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Development of a Process Control System for the Production of High-Paraffin Oil

Author

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  • Yury V. Ilyushin

    (System Analysis and Control Department, Saint Petersburg Mining University, 2, 21st Line, 199106 Saint Petersburg, Russia)

Abstract

This work is aimed at developing methods for increasing the production of heavy crude oil while optimizing energy costs. Various methods have been studied for recovering heavy oil from deep reservoirs. Based on the developed methods, a number of dynamic models have been obtained that describe the behavior of the temperature field in the tubing. Estimations of thermal deformation are carried out. On the basis of dynamic models, fundamentally new devices are obtained and registered in the prescribed manner, providing a subsystem for automated process control systems.

Suggested Citation

  • Yury V. Ilyushin, 2022. "Development of a Process Control System for the Production of High-Paraffin Oil," Energies, MDPI, vol. 15(17), pages 1-10, September.
  • Handle: RePEc:gam:jeners:v:15:y:2022:i:17:p:6462-:d:906576
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    References listed on IDEAS

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    2. Marek Czupski & Piotr Kasza & Łukasz Leśniak, 2020. "Development of Selective Acidizing Technology for an Oil Field in the Zechstein Main Dolomite," Energies, MDPI, vol. 13(22), pages 1-18, November.
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    4. Karina Shamilyevna Nurgalieva & Liliya Albertovna Saychenko & Masoud Riazi, 2021. "Improving the Efficiency of Oil and Gas Wells Complicated by the Formation of Asphalt–Resin–Paraffin Deposits," Energies, MDPI, vol. 14(20), pages 1-16, October.
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    6. Artur Wodołażski & Jacek Skiba & Katarzyna Zarębska & Jarosław Polański & Adam Smolinski, 2020. "CFD Modeling of the Catalyst Oil Slurry Hydrodynamics in a High Pressure and Temperature as Potential for Biomass Liquefaction," Energies, MDPI, vol. 13(21), pages 1-13, October.
    7. Mohamed, Nermen H. & Soliman, Fathi S. & El Maghraby, Heba & Moustfa, Y.M., 2017. "Thermal conductivity enhancement of treated petroleum waxes, as phase change material, by α nano alumina: Energy storage," Renewable and Sustainable Energy Reviews, Elsevier, vol. 70(C), pages 1052-1058.
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    Cited by:

    1. Yongchao Xue & Chong Cao & Qingshuang Jin & Qianyu Wang, 2023. "Re-Evaluation of Oil Bearing for Wells with Long Production Histories in Low Permeability Reservoirs Using Data-Driven Models," Energies, MDPI, vol. 16(2), pages 1-21, January.
    2. Dmitry Radoushinsky & Kirill Gogolinskiy & Yousef Dellal & Ivan Sytko & Abhishek Joshi, 2023. "Actual Quality Changes in Natural Resource and Gas Grid Use in Prospective Hydrogen Technology Roll-Out in the World and Russia," Sustainability, MDPI, vol. 15(20), pages 1-31, October.
    3. Yanni Zhang & Rongxi Li & Shengli Xi & Jianwen Gao & Lei Chen & Hexin Huang & Bangsheng Zhao & Ahmed Khaled, 2023. "Quartz Origins and Paleoenvironmental Controls on Organic Matter Accumulation of Marine Shale in the Ordovician Wulalike Formation, Northwestern Ordos Basin, China: Significance for Shale Gas Explorat," Energies, MDPI, vol. 16(14), pages 1-23, July.
    4. Yue Ma & Fan Shao & Jing Wang & Han Yang & Changtao Yue, 2023. "Examination of the Structure and Definition of the Mechanism of Formation of Products by Pyrolysis of Tarim Crude Oil," Energies, MDPI, vol. 16(4), pages 1-12, February.
    5. Zhengbin Wu & Hanzhao Chen & Xidong Cai & Qiyang Gou & Liangliang Jiang & Kai Chen & Zhangxin Chen & Shu Jiang, 2023. "Current Status and Future Trends of In Situ Catalytic Upgrading of Extra Heavy Oil," Energies, MDPI, vol. 16(12), pages 1-29, June.
    6. Haifeng Li & Qiang Wang & Yongbin Wu, 2023. "Current Status and Development Direction of Low-Carbon Exploitation Technology for Heavy Oil," Energies, MDPI, vol. 16(5), pages 1-15, February.
    7. Sofianos Panagiotis Fotias & Andreas Georgakopoulos & Vassilis Gaganis, 2022. "Workflows to Optimally Select Undersaturated Oil Viscosity Correlations for Reservoir Flow Simulations," Energies, MDPI, vol. 15(24), pages 1-23, December.

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