Showing 1 - 20 results of 314 for search '"Энергетические затраты"', query time: 0.79s Refine Results
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    Academic Journal

    Source: Socio-Pedagogical Issues of Education and Upbringing; 180-181 ; Социально-педагогические вопросы образования и воспитания; 180-181

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    Relation: info:eu-repo/semantics/altIdentifier/isbn/978-5-907688-27-8; https://phsreda.com/e-articles/10487/Action10487-106602.pdf; Булич Э.Г. Физическая культура и здоровье / Э.Г. Булич. – М.: Знание, 1991.; Курамшин Ю.Ф. Теория и методика физической культуры: учебник / Ю.Ф. Курамшин. – М.: Советский спорт, 2003.; Верхошанский Ю.В. Основы специальной силовой подготовки в спорте / Ю.В. Верхошанский. – М.: Физкультура и спорт, 1970.; Матвеев Л.П., Новиков А.Д. Теория и методика физического воспитания: учеб. для ин-тов физ. культуры. изд. 2-е. испр. и доп. (в 2-х т.) / Л.П. Матвеев, А.Д. Новиков. – М.: Физкультура и спорт, 1976.; Ашмарин Б.А. Теория и методика физического воспитания: учеб. для студентов фак. физ. культуры пед. ин-тов / Б.А. Ашмарин, Ю.А. Виноградов, З.Н.Вяткина [и др.]; под ред. Б.А. Ашмарина. – М.: Просвещение, 1990.; Холодов Ж.К. Теория и методика физического воспитания и спорта: учеб. пособие для студ. высш. учеб. заведений / Ж.К. Холодов, B.C. Кузнецов. – М.: Издательский центр «академия», 2000.; https://phsreda.com/article/106602/discussion_platform

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    Academic Journal

    Source: Eastern-European Journal of Enterprise Technologies; Том 2, № 5 (98) (2019): Applied physics; 49-54
    Восточно-Европейский журнал передовых технологий; Том 2, № 5 (98) (2019): Прикладная физика; 49-54
    Східно-Європейський журнал передових технологій; Том 2, № 5 (98) (2019): Прикладна фізика; 49-54

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    Academic Journal

    Source: Technology audit and production reserves; Том 3, № 5(41) (2018): Macroeconomics; 22-29
    Technology audit and production reserves; Том 3, № 5(41) (2018): Макроекономіка; 22-29
    Technology audit and production reserves; Том 3, № 5(41) (2018): Макроэкономика; 22-29

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    Academic Journal

    Contributors: Самойчук, Кирило Олегович, Самойчук, Кирилл Олегович, Samoichuk, Kyryl

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    Relation: Праці Таврійського державного агротехнологічного університету : наукове фахове видання;Вип. 21, т. 1. (С. 109-115); http://elar.tsatu.edu.ua/handle/123456789/14014

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    Academic Journal

    Source: ENERGETIKA. Proceedings of CIS higher education institutions and power engineering associations; Том 64, № 2 (2021); 143-151 ; Энергетика. Известия высших учебных заведений и энергетических объединений СНГ; Том 64, № 2 (2021); 143-151 ; 2414-0341 ; 1029-7448 ; 10.21122/1029-7448-2021-64-2

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    Relation: https://energy.bntu.by/jour/article/view/2057/1774; Belsky A. A., Dobush V. S. (2017) Autonomous Electrothermal Facility for Oil Recovery Intensification Fed by Wind Driven Power Unit. IOP Conference Series: Earth and Environmental Science, 87 (3), 032006. https://doi.org/10.1088/1755-1315/87/3/032006.; Galyautdinov I. M., Krasnov O. S. (2016) Assessment Potential of Oil Fields Being in the Late Stage of Enhanced Energy Efficiency. Neftegazovaya Geologiya – Teoriya i Praktika = Petroleum Geology – Theoretical and Applied Studies, 11 (1), 1–18. https://doi.org/10.17353/2070-5379/7_2016 (in Russian).; Abildinova S. K., Musabekov R. A., Rasmukhametova A. S., Chicherin S. V. (2019) Evaluation of the Energy Efficiency of the Stage Compression Heat Pump Cycle. Energetika. Izvestiya Vysshikh Uchebnykh Zavedenii i Energeticheskikh Ob’edinenii SNG = Energetika. Proceedings of the CIS Higher Education Institutions and Power Engineering Associations, 62 (3), 293–302. https://doi.org/10.21122/1029-7448-2019-62-3-293-302 (in Russian).; Panevnyk D. A., Panevnyk A. V. (2020) Improving the Energy Efficiency of the Use of Borehole Jet Pumps. Energetika. Izvestiya Vysshikh Uchebnykh Zavedenii i Energeticheskikh Ob’edinenii SNG = Energetika. Proceedings of the CIS Higher Education Institutions and Power Engineering Associations, 63 (5), 462–471. https://doi.org/10.21122/1029-7448-2020-63-5-462-471 (in Russian).; Dmitriev A. A., Gerasimov V. E. (2020) To the Issue of Complex Increasing Energy Efficiency of Electric Receivers of Oil and Gas Fields. IOP Conference Series: Earth and Environmental Science, 421 (7), 072009. https://doi.org/10.1088/1755-1315/421/7/072009.; Gasumov R. A. (2018) Causes of Fluid Entry Absence when Developing Wells of Small Deposits (on the Example of Khadum-Batalpashinsky Horizon). Zapiski Gornogo Instituta = Journal of Mining Institute, 234, 630–636. https://doi.org/10.31897/PMI.2018.6.630 (in Russian).; Kreidenko T. F., Chernyaev M. V., Grigoreva E. M., Korenevskaya A. V. (2018) Enhancing the Energy Efficiency of Oil and Gas Companies as a Factor of their Sustainable Development. AD ALTA: Journal of Interdisciplinary Research, 8 (1S4), 176–182.; Belsky A. A., Korolyov I. A. (2018) Thermal Oil Recovery Method Using Self-Contained Windelectric Sets. Journal of Physics: Conference Series, 1015 (5), 052001. https://doi.org/10.1088/1742-6596/1015/5/052001.; Zyrin V. O., Vasiliev B. U. (2016) Designing the Electrothermal Complex Control System for Enhanced Oil Recovery. International Journal of Applied Engineering Research, 10 (24), 44183–44188.; Zyrin V. O. (2018) Electrothermal Complex for Heavy Oil Recovery: Analysis of Operating Parameters. International Journal of Mechanical Engineering and Technology, 9 (11), 1952–1961.; Kuzovkin A. I. (2018) Energy Prices and Energy Efficiency. Mikroekonomika = Microeconomics, (5), 78–81 (in Russian).; Zakirov D. G., Mukhamedshin M. A., Zakirov G. D., Fayzrakhmanov R. A., Nikolaev A. N., Ryumkin A. A. (2019) Problems and Ways to Improve Energy Efficiency, Environmental Performance and Energy Consumption of Oil Mining. Neftyanoe Khozyaystvo = Oil Industry, (10), 90–93 (in Russian).; Golubev I. A., Suprun I. K. Application of Magnetic Units for Intensification of Water Treatment. IOP Conference Series: Materials Science and Engineering, 862, 062051. https://doi.org/10.1088/1757-899X/862/6/062051.; Verisokin A. E., Serdyukov D. Yu., Vasil'yev V. A., Gun'kina T. A., Shesterikova R. E. (2020) Simulation of Proppantflowback from Hydraulic Fractures. IOP Conference Series: Materials Science and Engineering, 860, 012001. https://doi.org/10.1088/1757-899X/860/1/012001.; Verisokin A. E., Vasil'yev V. A., Gun'kina T. A. (2019) Packer Design Research Used in Hydraulic Fracturing. IOP Conference Series: Earth and Environmental Science, 378 (1), 012106. https://doi.org/10.1088/1755-1315/378/1/012106.; Belsky A. A., Dobush V. S., Morenov V. A., Sandyga M. S. (2018) The Use of a Wind-Driven Power Unit for Supplying the Heating Cable Assembly of an Oil Well, Complicated by the Formation of Asphalt-Resin-Paraffin Deposits. Journal of Physics: Conference Series, 1111 (1), 1–7. https://doi.org/10.1088/1742-6596/1111/1/012052.; Tarasov V. I., Kaverin M. N., Yakimov S. B. (2014) Comparison of Energy Consumption for Different Artificial Lift Methods at JSC “Rosneft”. Nauchno-Tekhnicheskii Vestnik OAO “NK “Rosneft” [Scientific and Technical Bulletin of JCS “Rosneft”], (3), 5–11 (in Russian).; Masakov I. D. (ed.) (2019) Industrial Production in Russia: Statistical Digest. Мoscow, Rosstat Publ. 286 (in Russian).; Kamaletdinov R. (2018) Major Trends in Artificial Lift in Russia. Advisory Board on Mechanized Oil Extraction. Oil & Gas Journal Russia, (6–7). Available at: http://pump-sovet.com/upload/statya_kamaletdinov_oil&gas_journal_%E2%84%966-7_2018.pdf. (Accessed 22.09.2020) (in Russian).; Hakimyanov M. I., Shafikov I. N. (2013) Analysis of Energy Consumption in the Process of Artificial Oil Lift Using Electric Submersible Pumps. Elektrotekhnicheskie i Informatsionnye Kompleksy i Sistemy = Electrical and Data Processing Facilities and Systems, 9 (3), 37–41 (in Russian).; Ginzburg M. Ya., Pavlenko V. I., Klimov V. P. (2010) On ESP Energy Parameters. Inzhenernaya Praktika [Engineering Practice], (8), 12–16 (in Russian).; Kozlova L. P., Belov A. M., Kozlova O. A. (2020) Improving the Energy Efficiency of the Electric Drive of the Pumping Equipment. IEEE. Conference of Russian Young Researchers in Electrical and Electronic Engineering (EIConRus). https://doi.org/10.1109/eiconrus49466.2020.9039408.; Sagdatullin A. M. (2014) Analysis and Synthesis of the Structure of the Pump Electric Drive Control System of Oil Treatment Process. Izvestiya Vysshikh Uchebnykh Zavedenii. Neft' i Gaz = Proceedings of the CIS Higher Education Institutions Oil and Gas Studies, (6), 106–112 (in Russian).; Sukhanov A., Gansheng Y., Jichao Y., Perelman O., Derkach N. (2018) Enhancement of Electric Submersible Pump Energy Efficiency by Replacing an Inductive Motor with a Permanent Magnet Motor. Oil Gas European Magazine, 44 (3), 146–150.; Khakimyanov M. I., Shafikov I. N., Khusainov F. F. (2016) Electric Submersible Pumps in Oil Production and their Efficiency Analysis. Proc. of the 4th International Conference on Applied Innovations in IT, (ICAIIT), 35–38.; Kovalchuk M. S., Poddubniy D. A. (2018) Diagnosis of Electric Submersible Centrifugal Pump. IOP Conference Series: Earth and Environmental Science, (115), 012026. https://doi.org/10.1088/1755-1315/115/1/012026.; Hakimyanov M. I. (2014) Specific Energy Consumption in the Process of Artificial Oil Lift Using Downhole Sucker Rod Pumps. Vestnik Ufimskogo Gosudarstvennogo Aviatsionnogo Tekhnicheskogo Universiteta = Vestnik USATU, 2 (63), 54–60 (in Russian).; Sultanov B. Z., Sidorkin D. I. (2004) Power Demands of Tophead Progressive Cavity Pump Unit. Tekhnologii Toplivno-Energeticheskogo Kompleksa [Technologies of Fuel & Energy Complex], (3), 31–34 (in Russian).; Urazakov K. R., Latypov B. M., Ismagilov R. R. (2015) Methodology for Calculating Sucker Rod Strings of Progressive Cavity Pumps. Neftegazovoe Delo = Oil & Gas Business, (4). Available at: http://ogbus.ru/files/ogbus/issues/4_2015/ogbus_4_2015_p72-94_UrazakovKR_ ru.pdf (in Russian).; Kaverin M. N., Kuryaev S. V. (2014) The Method of Planning and Analysis of Energy Efficiency in Oil Production. Nauchno-Tekhnicheskii Vestnik OAO “NK “Rosneft” [Scientific and Technical Bulletin of JCS “Rosneft”], (3), 12–17 (in Russian).; https://energy.bntu.by/jour/article/view/2057

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    Academic Journal

    Source: Eastern-European Journal of Enterprise Technologies; Том 5 № 8 (113) (2021): Енергозберігаючі технології та обладнання; 30-37
    Eastern-European Journal of Enterprise Technologies; Том 5 № 8 (113) (2021): Энергосберегающие технологии и оборудование; 30-37
    Eastern-European Journal of Enterprise Technologies; Vol. 5 No. 8 (113) (2021): Energy-saving technologies and equipment; 30-37

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