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셰일가스 생산에 관한 연구개발 현황

Current R&Ds Status for Shale Gas Extraction

  • 한방우 (한국기계연구원 환경에너지기계연구본부) ;
  • 김학준 (한국기계연구원 환경에너지기계연구본부) ;
  • 김용진 (한국기계연구원 환경에너지기계연구본부) ;
  • 김한석 (한국기계연구원 환경에너지기계연구본부)
  • Han, Bangwoo (Environmental & Energy Systems Research Division, Korea Institute of Machinery and Materials) ;
  • Kim, Hak-Joon (Environmental & Energy Systems Research Division, Korea Institute of Machinery and Materials) ;
  • Kim, Yong-Jin (Environmental & Energy Systems Research Division, Korea Institute of Machinery and Materials) ;
  • Kim, Han-Seok (Environmental & Energy Systems Research Division, Korea Institute of Machinery and Materials)
  • 투고 : 2013.05.29
  • 심사 : 2013.06.06
  • 발행 : 2013.07.01

초록

에너지 소비량 증가 및 고유가로 인한 에너지 자원 수급의 불안정 상황에서 새로운 차세대 에너지원으로 셰일가스가 관심을 받고 있다. 셰일가스는 풍부한 매장량과 고른 지역적 분포로 인해 기존의 에너지 역학 구도까지 바꿀 것으로 기대되고 있다. 셰일가스의 개발과정은 시추와 파쇄 및 생산의 과정으로 이루어지는데 이러한 셰일가스 개발과정에서 요구되는 수평시추, 수압파쇄 등의 핵심 기술과 개발과정에 발생하는 환경 이슈문제, 그리고 이를 해결하기 위한 추가 요구 기술과 현재의 연구 진행 현황 등을 살펴보고자 한다.

Shale gas is in the limelight as one of the new energy sources under the circumstances of unstable energy supply and high energy consumption. It is expected to change dynamics of global energy markets due to its abundant resources and global distribution. Shale gas extraction process consists of drilling, fracturing and production. We have surveyed the technologies required for shale gas developments such as a horizontal drilling, a hydraulic fracturing and so on, the environmental issues occurred during the development, the additional technologies to solve the environmental problems and the current research and developments status.

키워드

과제정보

연구 과제 주관 기관 : 한국기계연구원

참고문헌

  1. Holditch, S., Perry, K. and Lee, J., 2007, "Unconventional Gas Reservoirs--Tight Gas, Coal Seams, and Shales, Working Document of the National Petroleum Council on Global Oil and Gas Study," National Petroleum Council.
  2. Advanced Resources International Inc., 2011, "Economic and Market Impacts of Abundant International Shale Gas Resources."
  3. U.S. Energy Information Administration, 2013, "Annual Energy Outlook 2013, Early Release."
  4. Lee, Y., 2012, "Development Trend and Prospect of Shale Gas," Journal of the Korean Professional Engineers Association, Vol. 45, No. 4, pp.30-34.
  5. Swift, T. K., 2012, "Looking for Growth in the Chemicals Industry," Chemical Engineering Progress, Vol. 108, No. 1, pp. 12-15.
  6. Lobato, J., 2013, "Continuous Improvements in Produced Water Management," IDA Water Recycling and Desalination for Oil & Gas Industry, 12-14 May 2013, Banff, Alberta, Canada.
  7. Vidic, R. D., Brantley, S. L., Vandenbossche, J. M., Yoxtheimer, D. and Abad, J. D., 2013, "Impact of Shale Gas Development on Regional Water Quality," Science, Vol. 340, 1235009. https://doi.org/10.1126/science.1235009
  8. www.FracFocus.org.
  9. Gorody, A. W., 2012, "Factors Affecting the Variability of Stray Gas Concentration and Composition in Groundwater," Environmental Geosciences., Vol. 19, No. 1, pp. 17-31. https://doi.org/10.1306/eg.12081111013
  10. Bonnett, A. and Pafitis, D., 1996, "Getting to the Root of Gas Migration," Oilfield Review, Vol. 8, No. 1, pp. 36-49.
  11. Warpinski, N., 2009, "Microseismic Monitoring: Inside and Out," Journal of Petroleum Technology, Vol. 61, No.11, pp. 80-85.
  12. Hanna, B., Ayoub, J. and Cooper, B., 1992, "Rewriting the Rules for High-Permeability Stimulation," Oilfield Review, Vol. 4, No. 4, pp. 18-23.
  13. Miskimins, J. L., 2008, "Design and Life Cycle Considerations for Unconventional Reservoir Wells," SPE Unconventional Reservoirs Conference, 10-12 February, Keystone, Colorado, USA.
  14. Lokhandwala, K.A., Jariwala, A., 2005, "Natural Gas Treatment Process for Stimulated Well," US Patent No. 7537641.
  15. Gupta, D.V.S., 2003, "Field Application of Unconventional Foam Technology: Extension of Liquid $CO_2$ Technology," SPE Annual Technical Conference and Exhibition, Denver, Colorado, 5-8 October.
  16. Edrisi, A. R. and Kam, S. I., 2012, "A New Foam Rheology Model for Shale-Gas Foam Fracturing Application," SPE Canadian Unconventional Resources Conference, 30 October-1 November 2012, Calgary, Alberta, Canada.
  17. LeBlanc, D., Martel, T., Graves, D., Tudor, E., Lestz, R., 2011, "Application of Propane (LPG) Based Hydraulic Fracturing in the McCully Gas Field, New Brunswick, Canada," North American Unconventional Gas Conference and Exhibition, 14-16 June, The Woodlands, Texas, USA.
  18. Maurel, O., Reess, T., Matallah, M., Ferron, A. De, Chen, W., Borderie, C. La, Pijaudier-Cabot, G., Jacques, A., Rey-Bethbeder, F., 2010, "Cement and Concrete Research Electrohydraulic shock wave generation as a means to increase intrinsic permeability of mortar," Cement and Concrete Research, Vol. 40, No. 12, pp. 1631-1638. https://doi.org/10.1016/j.cemconres.2010.07.005
  19. Holtsclaw, J., Loveless, D., Saini, R. and Fleming, J., 2011, "Environmentally Focused Crosslinked-Gel System Results in High Retained Proppant-Pack Conductivity," SPE Annual Technical Conference and Exhibition, 30 October-2 November, Denver, Colorado.
  20. McCurdy, R., 2011, "High Rate Hydraulic Fracturing Addtitives in Non-Marcellus Unconventional Shales," EPA Hydraulic Fracturing Workshop 1, 24-25, February.
  21. http://www.netl.doe.gov/technologies/oil-gas/Petroleum/projects/Environmental/Environmental_TOC.htm.
  22. Global Water Intelligence, 2010, "Water Follows the Shale Trail," GWI Magazine, Vol. 11, Iss. 1. January.
  23. Rossenfoss, S., 2011 "From Flowback to Fracturing: Water Recycling Grows in the Marcellus Shale," Journal of Petroleum Technology, Vol. 63, No. 7, pp. 48-51.
  24. Blauch, M. E., 2010, "Developing effective and environmentally suitable fractruing fluids using haydraulic fracturing flowback waters," SPE Unconventional Gas Conference, 23-25 February, Pittsburgh, Pennsylvania.
  25. Cakmakcea, M., Kayaalpb, N. and Koyuncub, I., 2008, "Desalination of produced water from oil production fields by membrane processes," Desalination, Vol. 222, No.1-3, pp. 176-186. https://doi.org/10.1016/j.desal.2007.01.147
  26. Veil JA (2008) Thermal Distillation Technology for Management of Produced Water and Frac Flowback Water. United States Department of Energy, Argonne National Laboratory Water Technology Brief #2008-1.
  27. DiTommaso, F. A. and DiTommaso, P. N., 2012, "Method of Making Pure Salt From Frac-Water/Wastewater," US patent No. 8158097.
  28. Koo, J. W., Han, J., Lee, S. and Hong, S., 2013, "A Feasibility Study on Shale Gas Plant Water Treatment by Direct Contact Membrane Distillation," Journal of Fluid Machinery, Vol. 16, No. 1, pp. 56-60. https://doi.org/10.5293/kfma.2013.16.1.056
  29. Lampi, K., 2013, "Innovative FO Filtration and ZLD Technology for Oil & Gas Waters," IDA Water Recycling and Desalination for Oil & Gas Industry, 12-14 May 2013, Banff, Alberta, Canada.
  30. Aquatech, 2013, "Shale Gas: Mobile Water Treatment Tackles New Oil and Gas," Filtration+Separation, Vol. 50, Iss. 2, pp. 24-25.
  31. Gaurav, A., Dao E.K., Mohanty K.K., 2010, "Ultra-Lightweight Proppants for Shale Gas Fracturing," Tight Gas Completions Conference, 2-3 November, San Antonio, Texas, USA.
  32. Baihly, J., Altman, R., Malpani, R. and Luo, F., 2010, "Shale Gas Production Decline Trend Comparison over Time and Basin," SPE Annual Technical Conference and Exhibition, 19-22 September 2010, Florence, Italy.
  33. O'Sullivan, F., Paltsev, S., 2012, "Shale Gas Production: Potential versus Actual Greenhouse Gas Emissions," Environmental Research Letters, Vol. 7, No. 4, 044030. https://doi.org/10.1088/1748-9326/7/4/044030
  34. Chaudhry, F., Mobley, G., Tsang, Y. H., Ramachandran, S., Jovancicevic, V. Braman, S. C. Rowton, E., McDonald, A. Davis, J. 2013, "Laboratory Development of a Novel Non-Triazine-based Hydrogen Sulfide Scavenger and Field Implementation in the Haynesville Shale," 2013 SPE International Symposium on Oilfield Chemistry, 08-10 April, The Woodlands, TX, USA.
  35. Weiland R. and Hatcher, N., 2011, "What Are the Benefits from Mass Transfer Rate-Based Simulation?," Hydrocarbon Processing, Vol. 90, Iss. 7, pp. 43-49.
  36. UOP, 2010, "UOP Separex Membranes Remove Contaminants from Natural Gas," Membrane Technology, Vol. 2010, Iss. 9.