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Evaluation of Energy Efficiency, Energy Consumption and Energy Saving in the Production of Oil, Gas and Energy Sectors

Received: 29 December 2015     Accepted: 13 January 2016     Published: 27 January 2016
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Abstract

Energy efficiency, energy consumption and energy savings depend on the performance of energy-technological equipment characterising the operational suitability of it. The operational suitability of the equipment determines the quality of it. Based on energy consumption, fuel consumption and reliability indicators as the formalised quality indicators in energotechnological equipment it is possible to determine the energy efficiency, energy consumption and energy savings of the equipment and therefore select the right production volume indicator (PVI). The aim in determining the fuel and power parameters (FPP) of the oil and gas production units and power sector is to get dependence influencing the energy efficiency (EE), power consumption (PC) and energy saving (ES) of those production units. To solve this problem it was necessary to choose the right (PVI). For that purpose, the issues concerning justifying the choice of the volume indicator for the oil, gas and power sectors using the gas turbine units (GTU) were examined. The correct choice of (PVI) it was possible to determine the available efficient power of gas turbine units which should meet the power consumption requirements for the gas compression by gas pumping units (GPU) on the compressor station (CS) of gas transmission systems for a given mode [4,5].

Published in International Journal of Energy and Power Engineering (Volume 5, Issue 1)
DOI 10.11648/j.ijepe.20160501.11
Page(s) 1-5
Creative Commons

This is an Open Access article, distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution and reproduction in any medium or format, provided the original work is properly cited.

Copyright

Copyright © The Author(s), 2016. Published by Science Publishing Group

Keywords

Energy Efficiency of Equipment, Energy Consumption of Equipment, Energy Saving of Equipment, Production Volume Indicator, Oil and Gas Industry, Gas Pumping Unit, Pipeline Power Consumption, Effective Power of Machines

References
[1] V. A. Shurovsky, Yu. N. Sinitsyn and A. k, "Analiz sostoyaniya i perspektiv sokrasheniya zatrat prirodnogo gaza pri ekspluatacii gazoturbinnyh kompressornyh cehov", Moscow, Issue. 2, 1982.
[2] Eduard A. Mikaelyan, "From the energy saving solutions to the resource-saving technology, from the energy audit to the resources audit", Gas industry, № 4, 2014, PP. 70–73.
[3] Normy tehnologicheskogo proektirovanija magistral'nyh gazoprovodov: STO Gazprom 2-3.5-051- 2006.
[4] Eduard A. Mikaelyan, "Harmonisation of the Characteristics of Gas-Turbine and Gas Centrifugal Compressors regarding the Mechanical Power losses in Transmission from the Drive", Quality Management in the Oil and Gas Industry, № 1, 2015, pp. 15-18.
[5] Eduard A. Mikaelyan, "Maintenance of the power technology equipment, the gas-turbine gas pumping units of the gas collection and transport system", Methodology, research, analysis and practice, Moscow, p. 314, 2000.
[6] Eduard A. Mikaelyan, "Environmental air temperature influence on available power of gas-turbine machines", Energy Security- Energy Saving, № 3, 2014, pp. 23-28.
[7] Appraisal procedure of power efficiency of gas-transportation installations and systems: STO Gazprom 2-3.5-113- 2007.
[8] Eduard A. Mikaelyan, "Improvement of quality, provision of reliability and safety of main gas oil pipes in order to improve the operational suitability", Ed. by Professor G. D. Margulov, Moscow, p. 640, 2001.
[9] A. I. Vladimirov, V. Ya. Kershenbaum, "Industrial safety of gas-turbine-driven compressor plants", National Institute of Oil and Gas, Moscow, P. 551, 2008.
[10] Gas pumping units driven with gas turbine. General specifications, GOST R 54404-2011.
[11] Eduard A. Mikaelian, "Recourse-saving technologies of gas transportation", Quality Management in Oil and Gas Industry, № 2, 2012, pp. 12-13.
[12] V. A. Shchurovskii, Yu. N. Sinitsyn, V. I. Korneev, A. V. Cheremin, G. S. Stepanov, "Methodological guidelines for thermotechnical and gasdynamic calculations during tests of turbine pumping units", PR 51-31323949-43-99, Moscow, 1999.
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  • APA Style

    Eduard A. Mikaelian, Saif A. Mouhammad. (2016). Evaluation of Energy Efficiency, Energy Consumption and Energy Saving in the Production of Oil, Gas and Energy Sectors. International Journal of Energy and Power Engineering, 5(1), 1-5. https://doi.org/10.11648/j.ijepe.20160501.11

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    ACS Style

    Eduard A. Mikaelian; Saif A. Mouhammad. Evaluation of Energy Efficiency, Energy Consumption and Energy Saving in the Production of Oil, Gas and Energy Sectors. Int. J. Energy Power Eng. 2016, 5(1), 1-5. doi: 10.11648/j.ijepe.20160501.11

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    AMA Style

    Eduard A. Mikaelian, Saif A. Mouhammad. Evaluation of Energy Efficiency, Energy Consumption and Energy Saving in the Production of Oil, Gas and Energy Sectors. Int J Energy Power Eng. 2016;5(1):1-5. doi: 10.11648/j.ijepe.20160501.11

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  • @article{10.11648/j.ijepe.20160501.11,
      author = {Eduard A. Mikaelian and Saif A. Mouhammad},
      title = {Evaluation of Energy Efficiency, Energy Consumption and Energy Saving in the Production of Oil, Gas and Energy Sectors},
      journal = {International Journal of Energy and Power Engineering},
      volume = {5},
      number = {1},
      pages = {1-5},
      doi = {10.11648/j.ijepe.20160501.11},
      url = {https://doi.org/10.11648/j.ijepe.20160501.11},
      eprint = {https://article.sciencepublishinggroup.com/pdf/10.11648.j.ijepe.20160501.11},
      abstract = {Energy efficiency, energy consumption and energy savings depend on the performance of energy-technological equipment characterising the operational suitability of it. The operational suitability of the equipment determines the quality of it. Based on energy consumption, fuel consumption and reliability indicators as the formalised quality indicators in energotechnological equipment it is possible to determine the energy efficiency, energy consumption and energy savings of the equipment and therefore select the right production volume indicator (PVI). The aim in determining the fuel and power parameters (FPP) of the oil and gas production units and power sector is to get dependence influencing the energy efficiency (EE), power consumption (PC) and energy saving (ES) of those production units. To solve this problem it was necessary to choose the right (PVI). For that purpose, the issues concerning justifying the choice of the volume indicator for the oil, gas and power sectors using the gas turbine units (GTU) were examined. The correct choice of (PVI) it was possible to determine the available efficient power of gas turbine units which should meet the power consumption requirements for the gas compression by gas pumping units (GPU) on the compressor station (CS) of gas transmission systems for a given mode [4,5].},
     year = {2016}
    }
    

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    AU  - Eduard A. Mikaelian
    AU  - Saif A. Mouhammad
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    T2  - International Journal of Energy and Power Engineering
    JF  - International Journal of Energy and Power Engineering
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    UR  - https://doi.org/10.11648/j.ijepe.20160501.11
    AB  - Energy efficiency, energy consumption and energy savings depend on the performance of energy-technological equipment characterising the operational suitability of it. The operational suitability of the equipment determines the quality of it. Based on energy consumption, fuel consumption and reliability indicators as the formalised quality indicators in energotechnological equipment it is possible to determine the energy efficiency, energy consumption and energy savings of the equipment and therefore select the right production volume indicator (PVI). The aim in determining the fuel and power parameters (FPP) of the oil and gas production units and power sector is to get dependence influencing the energy efficiency (EE), power consumption (PC) and energy saving (ES) of those production units. To solve this problem it was necessary to choose the right (PVI). For that purpose, the issues concerning justifying the choice of the volume indicator for the oil, gas and power sectors using the gas turbine units (GTU) were examined. The correct choice of (PVI) it was possible to determine the available efficient power of gas turbine units which should meet the power consumption requirements for the gas compression by gas pumping units (GPU) on the compressor station (CS) of gas transmission systems for a given mode [4,5].
    VL  - 5
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Author Information
  • Department of Thermodynamics and Heat Engines, Gubkin Russian State University of Oil and Gas, Moscow, Russia

  • Department of Physics, Taif University, Taif, Saudi Arabia

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