MATEMATICHESKOE MODELIROVANIE I PARALLEL'NYE VYCHISLENIYA PROCESSOV TEPLOMASSOPERENOSA PRI EKSPLUATACII EDINOGO KOMPLEKSA «NEFTYANOY PLAST - SISTEMA SKVAZHIN - ELEKTROCENTROBEZHNYE NASOSY»
Abstract and keywords
Abstract (English):
An united mathematical model of interconnected heat and mass transfer in the non-uniform porous oil reservoir covered by arbitrary located injecting and producing wells equipped with electrical submersible pumping systems is developed. The parallel calculation technologies are used in numerical computations and visualization of its results. An availability of the united model and significant decreasing of the problem time at parallel computing in comparison with sequential ones are demonstrated by examples of the numerical experiments.

Keywords:
численное моделирование, фильтрация, нефтяной пласт, система скважин, тепломассоперенос, многофазный поток, электроцентробежный насос, numerical simulation, filtration, oil reservoir, well system, heat- and mass transfer, multiphase flow, centrifugal electric pump
References

1. A.N. Chekalin, Chislennye resheniya zadach fil'tracii v vodoneftyanyh plastah. Izd-vo Kazan. gos. un-ta, Kazan', 1982. 208 s.

2. A.N. Chekalin, V.M Konyuhov, A.V Kosterin, Dvuhfaznaya mnogokomponentnaya fil'traciya v neftyanyh plastah slozhnoy struktury. Kazan. gos. un-t, Kazan', 2009. 140 s.

3. M.A. Pudovkin, A.N. Salamatin, V.A. Chugunov, Temperaturnye processy v deystvuyuschih skvazhinah. Izd-vo Kazan. gos. un-ta, Kazan', 1977. 168 s.

4. A.N. Salamatin, Matematicheskie modeli dispersnyh potokov. Kazan': Izd-vo Kazan. gos. un-ta, 1987. 172 s.

5. V.M. Konyuhov, Dispersnye potoki v neftyanyh skvazhinah. Izd-vo Kazan. gos. un-ta, Kazan', 1990. 160 s.

6. R.I. Nigmatulin, Dinamika mnogofaznyh sred. Ch. I. Nauka, Gl. red. fiz.-mat. lit., Moskva, 1987. 464 s.

7. L.R. Minibaeva, A.G. Muhametzyanova, A.V. Klinov, Modeli turbulentnosti dlya adekvatnogo opisaniya polya skorosti v apparatah s peremeshivayuschimi ustroystvami. Vestnik KTU, 1, 469-478, (2010).

8. M.H. Hayrullin, M.N. Shamsiev, P.E. Morozov, A.I. Abdullin, V.R. Gadil'shina, I.T. Salim'yanov, Chislennoe reshenie pryamyh i obratnyh zadach teplomassoperenosa v neftyanyh plastah. Vestnik KTU, 24, 125-129, (2013).

9. V.M. Konyuhov, I.V. Konyuhov, VANT. Ser. Matem. modelirovanie fiz. processov, 4, 60-69 (2012).

10. P.D. Lyapkov, Neftyanoe hozyaystvo, 5, 38-40 (1979).

11. V.M. Konyuhov, I.V. Konyuhov, S.V. Krasnov, VANT. Ser. Matem. modelirovanie fiz. processov, 3, 34-44 (2012).

12. P.D. Lyapkov, V kn.: Spravochnoe rukovodstvo po proektirovaniyu razrabotki i ekspluatacii neftyanyh mestorozhdeniy. Dobycha nefti. Nedra, Moskva, 1983, C. 237 - 293.

13. V.M. Konyuhov, I.V. Konyuhov, S.V. Krasnov, V sb. «Supervychisleniya i matematicheskoe modelirovanie». Tr. 14 Mezhdunar. seminara (Sarov, 1-5 oktyabrya 2012). FGUP «RFYaC-VNIIEF», Sarov, 2013, S. 353 - 362.

14. Tehnologicheskiy reglament OAO «SAMARANEFTEGAZ» po ekspluatacii UECN. Versiya 4.0. Samara, 2007. 41 s.

15. G. Shildt, C# 4.0: polnoe rukovodstvo. Per. s angl. OOO "I.D. Vil'yams", Moskva, 2011. 1056 s.

16. J. Sanders, E. Kandrot, CUDA by example: an introduction to general-purpose GPU programming. Addison-Wesly, Upper Saddle River, NJ, 2010. 313 c.

17. A.V. Boreskov, A.A. Harlamov, Osnovy raboty s tehnologiey CUDA. DMK Press, Moskva, 2010. 232 s.

18. V.M. Konyuhov, A.N. Chekalin, M.G. Hramchenkov, Migraciya raznoplotnostnyh zhidkostey v vodonosnyh plastah slozhnoy struktury. Izd-vo Kazanskogo matemat. obschestva, Kazan', 2005. 160 s.

19. R.N. Diyashev, R.S. Hisamov, V.M. Konyuhov, A.N. Chekalin, Forsirovannyy otbor zhidkosti iz kollektorov s dvoynoy poristost'yu, nasyschennyh nen'yutonovskimi neftyami. FEN, Kazan', 2012. 247 s.

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