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Review

The formation mechanism of irregular salt caverns during solution mining for natural gas storage

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Received 20 Oct 2019, Accepted 28 Apr 2020, Published online: 27 May 2020

References

  • Al-Sulaiman, F., A. Fadaws, and T. Ahmed. 2017. Geologic evaluation of kirkuk underground storage project. Journal of Petroleum & Environmental Biotechnology 8 (340):2.
  • Bruno, M., L. Dorfmann, G. Han, K. Lao, and J. Young. 2005. 3D Geomechanical analysis of multiple caverns in bedded salt. Paper presented at the SMRI (Solution Mining Research Institute) 2005 Fall Meeting, Nancy, France, October.
  • Chan, K., S. Bodner, D. Munson, and A. Fossum. 1996. Inelastic flow behavior of argillaceous salt. International Journal of Damage Mechanics 5 (3):292–314. doi:10.1177/105678959600500305.
  • Charnavel, Y., M. Keime, and H. Theylich.2014. Dissolution of a problem at Peckensen. Paper presented at the Proceedings of the 2011 SMRI Spring Technical Conference, Galveston, TX.
  • Chen, X., Y. Li, W. Liu, H. Ma, J. Ma, X. Shi, and C. Yang. 2019. Study on sealing failure of wellbore in bedded salt cavern gas storage. Rock Mechanics and Rock Engineering 52 (1):215–28. doi:10.1007/s00603-018-1571-5.
  • Chunhe, Y., L. Yinping, and C. Feng. 2009. Bedded salt rock mechanics and engineering. Beijing: Science Press.
  • Crossley, N. 1998. Sonar surveys used in gas-storage cavern analysis. Oil and Gas Journal 96:18.
  • Djizanne, H., P. Bérest, and B. Brouard. 2014. The mechanical stability of a salt cavern used for compressed air energy storage (CAES). Paper presented at the Proceedings of the 2014 Spring SMRI Technical Conference, San Antonio, TX.
  • Evans, D. J., and R. Chadwick. 2009. Underground gas storage: Worldwide experiences and future development in the UK and Europe. London: Geological Society Special Publication.
  • Gatewood, J., and M. Dussaud. 1993. Solution mining salt cavern under gas pad or how to leach and store simultaneously. Paper presented at the Proceedings of the 1993 Fall SMRI Technical Conference, Lafayette, LA.
  • Ge, X., Y. Li, X. Shi, X. Chen, H. Ma, C. Yang, C. Shu, and Y. Liu. 2019. Experimental device for the study of liquid–solid coupled flutter instability of salt cavern leaching tubing. Journal of Natural Gas Science and Engineering 66:168–79. doi:10.1016/j.jngse.2019.03.026.
  • Hardy, H. R. 1982. Theoretical and laboratory studies relative to the design of salt caverns for the storage of natural gas. Project PR-12-71 of the Pipeline Research Committee American Gas Association at the Pennsylvania State University.
  • Jiang, D., J. Zhang, J. Chen, S. Ren, and C. Yang. 2014. Research on softening law of insoluble interlayer during salt cavern building. Chinese Journal of Rock Mechanics and Engineering 33 (5):865–73.
  • Kemal Ozturk, H., and A. Hepbasli. 2003. The place of natural gas in Turkey’s energy sources and future perspectives. Energy Sources 25 (4):293–307. doi:10.1080/00908310390142334.
  • Kok, M. V. 2015. Carbon capture and storage: Current perspectives, re-use activities, and future prospects in Turkey. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 37 (18):1979–87. doi:10.1080/15567036.2015.1027835.
  • Kunstman, A., and M. Mazur. 2000. Cavern development and leaching simulation: An introduction to the technology of solution mining. Technical Class. Spring.
  • Letcher, T. M., R. Law, and D. Reay. 2016. Storing energy: With special reference to renewable energy sources. Vol. 86. Elsevier Oxford.
  • Li, J., X. Shi, C. Yang, Y. Li, T. Wang, H. Ma, H. Shi, J. Li, and J. Liu. 2017. Repair of irregularly shaped salt cavern gas storage by re-leaching under gas blanket. Journal of Natural Gas Science and Engineering 45:848–59. doi:10.1016/j.jngse.2017.07.004.
  • Li, J., L. Wang, C. Liu, D. Zhou, Y. Wang, J. He, and Y. Xue. 2014. Factors affecting cavities distortion of jintan salt cavern gas storage. Oil & Gas Storage and Transportation 3 (3):269–73.
  • Li, Y., X. Chen, X. Shi, N. Zhang, C. Ma, and C. Yang. 2019. Analysis of the plugging process of the leaking interlayer in a thin interbedded salt cavern gas storage of Jintan (China) by high-pressure grouting and potential applications. Journal of Natural Gas Science and Engineering 68:102918. doi:10.1016/j.jngse.2019.102918.
  • Li, Y., C. Yang, D. Qu, C. Yang, and X. Shi. 2012. Preliminary study of dynamic characteristics of tubing string for solution mining of oil/gas storage salt caverns. Rock and Soil Mechanics 33 (3):681–86.
  • Liu, J., Y. Liu, J. Chen, S. Li, L. Xue, and H. Wang. 2017. A numerical simulation for the solution mining under natural gas of salt-cavern gas storage. Oil & Gas Storage and Transportation 36 (7):825–31.
  • Liu, W., D. Jiang, J. Chen, J. Daemen, K. Tang, and F. Wu. 2018. Comprehensive feasibility study of two-well-horizontal caverns for natural gas storage in thinly-bedded salt rocks in China. Energy 143:1006–19. doi:10.1016/j.energy.2017.10.126.
  • Liu, W., Z. Zhang, J. Chen, D. Jiang, F. Wu, J. Fan, and Y. Li. 2020. Feasibility evaluation of large-scale underground hydrogen storage in bedded salt rocks of China: A case study in Jiangsu province. Energy 198:117348. doi:10.1016/j.energy.2020.117348.
  • Mills, K. E. 1981. Specialized techniques in solution cavern shape control. Paper presented at the Solution Mining Research Institute Spring Meeting.
  • Ratigan, J. L. 2008. Brine string integrity and model evaluation. Paper presented at the Processes of SMRI Fall Meeting, Galveston, TX.
  • Shi, X., Y. Li, C. Yang, D. Qu, H. Yang, and H. Ma. 2011. Collapse control technology for interbeds in solution mining for oil/gas storage in multi-interbedded salt formation. Chinese Journal of Geotechnical Engineering 33 (12):1957–63.
  • Shi, X., W. Liu, J. Chen, D. Jiang, F. Wu, J. Zhang, and F. Jinyang. 2018. Softening model for failure analysis of insoluble interlayers during salt cavern leaching for natural gas storage. Acta Geotechnica 13 (4):801–16. doi:10.1007/s11440-018-0666-1.
  • Sobolik, S. R., and B. L. Ehgartner. 2006. Analysis of cavern shapes for the strategic petroleum reserve. No. SAND2006-3002. Sandia National Laboratories, Albuquerue, NM.
  • Timoshenko, S. P., and S. Woinowsky-Krieger. 1959. Theory of plates and shells. McGraw-hill.
  • Wang, T., H. Ma, X. Shi, C. Yang, N. Zhang, J. Li, S. Ding, and J. Daemen. 2018. Salt cavern gas storage in an ultra-deep formation in Hubei, China. International Journal of Rock Mechanics and Mining Sciences 102:57–70. doi:10.1016/j.ijrmms.2017.12.001.
  • Wang, T., X. Yan, H. Yang, X. Yang, T. Jiang, and S. Zhao. 2013. A new shape design method of salt cavern used as underground gas storage. Applied Energy 104:50–61. doi:10.1016/j.apenergy.2012.11.037.
  • Wang, T., C. Yang, J. Li, J. Li, X. Shi, and H. Ma. 2017. Failure analysis of overhanging blocks in the walls of a gas storage salt cavern: A case study. Rock Mechanics and Rock Engineering 50 (1):125–37. doi:10.1007/s00603-016-1102-1.
  • Warren, J. K. 2016. Evaporites: A geological compendium. Springer.
  • Wilke, F., C. Hellberg, and O. Bornemann. (2001). Geological interpretation of domal salt structures in the north european zechstein formation: Influence on cavern development. Paper presented at the SMRI Technical Paper, Fall 2001 Meeting.
  • Yang, C., T. Wang, H. Ma, Y. Li, X. Shi, and J. Daemen. 2016. Feasibility analysis of using horizontal caverns for underground gas storage: A case study of Yunying salt district. Journal of Natural Gas Science and Engineering 36:252–66. doi:10.1016/j.jngse.2016.10.009.
  • Yang, H., and S. Yu. 2015. Relationship between salt cavern partial melting and well deviation of Jintan Underground Gas Storage. Oil & Gas Storage and Transportation 34 (2):145–49.
  • Zhang, N., C. Yang, X. Shi, T. Wang, H. Yin, and J. Daemen. 2018. Analysis of mechanical and permeability properties of mudstone interlayers around a strategic petroleum reserve cavern in bedded rock salt. International Journal of Rock Mechanics and Mining Sciences 112:1–10. doi:10.1016/j.ijrmms.2018.10.014.
  • Zhang, Y., H. Ma, X. Shi, H. Yin, and S. Zhang. 2019. Position design of the casing shoe of an abandoned horizontal salt cavern to be used for gas storage. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 1–15. doi:10.1080/15567036.2019.1665151.
  • Zhou, S., Z. Zhao, Y. Liu, and H. Sun. 2015. China’s natural gas consumption during the 13th Five Year Plan period. InternationalPetroleum Economics 6:13–19.

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