С.Ф. Максимов, А.Н. Бобров, Е.А. Андреев
60
ISSN 0236-3941. Вестник МГТУ им. Н.Э. Баумана. Сер. Машиностроение. 2017. № 1
According to the results of experimental research and theoreti-
cal elaborations, we obtained an analytical (generalized)
dependence of the electrical resistance of the oil-water mixture
for the real oil of different regions in a wide range of these
impacts changes. We developed a technology and tested on the
bench the prototype model of the device controlling the floo-
ding reduction process in multilayer oil wells which are simul-
taneously exploiting several payout beds. We used a method of
selective throttling of formation water entering the bottomhole
REFERENCES
[1] Arbuzov V.N. Ekspluatatsiya neftyanykh i gazovykh skvazhin [Oil and gas wells exploita-
tion]. Tomsk, TPU Publ., 2011. 198 p.
[2] Baryshnikov A.V. Obosnovanie tekhnologii razrabotki mnogoplastovykh ob''ektov s
primeneniem oborudovaniya dlya odnovremenno-razdel'noy zakachki vody (na primere
litsenzionnoy territorii Priobskogo neftyanogo mestorozhdeniya): avtoref. diss. kand. tekhn.
nauk [Reservoir engineering validation for multi zone objects using dual water flood equip-
ment (using the example of oil-field licensed territory by Ob): Abstract kand. tech. sci. diss.].
Sankt-Peterburg, 2011. 18 p.
[3] Mishchenko I.T. Skvazhinnaya dobycha nefti [Borehole oil production]. Moscow, «Neft' i
gaz» Publ. of Gubkin RGU, 2007. 816 p.
[4] Maksimov S.F., Bobrov A.N., Andreev E.A. Operating efficiency of separating devices in the
power plants which use metallized fuels.
Inzhenernyy zhurnal: nauka i innovatsii
[Engineering
Journal: Science and Innovation], 2013, no. 4 (in Russ.). DOI: 10.18698/2308-6033-2013-4-703
Available at:
http://engjournal.ru/eng/catalog/machin/rocket/703.html[5] Maksimov S.F., Bobrov A.N., Peters
E.Ya. Povyshenie energeticheskoy effektivnosti kom-
binirovannykh raketnykh dvigateley na gibridnykh raznofaznykh toplivakh.
Vestn. Mosk. Gos.
Tekh. Univ. im. N.E. Baumana, Mashinostr.
[Herald of the Bauman Moscow State Tech. Univ.,
Mech. Eng.], 2012, spec. no. 7, pp. 19–28 (in Russ.).
[6] Maksimov S.F., Bobrov A.N., Andreev E.A. Development of operational control systems
of filtration flow characteristics in oil wells.
Izvestiya VUZov. Mashinostroenie
[Proceedings
of Higher Educational Institutions. Маchine Building], 2015, no. 12, pp. 62–70 (in Russ.).
DOI: 10.18698/0536-1044-2015-12-62-70
[7] Sokolovskiy E.V., Maksimov S.F. Patent RF 32191. Ustroystvo dlya regulirovaniya otbora
zhidkosti v protsesse ekspluatatsii skvazhiny [Device for fluid withdrawal regulation in oilwell
exploitation process]. Publ. 10.09.2003.
[8] Kosarev V.E. Kontrol' za razrabotkoy neftyanykh i gazovykh mestorozhdeniy [Control on
oil and gas field development]. Kazan', KGU Publ., 2009. 145 p.
[9] Komarov V.A., Kaminskiy A.E. On average conductivity of mixture with inclusions with
surface conductivity.
Voprosy geofiziki
, 2004, no. 37, pp. 63–75 (in Russ.).
[10] Burdyn' T.A., Zaks Yu.B. Khimiya nefti, gaza i plastovoy vody [Oil, gas oil-and field water
chemistry]. Moscow, Nauka Publ., 2005. 232 p.
[11] Dobrovol'skiy M.V. Zhidkostnye raketnye dvigateli [Liquid rocket engines]. Moscow,
Mashinostroenie Publ., 2015. 464 p.