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Research Article

Multi-angle analysis of the mechanism of polymer materials to improve the sealing quality of boreholes

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Pages 3205-3222 | Received 02 Sep 2021, Accepted 29 Mar 2022, Published online: 17 Apr 2022

References

  • Akgün, H., and J. J. K. Daemen. 1997. Analytical and experimental assessment of mechanical borehole sealing performance in rock. Engineering Geology 47 (3):233–41. doi:10.1016/S0013-7952(97)00021-5.
  • Boukadi, F., B. Yaghi, A. Bemani, and H. Al-Hadrami. 2006. Evaluation of polyurethanes as potential mud loss control agents. Energy Sources 28 (1):59–70. doi:10.1080/009083190523802.
  • Chaunsali, P., and P. Mondal. 2015. Influence of mineral admixtures on early-age behavior of calcium sulfoaluminate cement. Aci Materials Journal 112 (1):59–68. doi:10.14359/51687240.
  • Chen, Y., A. Li, D. Yang, T. Liu, X. Li, J. Tang, and C. Jiang. 2020. Study on the interaction between low-viscosity high-permeability pregrouting sealing material and coal and its application. Advances in Polymer Technology 2020 (8):1–11. doi:10.1155/2020/1217285.
  • Conte, E., F. Silvestri, and A. Troncone. 2010. Stability analysis of slopes in soils with strain-softening behaviour. Computers and Geotechnics 37 (5):710–22. doi:10.1016/j.compgeo.2010.04.010.
  • França de Sá, S., J. L. Ferreira, A. S. Matos, R. Macedo, and A. M. Ramos. 2016. A new insight into polyurethane foam deterioration-the use of Raman microscopy for the evaluation of long-term storage conditions. Journal of Raman Spectroscopy 47:1494–504. doi:10.1002/jrs.4984.
  • Fu, W., J. Dai, Y. Zhang, M. Guang, Y. Liu, and B. Li. 2021. Heating performances of high density polyethylene (HDPE) plastic particles in a microwave chamber. Sustain. Energy Technol. Assessments 48 (101581):1–7. doi:10.1016/j.seta.2021.101581.
  • Hao, J., Q. Qi, L. Shu, Z. Huo, and L. Zhang. 2019. Effect of plastic-softening and dilatancy of coal on sealing property of borehole. Journal of China Coal Society 44 (5):1536–43. doi:10.13225/j.cnki.jccs.2018.1219.
  • Hu, S., G. Hao, G. Feng, H. Guo, and D. Wu. 2020. A method for improving the methane extraction concentrations of in-seam boreholes. Fuel 265:117006. doi:10.1016/j.fuel.2020.117006.
  • Hu, G., H. Wang, X. Fan, Z. Yuan, and S. Hong. 2009. Mathematical model of coalbed gas flow with Klinkenberg effects in multi-physical fields and its analytic solution. Transport in Porous Media 76 (3):407–20. doi:10.1007/s11242-008-9254-4.
  • Lee, S.-W., G.-T. Chae, M. Jo, and T. Kim. 2015. Comparison of portland cement (KS and API class G) on cement carbonation for carbon storage. Journal of Materials in Civil Engineering 27 (1):1–9. doi:10.1061/(asce)mt.1943-5533.0001031.
  • Li, P., Z. Cheng, L. Chen, H. Wang, and J. Cao. 2021. Improvement of gas drainage efficiency via optimization of sealing depth of cross-measure boreholes. Advances in Civil Engineering 2021:1–13. doi:10.1155/2021/5521666.
  • Li, X., and L. Ma. 2019. Application of new-type bagged polyurethane hole-sealer in soft coal seam. Mining & Processing Equipment 47 (9):69–71. doi:10.16816/j.cnki.ksjx.2019.09.018.
  • Li, B., J. Zhang, J. Wei, and Q. Zhang. 2018. Preparation and sealing performance of a new coal dust polymer composite sealing material. Advances in Materials Science and Engineering 2018:1–10. doi:10.1155/2018/8480913.
  • Liu, Y., W. Fu, T. Liu, Y. Zhang, and B. Li. 2022. Microwave pyrolysis of polyethylene terephthalate (PET) plastic bottle sheets for energy recovery. Journal of Analytical and Applied Pyrolysis 161 (105414):1–7. doi:10.1016/j.jaap.2021.105414.
  • Liu, P., Y. Jiang, and B. Fu. 2020a. A novel approach to characterize gas flow behaviors and air leakage mechanisms in fracture-matrix coal around in-seam drainage borehole. Journal of Natural Gas Science and Engineering 77:1–15. doi:10.1016/j.jngse.2020.103243.
  • Liu, T., B. Lin, X. Fu, and C. Zhu. 2020b. Modeling air leakage around gas extraction boreholes in mining-disturbed coal seams. Process Safety and Environmental Protection 141:202–14. doi:10.1016/j.psep.2020.05.037.
  • Lu, L., X. Wang, X. Zhao, and Z. Wang. 2018. Study on application of polyurethane foaming material in blast-hole stemming. Blasting 35 (1):142–46. CNKI:SUN:BOPO.0.2018-01-024.
  • Ni, G., B. Lin, C. Zhai, Q. Li, X. Li, and C. Zheng. 2013. Microscopic properties of drilling sealing materials and their influence on the sealing performance of boreholes. Journal of University of Science and Technology Beijing 35 (5):572–79. doi:10.13374/j.1001-053x.2013.05.005.
  • Papamichos, E. 2010. Analysis of borehole failure modes and pore pressure effects. Computers and Geotechnics 37 (1–2):141–52. doi:10.1016/j.compgeo.2009.08.006.
  • Park, K. H., B. Tontavanich, and J. G. Lee. 2008. A simple procedure for ground response curve of circular tunnel in elastic-strain softening rock masses. Tunnelling and Underground Space Technology 23 (2):151–59. doi:10.1016/j.tust.2007.03.002.
  • Qi, Q., X. Jia, X. Zhou, and Y. Zhao. 2020. Instability-negative pressure loss model of gas drainage borehole and prevention technique: A case study. PLoS One 15 (11):1–19. doi:10.1371/journal.pone.0242719.
  • Shenbagam, V. K., R. Cepuritis, and P. Chaunsali. 2021. Influence of exposure conditions on expansion characteristics of lime-rich calcium sulfoaluminate-belite blended cement. Cement and Concrete Composites 118:1–13. doi:10.1016/j.cemconcomp.2021.103932.
  • Verma, A., G. Chauhan, and K. Ojha. 2017. Synergistic effects of polymer and bentonite clay on rheology and thermal stability of foam fluid developed for hydraulic fracturing. Asia-Pacific Journal of Chemical Engineering 12 (6):872–83. doi:10.1002/apj.2125.
  • Wang, G., X. Qin, D. Han, and Z. Liu. 2021. Study on seepage and deformation characteristics of coal microstructure by 3D reconstruction of CT images at high temperatures. International Journal of Mining Science and Technology 31 (2):175–85. doi:10.1016/j.ijmst.2020.11.003.
  • Wang, H., E. Wang, Z. Li, X. Wang, Q. Zhang, B. Li, and M. Ali. 2020. Study on sealing effect of pre-drainage gas borehole in coal seam based on air-gas mixed flow coupling model. Process Safety and Environmental Protection 136 (C):15–27. doi:10.1016/j.psep.2020.01.021.
  • Whittles, D. N., I. S. Lowndes, S. W. Kingman, C. Yates, and S. Jobling. 2007. The stability of methane capture boreholes around a long wall coal panel. International Journal of Coal Geology 71 (2–3):313–28. doi:10.1016/j.coal.2006.11.004.
  • Wu, J., H. Yan, J. Wang, Y. Wu, and C. Zhou. 2013. Flame retardant polyurethane elastomer nanocomposite applied to coal mines as air-leak sealant. Journal of Applied Polymer Science 129 (6):3390–95. doi:10.1002/app.38946.
  • Xu, X. 2014a. New - style organic hole sealing material and application technique. Coal Mining Technology 19 (4):136–38. doi:10.13532/j.cnki.cn11-3677/td.2014.04.041.
  • Xu, X. 2014b. Application and effect of tiangu hole-sealing material in xiejiaji no. 1 mine of huainan mining industry group company. Mining Safety & Environmental Protection 41 (3):61–63.
  • Xue, F., and X. Feng. 2018. Spatial and temporal distribution law and influencing factors of the mining-induced deformation and failure of gas boreholes. Advances in Materials Science and Engineering 2018:1–15. doi:10.1155/2018/9580526.
  • Zhai, C., Z. Hao, and B. Lin. 2011. Research on a new composite sealing material of gas drainage borehole and its sealing performance. Procedia Engineering 26 (C):1406–16. doi:10.1016/j.proeng.2011.11.2318.
  • Zhang, F. 2017. Study effect of chemical sealing material to borehole surrounding rock stability in different coal. Coal Technology 36 (8):176–79. doi:10.13301/j.cnki.ct.2017.08.071.
  • Zhang, J., B. Li, and Y. Sun. 2018. Dynamic leakage mechanism of gas drainage borehole and engineering application. International Journal of Mining Science and Technology 28 (3):505–12. doi:10.1016/j.ijmst.2018.04.008.
  • Zhang, J., Y. Liu, P. Ren, H. Han, and S. Zhang. 2021a. A fully multifield coupling model of gas extraction and air leakage for in-seam borehole. Energy Reports 7 (3):1293–305. doi:10.1016/j.egyr.2021.02.037.
  • Zhang, X., S. Shen, X. Feng, Y. Ming, and J. Liu. 2021b. Influence of deformation and instability of borehole on gas extraction in deep mining soft coal seam. Advances in Civil Engineering 2021 (1):1–10. doi:10.1155/2021/6689277.
  • Zhang, Y., Q. Zou, and L. Guo. 2020. Air-leakage model and sealing technique with sealing–isolation integration for gas-drainage boreholes in coal mines. Process Safety and Environmental Protection 140:258–72. doi:10.1016/j.psep.2020.03.024.
  • Zhao, D., and J. Pan. 2018. Numerical simulation on reasonable hole-sealing depth of boreholes for gas extraction. AIP Advances 8 (4):1–17. doi:10.1063/1.5025640.
  • Zheng, C., Z. Chen, M. Kizil, S. Aminossadati, Q. Zou, and P. Gao. 2016. Characterisation of mechanics and flow fields around in-seam methane gas drainage borehole for preventing ventilation air leakage: A case study. International Journal of Coal Geology 162:123–38. doi:10.1016/j.coal.2016.06.008.

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