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Mechanics
Computational experiment of gas injection
into a gas-bearing reservoir during heat exchange with enclosing rocks
G. I. Ivanovab, V. E. Nikolaevb a North-Eastern Federal University, Yakutsk, Russia
b Institute of Oil and Gas Problems, Siberian Branch of Russian Academy of Science, Yakutsk, Russia
Abstract:
In the computational experiment, the influence of heat exchange through the top and the
bottom of a gas-bearing reservoir with enclosing rocks on the dynamics of temperature
and pressure fields in the process of injection through the single well of real gas at a
temperature equal to the initial reservoir is investigated. The experiment was carried out
with a modified mathematical model of non-isothermal gas filtration, obtained from the
mass and energy conservation laws and the Darcy law. The physical and caloric equations
of the state together with the Newton–Rihman law of heat exchange of a gas reservoir
with enclosing rocks are used as the closing relations. It is shown that the influence of
the heat exchange with environment on the temperature field of a gas-bearing reservoir is
localized in a narrow zone near its top and bottom, though the size of this zone increases
with time.
Keywords:
mathematical modeling, non-isothermal filtration, real gas, finite difference methods.
Received: 16.10.2019 Revised: 16.10.2019
Citation:
G. I. Ivanov, V. E. Nikolaev, “Computational experiment of gas injection
into a gas-bearing reservoir during heat exchange with enclosing rocks”, Chelyab. Fiz.-Mat. Zh., 4:4 (2019), 461–471
Linking options:
https://www.mathnet.ru/eng/chfmj160 https://www.mathnet.ru/eng/chfmj/v4/i4/p461
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Statistics & downloads: |
Abstract page: | 133 | Full-text PDF : | 40 | References: | 22 |
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