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Review

Criteria for the progressive initiation and propagation of radial and axial fractures of borehole during rock hydraulic fracturing

ORCID Icon, , &
Received 20 Jul 2020, Accepted 25 Nov 2020, Published online: 29 Dec 2020

References

  • Clark, J. B. 1949. A hydraulic process for increasing the productivity of wells. Journal of Petroleum Technology 1:1–8. doi:10.2118/949001-G.
  • Deng, Y. 2005. Study on the mechanical mechanism of fracturing new fracture. Chengdu, China: Southwest Petroleum University.
  • Ding, Y., X. J. Liu, and P. Y. Luo. 2018. The analytical model of hydraulic fracture initiation for perforated borehole in fractured formation. Journal of Petroleum Science and Engineering 162:502–12. doi:10.1016/j.petrol.2017.10.008.
  • Feng, F. 2013. Stress disturbance law of coal-rock mass in hydraulic fracturing process. Xuzhou, China: China University of Mining and Technology.
  • Gidley, J. L., S. A. Holditch, D. E. Nierode, and R. W. Veatch. 1989. The recent advances in hydraulic fracturing. Society of Petroleum Engineers. Pennsylvania, USA.
  • Gong, F. C., T. K. Guo, W. Sun, Z. M. Li, B. Yang, Y. M. Chen, and Z. Q. Qu. 2020. Evaluation of geothermal energy extraction in Enhanced Geothermal System (EGS) with multiple fracturing horizontal wells (MFHW). Renewable Energy 151:1339–51. doi:10.1016/j.renene.2019.11.134.
  • Huang, B. X., Y. Z. Wang, and S. G. Cao. 2015. Cavability control by hydraulic fracturing for top coal caving in hard thick coal seams. International Journal of Rock Mechanics and Mining Sciences 74:45–57. doi:10.1016/j.ijrmms.2014.10.011.
  • Huang, B. X., X. L. Zhao, J. Ma, and T. Y. Sun. 2019. Field experiment of destress hydraulic fracturing for controlling the large deformation of the dynamic pressure entry heading adjacent to the advancing longwall face. Archives of Mining Sciences 64 (4):829–48.
  • Hubbret, M. K., and D. G. Willis. 1957. Mechanics of hydraulic fracturing. Transactions of the AIME 210:153–63. doi:10.2118/686-G.
  • Irwin, G. R. 1957. Analysis of stresses and strains near the end of a crack traversing a plate. Quarterly of Applied Mathematics 48:361–64.
  • Li, H. Z., B. X. Huang, Q. Y. Cheng, and X. L. Zhao. 2020. Optimization of proppant parameters for CBM extraction using hydrofracturing by orthogonal experimental process. Journal of Geophysics and Engineering 17:493–505. doi:10.1093/jge/gxaa009.
  • Liang, L. X., Y. Ding, X. J. Liu, and P. Y. Luo. 2019. A novel analytical model of initial fracture pressure for horizontal staged fracturing in fractured reservoir. Energy Science & Engineering 7:6. doi:10.1002/ese3.500.
  • Mohammadnejad, T., and J. E. Andrade. 2016. Numerical modeling of hydraulic fracture propagation, closure and reopening using XFEM with application to in‐situ stress estimation. International Journal for Numerical and Analytical Methods in Geomechanics 40:2033–60. doi:10.1002/nag.2512.
  • Sneddon, I. N., and H. A. Elliot. 1946. The opening of a griffith crack under internal pressure. Quarterly of Applied Mathematics 4:262–67. doi:10.1090/qam/17161.
  • 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:10.1016/j.rser.2013.08.065.
  • Xiao, S. Q., Z. L. Ge, L. Cheng, Z. Zhou, H. Y. Zhao, and J. F. Chen. 2019. Gas migration mechanism and enrichment law under hydraulic fracturing in soft coal seams: A case study in Songzao coalfield. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 1–15. doi:10.1080/15567036.2019.1668082.
  • Xu, L. J., G. Y. Wang, T. Y. Liu, N. Z. Liu, S. C. Zhang, and H. Y. Jia. 2019. Numerical investigation into effects of fracturing parameters on the productivity of multi-staged fractured horizontal wells in tight oil reservoirs. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 1–22. doi:10.1080/15567036.2019.1684597.
  • Zhao, X. L., B. X. Huang, and Z. Wang. 2018. Experimental investigation on the basic law of directional hydraulic fracturing controlled by dense linear multi-hole drilling. Rock Mechanics & Rock Engineering 51:1739–54. doi:10.1007/s00603-018-1439-8.

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