organic deposits increases, while the rate of deposit formation decreases significantly. This process is explained by an increase in temperature on the surface of deposits due to their compaction and displacement from the volume of the liquid phase. The results obtained are extremely important in modeling the process of deposit formation and modeling a number of technologies to combat them.

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        Complex selection of a demulsifier: laboratory studies, numerical simulation and field tests

        Yurievich Ilyushin Pavel,Andreevich Vyatkin Kirill,Vadimovich Kozlov Anton 한국자원공학회 2023 Geosystem engineering Vol.26 No.2

        The formation of oil-in-water emulsions is one of the main problems in oil production in many oil fields around the world. The transition of exploited fields to the later stages of development exacerbates this complication. The paper presents a method for the complex selection of a demulsifier for in-line demulsification. Laboratory studies were carried out to select the most effective brand and dosage of the demulsifier. Numerical modeling of the influence of the geometrical parameters of the nozzle for the distributed introduction of the demulsifier into the flow on the degree of distribution of the demulsifier in the pipeline section has been performed. As a result of field research at the target object, a 2-fold reduction in the demulsifier dosage was achieved while maintaining pressure in the pipeline. Similar studies were performed for three other objects, where a reduction in reagent consumption by 60, 59 and 25%, respectively, were achieved. The performed study indicates the importance of not only research on the selection of demulsifiers, but also the study of the influence of the method of its introduction into the oil flow to increase the degree of interaction of the reagent with the emulsion being processed.

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