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Rozhin Igor' Ivanovich

Publications in Math-Net.Ru

  1. Simulation of hydrate plug formation during joint operation of a gas-bearing reservoir and a well for the case where the equilibrium conditions of hydrate formation depend on formation water composition

    Prikl. Mekh. Tekh. Fiz., 64:2 (2023),  127–142
  2. Numerical study of natural gas hydrate dissociation in a laboratory sandstone sample under a depression regime

    Mathematical notes of NEFU, 30:1 (2023),  72–88
  3. Method for determining the mass flow for pressure measurements of gas hydrates formation in the well

    J. Sib. Fed. Univ. Math. Phys., 14:2 (2021),  193–203
  4. Equations of state in mathematical models of production and transportation natural gas

    Sib. Zh. Vychisl. Mat., 23:3 (2020),  309–313
  5. Generalized mathematical model of hydrate formation in gas pipelines

    Prikl. Mekh. Tekh. Fiz., 60:3 (2019),  120–127
  6. 3D simulation of the thermal regime of a group of gas wells in the Srednetyungskoe field

    Mathematical notes of NEFU, 26:3 (2019),  109–119
  7. Extension of an algorithm of flow determination from pressure measurements in gas production and transportation systems

    Prikl. Mekh. Tekh. Fiz., 58:5 (2017),  111–120
  8. The choice of the equation of state in mathematical models of pipeline transportation of natural gas

    Sib. Zh. Vychisl. Mat., 20:3 (2017),  239–249
  9. Numerical modeling of the influence of heat exchange of reservoir beds with enclosing rocks on gas production from a single well

    Sib. Zh. Vychisl. Mat., 16:4 (2013),  337–346
  10. Influence of Non-Isothermal Effects on the Gas Production in the Nothern Regions with the Account of Possibly Hydrate Formation at the Well Bottom Hole

    Vestn. Novosib. Gos. Univ., Ser. Mat. Mekh. Inform., 12:4 (2012),  9–15
  11. The influence of non-isothermal effects on gas production in the Northern regions

    Sib. Zh. Vychisl. Mat., 14:1 (2011),  19–28


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