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Economic practicability of the implementation of the mine refrigeration technology for normalization of thermal conditions

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The purpose of this research is to substantiate a technical solution for improving the working conditions for the thermal factor in the extraction of oil by the thermoshaft method using the mine refrigeration technology. The review of manufacturers and technical characteristics of refrigeration technology in Russia, CIS countries and Western Europe was conducted. It was shown that the use of a water cooling machine in the mine air conditioning system will reduce the air temperature in the oil production gallery to the required values and will allow to abandon the long-term construction of a surface stationary refrigeration station. Normalization of the thermal regime reduces the costs of benefits and compensation for work in harmful labor conditions and improves the quality of service of production wells by operators. The practical significance is that the proposed project for the introduction of air conditioning has a high level of profitability, and its payoff will occur in the second year of operation.
Rocznik
Strony
271--284
Opis fizyczny
Bibliogr. 24 poz., rys., tab., wykr.
Twórcy
  • Kuban State Technological University, 2 Moskovskaya Str., 350072, Krasnodar, Russia
  • P.A. Stolypin Ulyanovsk State Agrarian University, Russia
  • М.K. Ammosov North-Eastern Federal University, Yakut State Agricultural Academy, Russia
  • М.K. Ammosov North-Eastern Federal University, Yakut State Agricultural Academy, Russia
  • Kalmyk State University Named After B.B. Gorodovikov, Russia
Bibliografia
  • [1] Alabiyev V.R, 2014. The basic directions of development of ways and means of air cooling in coal mines of Ukraine. Bulletin of Transbaikal State University 06 (109), 35-46.
  • [2] Annual report 2016. A sea of opportunities (PJSC “Lukoil”). Available at: http://www.lukoil.ru/InvestorAndShareholder-Center/ReportsAndPresentations/AnnualReports (accessed 06 November 2017).
  • [3] Botelho T.I.M., Figueiredo G.S., Praxedes F.M., Teixeira J.V.U., Monteiro E.B., 2019. Influence of the use of Carapa guianensis oil (andiroba oil) compared with commercial cutting fluid in the turning process of the ABNT 1045 steel grades. Periodico Tche Quimica 16 (33), 927-935.
  • [4] Eurotech. Available at: http://www.compensus.pl/eurotech_folder.pdf (accessed 10 October 2017).
  • [5] Forecasting and normalization of thermal conditions in coal mines: СОУ-Н 10.1.00174088.027-2011. Official publ. Kyiv: Ministry of Energy and Coal Industry of Ukraine, 188.
  • [6] Gerasimov I.V., Konoplev Yu.P., Gulyaev V.E., 2011. Integrated development of the Yaregskoye oil and gas field. The Territory of Oil and Gas 11, 26-31.
  • [7] Isayevich, A.G. 2012. Peculiarities of airing oil mines. Strategy and processes of development of geo-resources, Perm: GI UB RAS 10, 247-248.
  • [8] Kruk M.N., Nikulin A.Ju., 2016. Economic estimation of project risks when exploring sea gas and oil deposits in the Russian arctic. International Journal of Economics and Financial Issues 6 (2), 138-150.
  • [9] Kruk M.N., Pavlov A.N., 2013. Possibilities for assessing geological and economic risks in the development of mineral resources in the Arctic seas of Russia. St. Petersburg: RSHU, 101.
  • [10] Levin L.Yu., 2013. Development of a mine underground air conditioning plant for the conditions of the deep mine “Tai-myrsky”. Strategy and Processes of Georesources Development, Perm: GI UrB RAS 11, 253-255.
  • [11] Mobile mine air-conditioning KPSH-300. Available at: http://holodmash.od.ua/ru/kpsh-300/ (accessed 21 October 2017).
  • [12] Nasr T.N., 2014. Heavy oil recovery in Russia: following the Canadian lead SAGD & ES-SAGD technologies. Rogtec, 7, 78-85.
  • [13] Nor M.A., Nor Ye.V., Tskhadaya N.D., 2017. Sources of a heating microclimate in the development of deposits of high-viscosity oils by the thermoshaft method. Notes of the Mining Institute, 360-363. DOI: 10.18454/PMI.2017.3.360.
  • [14] Operational information of the Federal State Statistics Service Data on the wages of employees of organizations by categories of personnel and professional groups of employees for October 2015. (published on 04.04.2016) Avail-able at: http://www.gks.ru/wps/wcm/connect/rosstat_main/rosstat/ru/statistics/wages/labour_costs/# (accessed 06 November 2017).
  • [15] Order of the Federal Service for Ecological, Technological and Nuclear Supervision dated 28.11.2016 No. 501 “On Ap-proval of Federal Norms and Rules in the Field of Industrial Safety” Rules for Industrial Safety in the Development of Oil Fields by Mine Method “(Registered 21.12.2016 No. 44837). Available at: http://publication.pravo.gov.ru/Document/View/0001201612220026 (accessed 04 November 2017).
  • [16] Order of the Ministry of Construction, Tariffs, Housing and Communal Services of the Republic of Komi No. 15/1-T “On Establishing Tariffs for Electric Energy (Power) Supplied by the USA Energy Center 000 “LUKOIL-Komi” dated March 20, 2017. Available at: http://docs.cntd.ru/document/446167691 (accessed 06 November 2017).
  • [17] PJSC “LUKOIL”. Management’s analysis of the financial condition and results of operations for 2016, 2015 and 2014. Available at: http://www.lukoil.ru/FileSystem/PressCenter/93362.pdf (accessed 23 October 2017).
  • [18] Products and services. Available at: http://www.wat-klima.com/en/products-services-23.html (accessed 10 October 2017).
  • [19] Sednev D.Yu., 2015. Criterion of the length of mine workings by the thermal factor when designing sloping blocks of oil mines. Actual problems of increasing the efficiency and safety of exploitation of mining and oilfield equipment, Perm: PNIPU, 205-209.
  • [20] Termospec. Available at: http://www.termospec.pl/klimatyzacja.html# (accessed 10 October 2017).
  • [21] The Labour Code of the Russian Federation. Available at: http://tkodeksrf.ru/ (accessed 06 November 2017).
  • [22] The message of the Ministry of Finance of the Russian Federation, 15.06.2012. Available at: https://www.minfin.ru/ru/search/?q_4=нефть&pub_date_from_4=16.10.2017&pub_date_to_4=16.10.2017&page_id_4=0&source_id_4=6# (accessed 06 November 2017).
  • [23] Vasiliev S.I., Fomina N.V., Lapushova L.A., Fedotova A.S., Zhuravlev D.N., 2019. Bioecological diagnostics of oil-contaminated soil remediated with polymeric sorbents. Periodico Tche Quimica 16 (33), 641-649.
  • [24] Zhigalov V.S., 2016. Application of thermal insulation of mine workings in the conditions of oil fields of the Yaregskoye field. Strategy and processes of development of geo-resources. Collection of scientific works. Perm: Mining Institute of the Ural Branch of the Russian Academy of Sciences, 301-303.
Uwagi
PL
Opracowanie rekordu ze środków MNiSW, umowa Nr 461252 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2020)
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-3836eae6-e04d-4a1a-8a54-2fa71002ab83
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