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Numerical modelling of electroacoustic logging including Joule heating
B. D. Plyushchenkova, A. A. Nikitinb a Keldysh Institute of Applied Mathematics, Russian Academy of Science
b Lomonosov Moscow State University, Faculty of Geology
Abstract:
Modification of Pride equations, describing the interrelated process of acoustic and electromagnetic waves’ propagation in saturated porous medium, arising due to the electrokinetic effect, is proposed. This modification allows taking into account Joule heating
during the propagation of acoustic oscillations, generated by electromagnetic source, and
is implemented by adding “thermoelastic terms” into the state equations for porous fluid
and medium. Temperature change is determined by heat conduction equation. Method of
constructing of corresponding finite-difference scheme in axially symmetric case is described. The results of numerical simulations are presented, which showed that at low
frequencies the Stoneley wave can be used to estimate formation permeability, and the
fast acoustic wave can be used at high frequencies, when the influence of Joule heating
can be neglected. However, if the conductivity of porous or especially borehole fluid is
high enough, then the thermoelastic wave arises due to Joule heating, taking into account
the contribution of which is difficult task due to the nonlinearity of such effect.
Keywords:
electrokinetic effect, Joule heating, numerical modelling, electro-acoustic logging.
Received: 27.06.2019 Revised: 27.06.2019 Accepted: 09.09.2019
Citation:
B. D. Plyushchenkov, A. A. Nikitin, “Numerical modelling of electroacoustic logging including Joule heating”, Matem. Mod., 32:2 (2020), 58–76; Math. Models Comput. Simul., 12:5 (2020), 791–802
Linking options:
https://www.mathnet.ru/eng/mm4155 https://www.mathnet.ru/eng/mm/v32/i2/p58
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Abstract page: | 395 | Full-text PDF : | 74 | References: | 41 | First page: | 5 |
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