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November 2015




Economy, management, law


M.N. Uzyakov (Rosneft Oil Company OJSC, RF, Moscow), M.Yu. Ksenofontov, V.V. Semikashev, A.Yu. Kolpakov (Institute of Economic Forecasting of RAS, RF, Moscow)
System of models for analysis and forecasting of the global and the Russian economy and energy sector


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S.I. Kudryashov, Е.Yu. Belkina (Zarubezhneft JSC, RF, Moscow), А.F. Ismagilov, I.A. Lipatov, I.V. Butsaev, N.S. Abramova (Giprovostokneft OJSC, RF, Samara)
Cost monitoring in oilfield construction at different stages of the investment cycle


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V.L. Ulanov (National Research University Higher School of Economics, RF, Moscow)
Achievablity of new frontiers by energy industries

Key words: energy strategy of Russia, institutional change, self-regulation, ratings, competition

The article substantiates the need to finalize the draft energy strategy of Russia for the period up to the year 2035. It confirms the complexity of creating a multipronged strategy document. It also discloses the application of modern management technologies and shows the importance of institutional transformation of the energy sector industries to achieve new levels of development.

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Geology and geologo-prospecting works


A.S. Romantsov, D.A. Filatov (RN-KrasnoyarskNIPIneft LLC, RF, Krasnoyarsk)
Features of defining porosity of fractured carbonate Riphean reservoirs


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A.A. Zagorovskiy, I.A. Vinogradov, A.S.Komisarenko (TNNC LLC, RF,Tyumen)
Generalization of experience and results in special core research of Verkhnechonskoye oil-field terrigenous formation in Eastern-Siberian petroleum-bearing region


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D.V. Emelyanov, A.V. Zharkov (RN-Nyaganneftegas JSC, RF, Nyagan), D.S. Smirnov, A.S. Glebov, I.A. Likhoded, G.A. Eremyan (TNNC LLC, RF, Tyumen)
Modern approaches to support drilling of horizontal wells in facies-unstable low permeable reservoirs of Tyumen suite of Krasnoleninskoye field


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Working out and operation of oil deposits


S.V. Stepanov, V.V. Vasiliev, A.E. Altunin (TNNC LLC, RF, Tyumen)
An improved analytical method for separating commingled production and injection flows by reservoirs

Key words: commingled reservoir development, multilayer reservoir, analytical method for separating of commingled production and injection, CRM

The article describes an analytical method for separating commingled production and injection flows by reservoirs. The method is based on the application of analytical solution of material balance equation to a multilayer reservoir; therefore it takes into account the energy of reservoir system.
References
1. Altunin A.E., Semukhin M.V., Stepanov S.V., Using the material balance and the fuzzy sets theory to solve the problems of recovery separation at simultaneous development of several reservoirs (In Russ.), Neftyanoe khozyaystvo = Oil Industry, 2012, no. 5, pp. 56-60.
2. Sayarpour M., Zuluaga E., Kabir C.S., Lake W.L., The use of capacitance-resistive models for rapid estimation of waterflood, SPE 110081, 2007.
3. Vasil'ev V.V., Numerical modelling of cyclic reservoir flooding with the increased initial water saturation (In Russ.) Neftyanoe khozyaystvo = Oil Industry, 2009, no. 7, pp. 94-96.
4. Vasil'ev V.V., Study of high gor oil reservoirs development features using test model (In Russ.) Neftyanoe khozyaystvo = Oil Industry, 2010, no. 3, pp. 77-79.
5. Vladimirov I.V., Vladimirov V.V., Titov A.P. et al., Some aspects of oil stocks recovery out of permeably non-homogeneous lit-par-lit collectors during anisothermic water flooding (In Russ.), Neftepromyslovoe delo, 2010, no. 1, pp. 11-16.
6. Entov V.M., Zazovskiy A.F., Gidrodinamika protsessov povysheniya nefteotdachi (Hydrodynamics of EOR process), Moscow: Nedra Publ., 1989, 232 p.

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N.A. Cheremisin, I.A. Rzaev, D.A. Alekseev (TNNC LLC, RF, Tyumen)
Impact of clay spatial coherence and filtration-capacitive properties on field development


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A.Ya. Davletbaev, R.R. Ismagilov, D.S. Ivashchenko (RN-UfaNIPIneft LLC, RF, Ufa)
Features of IPR curves in case of modified (fast) gas well tests


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S.V. Shikhov (Rosneft Oil Company OJSC, RF, Moscow), D.V. Yemelyanov, A.S. Krivulyak (RN-Nyaganneftegas LLC, RF, Nygan), S.V. Shipichkin, А.V. Knyazev (TNNC LLC, RF, Tyumen)
Express-method for quantitative analysis of waterflooding pattern


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O.A. Loznyuk, V.N. Surtaev, R.A. Shaybakov (Rosneft Oil Company OJSC, RF, Moscow),R.R. Murtazin, R.R. Islamov, F.N. Nigmatullin (RN-UfaNIPIneft LLC, RF, Ufa), A.V. Sakhan (RN-Purneftegas LLC, RF,
Development of gas deposits in the Turonian low-permeability reservoirs

Key words: low permeability reservoir, natural gas, Turonian

The paper presents the results of the research project of testing technology development of low-permeability Turonian gas reservoirs. During project in pilot areas Kharampurskoye field were drilled and tested three gas wells with different completion: a vertical fractured well, horizontal well and horizontal wells with three stages of hydraulic fracturing.

References
1. Gusakov V.N., Telin A.G., Singizova V.Kh., Makatrov A.K., Research the core of Turonian gas reservoir for the selection of optimal technological liquids (In Russ.), Oil&Gas Journal Russia, 2015, pp. 44–47.
2. O.A. Loznyuk, V.N. Surtaev, A.V. Sakhan' et al., A multistage stimulation operation to unlock the gas potential of the turonian siltstone formation in Western Siberia (In Russ.), SPE-176706, 2015.
3. Davletbaev A.Ya., Zhilko E.Yu., Islamov R.R. et al., Features of gas well testing in reservoir with low permeability, SPE-176704, 2015.
4. Davletbaev A.Ya., Zhilko E.Yu., Murtazin R.R., Gazodinamicheskie issledovaniya skvazhin na opytnom uchastke mestorozhdeniya s nizkopronitsaemym kollektorom (Gas-dynamic studies of wells in the experimental part of the deposit with low-permeability collector), Proceedings of conference “Monitoring razrabotki neftyanykh i gazovykh mestorozhdeniy: razvedka i dobycha” (Monitoring the development of oil and gas field: exploration and production), 13-15 May, 2015, Tomsk: Publ. of SIAM, 2015.

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A.N. Parfenov, A.E. Letichevskiy, A.N. Nikitin, N.A. Ostankov (Samaraneftegas JSC, RF, Samara), I.D. Latypov, R.Ya. Kharisov (RN-UfaNIPIneft LLC, RF, Ufa)
Prospects of combined proppant-acid hydraulic fracturing in Samaraneftegas JSC

Key words: carbonates, acid fracturing, hydraulic fracturing, well acidizing, large volume acid treatment, flow rate decreasing, duration of increased flow rate.

This paper briefly describes the history and experience of acid treatment almost from the beginning of the Samara region deposits development. A separate chapter is devoted to lessons learned of hydraulic fracturing with proppant in wells that penetrated the carbonate reservoir; the analysis of follow-up working of the wells has become a prerequisite for the initiation of the project of the combined acid and proppant fracturing.
References
1. Parfenov A.N., Shashel' V.A., Sitdikov S.S., Features and experience of proppant hydrofracturing application at Samaraneftegaz OAO (In Russ.), Neftyanoe khozyaystvo = Oil Industry, 2007, no. 11, pp. 38-41.
2. Parfenov A.N., Sitdikov S.S., Evseev O.V. et al., Particularities of Hydraulic Fracturing in Dome-Type Reservoirs of Samara Area in the Volga-Urals Basin (In Russ.), SPE 115556, 2008.
3. Parfenov A.N., Letichevskiy A.E., Evseev O.V. et al., Fracturing of high viscosity oil reservoir in the Samara region (In Russ.), Neftyanoe khozyaystvo = Oil Industry, 2014, no. 1, pp. 72-77.
4. Gilaev G.G., Manasyan A.E., Letichevskiy A.E. et al., Hydraulic fracturing as field development instrument in Samara region (In Russ.), Neftyanoe
khozyaystvo = Oil Industry, 2014, no. 11, pp.65-69.
5. Williams B.B., Gidley J.L., Schechter R.S., Acidizing fundamentals, New York: SPE Monograph Series, 1979, 124 p.


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T.A. Ismagilov (RN-UfaNIPIneft LLC, RF, Ufa)
Application of water control technologies, considering the mechanisms of injected water breakthrough


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Designing of arrangement of deposits


A.A. Kaverin, PhD, A.M. Korkin, P.V. Belyaev (Rosneft Oil Company OJSC, RF, Moscow)
Assessment of effects from implementation of unified design solutions in Rosneft Oil Company OJSC


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G.G. Gilaev, A.E. Manasyan (Samaraneftegas JSC, RF, Samara), A.F. Ismagilov, I.G. Khamitov, M.S. Meleshko, V.A. Smyslov, A.P. Morozov (SamaraNIPIneft LLC, RF, Samara)
Optimization of surface facilities parameters


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Oil refining


A.V. Sidorov, O.E. Eremina, I.A. Veselova, V.G. Lakeev, E.A. Goodilin (Lomonosov Moscow State University, RF, Moscow), V.N. Surtaev (Rosneft Oil Company OJSC, RF, Moscow)
New highly sensitive sensors for SERS analysis of oil components and markers using recognizing complexes


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Economy, management, law


Standardization and technical regulation


G. I. Shmal (Association of Oil and Gas Equipment Producers, RF, Moscow), V. Ya. Kershenbaum, T.A. Guseva, L.Yu. Belozertseva( Gubkin Russian State University of Oil and Gas, RF, Moscow)
New stage of standardization in oil and gas industry

Key words: oil and gas industry, standardization, the concept and the program of standardization in oil and gas industry

This paper discusses the current state of the oil and gas industry standards. The basic principles of systematization of the documents making the Program for standardization of oil and gas industry till 2020 and a technique of its formation are stated. Results of creation of the Program and analysis of the obtained data are presented.
References
1. Kershenbaum V.Ya., Belozertseva L.Yu., Problems of import substitution of oil and gas equipment (In Russ.), Oborudovanie i tekhnologii dlya neftegazovogo kompleksa, 2014, no. 5, pp. 4-6.
2. Kershenbaum V.Ya., Standardization and competitiveness of oil and gas
equipment (In Russ.), Oborudovanie i tekhnologii dlya neftegazovogo kompleksa, 2014, no. 1, pp. 4-6.
3. Kershenbaum V.Ya., Avanesov V.S., Guseva T.A., Belozertseva L.Yu., Scientific and pedagogic school of Gubkin Russian State Oil and Gas University "Competitiveness
and quality management in the oil and gas sector." The concept
and program for the development of standardization in the oil and gas sector
until 2020 (In Russ.), Upravlenie kachestvom v neftegazovom komplekse, 2015, no. 1, pp. 10-13.

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Shelf development


I.P. Zaikin, К.V. Kempf, R.R.Naboka (Zarubezhneft JSC, RF, Moscow)
Prospects of Russian arctic shelf fields development


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Geology and geologo-prospecting works


I.Yu. Chernova, I.I. Nugmanov, D.K. Nourgaliev, D.I. Khasanov, Z.M. Slepak, K.M. Karimov (Kazan (Volga Region) Federal University, RF, Kazan)
DEM digital processing as applied to detection of zones of excessive fracturing and fluid dynamic activity in sedimentary cover


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S.R. Bembel, A.I. Tseplyaeva (Tyumen Branch of SurgutNIPIneft, RF, Tyumen)
Mapping features and prospects of Pre-Jurassic oil and gas deposits in western the Khanty-Mansijsk Autonomous District - Ugra


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M.Ya.Borovskiy (Geofizservice OOO, RF, Kazan), A.S.Borisov, I.N.Plotnikova (Kazan (Volga Region) Federal University, RF, Kazan)
Geophysical surveying for the detection of hydrocarbons in shale formations in the territory of the Republic of Tatarstan


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D.I. Khassanov, K.I. Brednikov, B.G. Chervikov (Kazan (Volga Region) Federal University, RF, Kazan)
Application of a dipole-electrical sounding on stage of the exploring natural deposits of bitumens and high-viscosity oils


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M.E. Taygina, O.R. Privalova, T.S. Baranov, E.A. Karimova, F.F. Zijatdinova, S.D. Darii (BashNIPIneft LLC, RF, Ufa), V.V. Tyapin (Burneftegaz LLC, RF, Tyumen)
Lithotypes determination based on core and log data for Sorovskoye oil field


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Drilling of chinks


I.N. Gayvoronsky, A.A. Merkulov (VNIPIvzryvgeophysika JSC, RF, Ramenskoye), A.V. Shumilov, A.D. Savich (Permneftegeophysika, RF, Perm), I.A. Chernykh (LUKOIL-PERM LLC, RF, Perm), V.M. Shurov (Samotlorneftegas JSC, RF, Nizhnevartovsk)
Choosing of oil and gas wells completion strategy


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Working out and operation of oil deposits


K.D. Shumatbaev, E.K. Gaynullina, A.E. Malysheva, O.V. Emchenko, K.Yu. Murinov (BasNIPIneft LLC, RF, Ufa), A.V. Zaynulin (Bashneft PJSOC, RF, Ufa)
Integrated approach to secondary porosity characterization for complex carbonate reservoirs of R.Trebs oil field


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V.I. Galkin, V.A. Repina (Perm National Research Polytechnic University, RF, Perm)
Development of the statistical forecasting model of oil production rate (case study of oil reservoir formation Tl2a one of the oilfield of the Bashkir arch)


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А.М. Kunakovа, V.N. Duryagin (Gazpromneft NTC LLC, RF, Saint-Petersburg), K.V. Strizhnev (Gazpromneft-Angara LLC, RF, Saint-Petersburg), D.V. Mardashov, A.M. Duryaginа (National mineral resources university (University of Mines), RF, Saint-Petersburg)
Inorganic gel-forming composition for water shut-off in carbonate reservoir of fractured-porous type


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Technics and technology of oil recovery


A.V. Raspopov, A.S. Kazantsev, S.A. Kondratiev, I.V. Averina, M.S. Badliuk, S.N. Glazyrin (PermNIPIneft Branch of LUKOIL-Engineering LLC in Perm, RF, Perm), T.R. Baldina (LUKOIL-PERM LLC, RF, Perm
Water shutoff treatment under water coning


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A.V. Oshibkov, D.D. Vodorezov, K.V. Syzrantseva, S.A. Frolov (Tyumen State Oil and Gas University, RF, Tyumen), M.V. Dvoynikov (National Mineral Resources University (University of Mines), RF, Saint-Petersburg), D.L. Bakirov (KogalymNIPIneft Branch of LUKOIL-Engineering LLC in Tyumen, RF, Tyumen)
Influence of sidetracking characteristics on multilateral well construction reliability


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The oil-field equipment


N.G. Ibragimov, V.G. Fadeev, A.V. Artyukhov (Tatneft PJSC, RF, Almetyevsk), N.A. Bogatov, I.V. Vershkov, Yu.I. Bartenev (TEMP NPO OOO, RF, Moscow), A.A. Bogatov, D.R. Salikhyanov (Ural Federal University, RF, Ekaterinburg)
Restoring of servicing characteristics of pumping and compression pipe by lining method


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E.V. Belyaeva, N.A. Loginova, E.E. Lapin, A.V. Anikeev, A.V. Rizhenkov (National Research University Moscow Power Engineering Institute, RF, Moscow)
About choice of optimal composition syntactic foams based on silicone rubber for create flexible fastremovable thermal insulation constructions


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V.S. Verbizky, K.A. Goridko, A.E. Fedorov, A.V. Dengaev (Gubkin Russian State University of Oil and Gas, RF, Moscow), V.N. Martynov (Research and Production Company RANKO OOO, RF, Moscow)
Booster pump-compressor system performance for pumping gas and water-gas mixture


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Pipeline transport of oil


A.V. Rizhenkov (National Research University Moscow Power Engineering Institute, RF, Moscow)
About reducing the hydraulic resistance of pipeline during the oil flow


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Information technology


E.Yu. Ryabchenko, O.N. Sherstyukov, E.V. Danilov, I.V. Filin., A.R. Gayazutdinov, M.N. Safonov, V.M. Maramzin, A.S. Soldatenkova (Kazan (Volga Region) Federal University, RF, Kazan)
Wireless mud-logging system for well drilling monitoring


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Ecological and industrial safety


O.P. Yermolaev, K.A. Maltsev, V.V. Mozzherin, A.F. Giljazov, A.Z. Satdarov (Kazan (Volga Region) Federal University, RF, Kazan), R.M. Gareev (Tatneft PJSC, RF, Almetyevsk), O.E. Mishanina (TatNIPIneft, RF, Bugulma)
Estimation of probability, height and area of flood in the bottoms of rivers’ valleys due to the snowmelt flood runoff in order to ensure safety of oil production


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N.V. Chukhareva, A.A. Yurkin (Tomsk Polytechnic University, RF, Tomsk)
Thermal activation of peat sorption properties and humic acids in respect to oil and organic solvents


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