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Study on shear slip mechanism of shale gas fractured formation

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References

  • Al-Bazali, T. M. 2011. The consequences of using concentrated salt solutions for mitigating wellbore instability in shales. Journal of Petroleum Science and Engineering 80 (1):94–101. doi:https://doi.org/10.1016/j.petrol.2011.10.005.
  • Boersma, T., and C. Johnson. 2012. The shale gas revolution: US and EU policy and research agendas. Review of Policy Research 29 (4):570–6. doi:https://doi.org/10.1111/j.1541-1338.2012.00575.x.
  • Bustin, R. M., A. M. M. Bustin, A. Cui, D. Ross, and V. M. Pathi. 2008. Impact of shale properties on pore structure and storage characteristics. Paper read at SPE shale gas production conference. doi:https://doi.org/10.2118/119892-MS.
  • Cao, Y.-H., W. Chen, T.-X. Wang, and Y.-N. Yuan. 2020. Thermally enhanced shale gas recovery: Microstructure characteristics of combusted shale. Petroleum Science 17 (4):1056–11. doi:https://doi.org/10.1007/s12182-020-00428-y.
  • Chenevert, M. E. 1970. Shale control with balanced-activity oil-continuous muds. Journal of Petroleum Technology 22 (10):1309–1316. doi:https://doi.org/10.2118/2559-PA.
  • Deville, J. P., B. Fritz, and M. Jarrett. 2011. Development of water-based drilling fluids customized for shale reservoirs. Paper read at SPE International Symposium on Oilfield Chemistry. doi:https://doi.org/10.2118/140868-MS.
  • Germanovich, L. N., and A. V. Dyskin. 2000. Fracture mechanisms and instability of openings in compression. International Journal of Rock Mechanics and Mining Sciences 37 (1-2):263–84. doi:https://doi.org/10.1016/S1365-1609(99)00105-7.
  • Gomez, S., and W. He. 2012. Fighting wellbore instability: Customizing drilling fluids based on laboratory studies of shale-fluid interactions. Paper read at IADC/SPE Asia Pacific drilling technology conference and exhibition. doi:https://doi.org/10.2118/155536-MS.
  • Hang, W. E. N., C. H. E. N. Mian, J. I. N. Yan, W. A. N. G. Kai, X. I. A. Yang, D. O. N. G. Jingnan, and N. I. U. Chengcheng. 2014. A chemo-mechanical coupling model of deviated borehole stability in hard brittle shale. Petroleum Exploration and Development 41 (6):817–23. doi:https://doi.org/10.1016/S1876-3804(14)60099-9.
  • Huabing, L., W. Zhe, X. Feng, J. Kai, and W. Ning. 2019. Shale gas reservoirs characteristics of Micang mountain uplift in the north of the Sichuan Basin. Unconventional Oil & Gas 6 (6):1–6.
  • Kanfar, M. F., Z. Chen, and S. S. Rahman. 2017. Analyzing wellbore stability in chemically-active anisotropic formations under thermal, hydraulic, mechanical and chemical loadings. Journal of Natural Gas Science and Engineering 41:93–111. doi:https://doi.org/10.1016/j.jngse.2017.02.006.
  • Li, X., X. Yan, and Y. Kang. 2017. Investigation of drill-in fluids damage and its impact on wellbore stability in Longmaxi shale reservoir. Journal of Petroleum Science and Engineering 159:702–9. doi:https://doi.org/10.1016/j.petrol.2017.10.005.
  • Liu, J., Z. Dai, C. Li, K. Lv, X. Huang, J. Sun, and B. Wei. 2019. Inhibition of the hydration expansion of Sichuan gas shale by adsorption of compounded surfactants. Energy & Fuels 33 (7):6020–6. doi:https://doi.org/10.1021/acs.energyfuels.9b00637.
  • Liu, X., W. Zeng, L. Liang, and M. Lei. 2016. Wellbore stability analysis for horizontal wells in shale formations. Journal of Natural Gas Science and Engineering 31:1–8. doi:https://doi.org/10.1016/j.jngse.2016.02.061.
  • Manshad, A. K., H. Jalalifar, and M. Aslannejad. 2014. Analysis of vertical, horizontal and deviated wellbores stability by analytical and numerical methods. Journal of Petroleum Exploration and Production Technology 4 (4):359–69. doi:https://doi.org/10.1007/s13202-014-0100-7.
  • Mkpoikana, R., A. Dosunmu, and C. Eme. 2015. Prevention of shale instability by optimizing drilling fluid performance. Paper read at SPE Nigeria Annual International Conference and Exhibition. doi:https://doi.org/10.2118/178299-MS.
  • Muhammed, N. S., T. Olayiwola, S. Elkatatny, B. Haq, and S. Patil. 2021. Insights into the application of surfactants and nanomaterials as shale inhibitors for water-based drilling fluid: A review. Journal of Natural Gas Science and Engineering 92:103987. doi:https://doi.org/10.1016/j.jngse.2021.103987.
  • Quainoo, A. K., B. M. Negash, C. B. Bavoh, T. O. Ganat, and B. N. Tackie-Otoo. 2020. A perspective on the potential application of bio-inhibitors for shale stabilization during drilling and hydraulic fracturing processes. Journal of Natural Gas Science and Engineering 79:103380. doi:https://doi.org/10.1016/j.jngse.2020.103380.
  • Schlemmer, R., J. E. Friedheim, F. B. Growcock, J. B. Bloys, J. A. Headley, and S. C. Polnaszek. 2003. Chemical osmosis, shale, and drilling fluids. SPE Drilling & Completion 18 (04):318–31. doi:https://doi.org/10.2118/86912-PA.
  • Stevens, P. 2012. The shale gas revolution: Developments and changes. London: Chatham House.
  • Tan, C. P., S. S. Rahman, B. G. Richards, and F. K. Mody. 1998. Integrated rock mechanics and drilling fluid design approach to manage shale instability. Paper read at SPE/ISRM Rock Mechanics in Petroleum Engineering. doi:https://doi.org/10.2118/47259-MS.
  • Tan, C. P., S. S. Rahman, X. Chen, D. R. Willoughby, S. K. Choi, and B. Wu. 1998. Wellbore stability analysis and guidelines for efficient shale instability management. Paper read at IADC/SPE Asia Pacific Drilling Technology. doi:https://doi.org/10.2118/47795-MS.
  • Tan, C. P., S. S. Rahman, B. G. Richards, and F. K. Mody. 1998. Integrated approach to drilling fluid optimisation for efficient shale instability management. Paper read at SPE International Oil and Gas Conference and Exhibition in China. doi:https://doi.org/10.2118/48875-MS.
  • Tan, C. P., D. R. Willoughby, M. A. Yaakub, X. Chen, P. A. Hamid, Z. Ibrahim, and I. Zahari. 2000. Drilling fluid optimisation study for k-shale in the Malay Basin. Paper read at IADC/SPE Asia Pacific Drilling Technology. doi:https://doi.org/10.2118/62795-MS.
  • Tan, C. P., M. A. Yaakub, X. Chen, D. R. Willoughby, P. A. Hamid, B. Wu, I. Zamanuri, and I. Zahari. 2002. Optimization of drilling fluid design for managing wellbore instability in K-shale in the Malay Basin of Peninsular Malaysia. Paper read at SPE/ISRM Rock Mechanics Conference. doi:https://doi.org/10.2118/78209-MS.
  • Wang, Q., X. Chen, A. N. Jha, and H. Rogers. 2014. Natural gas from shale formation–The evolution, evidences and challenges of shale gas revolution in United States. Renewable and Sustainable Energy Reviews 30:1–28. doi:https://doi.org/10.1016/j.rser.2013.08.065.
  • Wang, S. Q., G. S. Chen, D. Z. Dong, G. Yang, Z-g Lu, Y-h Xu, and Y-b Huang. 2009. Accumulation conditions and exploitation prospect of shale gas in the Lower Paleozoic Sichuan Basin. Natural Gas Industry 29 (5):51–8.
  • Witthayapanyanon, A., J. Leleux, J. Vuillemet, R. Morvan, A. Pomian, A. Denax, and R. Bland. 2013. High performance water-based drilling fluids-an environmentally friendly fluid system achieving superior shale stabilization while meeting discharge requirement offshore Cameroon. Paper read at SPE/IADC drilling conference. doi:https://doi.org/10.2118/163502-MS.
  • Xu, C., Y. Kang, F. Chen, and Z. You. 2016. Fracture plugging optimization for drill-in fluid loss control and formation damage prevention in fractured tight reservoir. Journal of Natural Gas Science and Engineering 35:1216–27. doi:https://doi.org/10.1016/j.jngse.2016.09.059.
  • Yan, C-z, Y-z Huang, C-m Ge, D-z Dong, and K-m Cheng. 2009. Shale gas: Enormous potential of unconventional natural gas resources. Natural Gas Industry 29 (5), 1–6.
  • Yang, Y.,. L. Wang, Y. Fang, and C. Mou. 2017. Integrated value of shale gas development: A comparative analysis in the United States and China. Renewable and Sustainable Energy Reviews 76:1465–78. doi:https://doi.org/10.1016/j.rser.2016.11.174.
  • Ying, H., and P. Bo. 2014. Shale gas development present situation and development trend of energy in the United States. Guangdong Chemical Industry 2014 (23):82–83.
  • Yuan, W., X. Li, Z. Pan, L. D. Connell, S. Li, and J. He. 2014. Experimental investigation of interactions between water and a lower Silurian Chinese shale. Energy & Fuels 28 (8):4925–33. doi:https://doi.org/10.1021/ef500915k.
  • Zhang, S., J. J. Sheng, and Z. Qiu. 2016. Maintaining shale stability using polyether amine while preventing polyether amine intercalation. Applied Clay Science 132-133:635–40. doi:https://doi.org/10.1016/j.clay.2016.08.015.
  • Zou, C. N., D. Z. Dong, H. Yang, Y. M. Wang, J. L. Huang, S. F. Wang, and C. X. Fu. 2011. China shale gas formation conditions and exploration practice. Natural Gas Industry 31 (12):26–39.

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