Open Access
Issue |
E3S Web Conf.
Volume 625, 2025
5th International Conference on Environment Resources and Energy Engineering (ICEREE 2025)
|
|
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Article Number | 02022 | |
Number of page(s) | 14 | |
Section | Environmental Pollution Control and Ecological Restoration | |
DOI | https://doi.org/10.1051/e3sconf/202562502022 | |
Published online | 17 April 2025 |
- Lenox, C., Kaplan, P. O. Role of natural gas in meeting an electric sector emissions reduction strategy and effects on greenhouse gas emissions. Energy Economics 60: 460-468. (2017) [Google Scholar]
- Brauers, H. Natural gas as a barrier to sustainability transitions? A systematic mapping of the risks and challenges. Energy Rrsearch and Social Science 89: 102538. (2022) [CrossRef] [Google Scholar]
- Liu, W., Zhang, X., Fan, J., Li, Y., and Wang, L. Evaluation of potential for salt cavern gas storage and integration of brine extraction: Cavern utilization, Yangtze River Delta Region. Natural Resources Research 29(5): 3275-3290. (2020) [CrossRef] [Google Scholar]
- Nguyen, A. H. Stress state and pore pressure distribution around a horizontal wellbore within a saturated anisotropic rock with low permeability. Journal of Applied Science and Engineering 6(6): 610-618. (2023) [Google Scholar]
- Zou, C., Yang, Z., Zhang, G., Hou, L., Zhu, R., and Tao, S. Conventional and unconventional petroleum “orderly accumulation”: Concept and practical significance. Petroleum Exploration and Development 41(1): 14-30. (2014) [CrossRef] [Google Scholar]
- Guo, T., Xiong, L., Ye, S., Dong X., Wei, L., and Yang, Y. Theory and practice of unconventional gas exploration in carrier beds: Insight from the breakthrough of new type of shale gas and tight gas in Sichuan Basin, SW China. Petroleum Exploration and Development 50(1): 27-42. (2023) [CrossRef] [Google Scholar]
- Jia, C., Zheng, M., and Zhang, Y. Unconventional hydrocarbon resources in China and the prospect of exploration and development. Petroleum Exploration and Development 39(2): 139-146. (2012) [CrossRef] [Google Scholar]
- Tao, S., Chen, S., and Pan, Z. Current status, challenges, and policy suggestions for coalbed methane industry development in china: a review. Energy Science and Engineering 7(4): 1059-1074. (2019) [CrossRef] [Google Scholar]
- Zou, C., Tao, S., Han, W., Zhao, Z., Ma, W., and Li, C. Geological and geochemical characteristics and exploration prospect of coal-derived tight sandstone gas in China: case study of the Ordos, Sichuan, and Tarim Basins. Acta Geologica Sinica-English Edition 92(4): 1609-1626. (2018) [CrossRef] [Google Scholar]
- Wei, D., Zhao, Y., Liu, H., Yang, D., Shi, K., and Sun, Y. Where will China's shale gas industry: A scenario analysis of socio-technical transition. Energy Strategy Reviews 44, 100900. (2022) [Google Scholar]
- Guo, X., Hu, D., Shu, Z., Li, Y., Zheng, A., and Wei, X. Exploration, development and construction in the Fuling national shale gas demonstration area in Chongqing: Progress and prospect. Natural Gas Industry 42(8): 14-23. (2022) [Google Scholar]
- Development status of China's coalbed methane industry, future production growth rate and “13th Five-Year” target analysis. https://www.chyxx.com/industry/201902/713408.ht ml [Google Scholar]
- Lei, B., Qin, Y., Gao, D., Fu, X., Wang, G. F., and Zou M. Vertical diversity of coalbed methane content and its geological controls in the Qingshan syncline, western Guizhou province, China. Multi Science Publishing. (2012) [Google Scholar]
- Sun, H., Wang, C. Damage mechanism of cement slurry to CBM reservoirs with developed fractures and cleats: A case study from eastern Yunnan and western Guizhou in China. Natural Gas Industry B 6(2): 145-150. (2019) [CrossRef] [Google Scholar]
- Shu, Y., Sang, S., Zhou, X., and Zhao, F. Numerical analysis of drainage rate in multi-layer coalbed methane development in Western Guizhou, Southern China. Petroleum Science and Technology 2239280. (2023) [Google Scholar]
- Gao, D., Qin, Y., Yi, T. CBM geology and exploring-developing stratagem in Guizhou Province, China. Proceedings of the International Conference on Mining Science & Technology 1(1): 882-887. (2009) [Google Scholar]
- Ranathunga A. S., Perera M. S. A., Ranjith P. G. Deep coal seams as a greener energy source: a review. Journal of Geophysics and Engineering 11(6), 063001. (2014) [CrossRef] [Google Scholar]
- Lu, P., Li, G., Huang, Z., He, Z., Li, X., and Zhang, H. Modeling and parameters analysis on a pulsating hydro-fracturing stress disturbance in a coal seam. Journal of Natural Gas Science and Engineering 6: 253-263. (2015) [CrossRef] [Google Scholar]
- Keshavarz, A., Yang, Y., Badalyan, A., Johnson, R., and Bedrikovetsky, P. Laboratory-based mathematical modelling of graded proppant injection in CBM reservoirs. International Journal of Coal Geology 136: 1-16. (2014) [CrossRef] [Google Scholar]
- Liu, W., Zhu, X., Li, L., Zhao, L., Zhou, P., Zhang, X., and Qin J. Research on the seepage properties of coal with different particle size proppant under cyclic loading. Physics of Fluids 35(4), 0143895. (2023) [Google Scholar]
- Palmer, I. D., King, N. S., and Sparks, D. P. The character of coal fracture treatments in Oak Grove Field, Black Warrior Basin. SPE Annual Technical Conference and Exhibition, Dallas, Texas. (1991) [Google Scholar]
- Jin, A., Li, G., and Wang, F. hydro-fracturingmethod for shallow permeability exploration of anthracite seam in Jincheng. China Coalbed Methane 02: 71-74. (1995) [Google Scholar]
- Fredd, C. N., Olsen, T. N., and Brenize, G. Polymer-free fracturing fluid exhibits improved cleanup for unconventional natural gas well applications. SPE Eastern Regional Meeting, 15-17 September, Charleston, West Virginia. (2004) [Google Scholar]
- Zhai, C., Li, X., and Li, Q. Research and application of coal seam pulse hydro-fracturing technology. Journal of China Coal Society 36(12): 1996-2001. (2011) [Google Scholar]
- Huang, Q., Li, M., Li, J., Gui, Z., and Du, F. Comparative experimental study on the effects of water-and foam-based fracturing fluids on multi-scale flow in coalbed methane. Journal of Natural Gas Science and Engineering 103, 104648. (2022) [CrossRef] [Google Scholar]
- Duan, P., Zhang, C., Qu, C., and Wang, Z. Mechanisms of hydro-fracturing negative effect to coalbed methane seams. Journal of China Coal Society 39(S2): 447-451. (2014) [Google Scholar]
- Wang, K., Li, B., Wei, J., and Li, P. Change regulation of coal seam permeability around hydraulic flushing borehole. Journal of Mining and Safety Engineering 30(05): 778-784. (2013) [Google Scholar]
- Tu, M., Yuan, L., Miao, X., Liu, Z., Xu, N., and Fu, B. Study on seam deformation and permeability improved effect of pressure released mining in protective seam. Coal Science and Technology 41(01): 40-43+47. (2013) [Google Scholar]
- Feng, W., Su, X., Wang, J., Qin, J., and Li, X. The mechanism and field test of permeability improvement by hydraulic flushing in “three-soft” and single coal seam. Coal Geology and Exploration 43(01): 100-103. (2015) [Google Scholar]
- Xue, Y., Liu, J., Ranjith, P. G., Liang, X., and Wang, S. Investigation of the influence of gas fracturing on fracturing characteristics of coal mass and gas extraction efficiency based on a multi-physical field model. Journal of Petroleum Science and Engineering 206. (2021) [Google Scholar]
- Cai, B., Wang, X., Jiang, T., and Lu, X. Application of hydraulic CO2 fracturing technique in coalbed gas fracturing. Natural Gas Technology (05): 40-42+94. (2007) [Google Scholar]
- Liu, W., Zhang, Z., Fan, J., Jiang, D., Li, Z., and Chen, J. Research on gas leakage and collapse in the cavern roof of underground gas storage in thinly bedded salt rocks. Journal of Energy Storage 31: 101669. (2020) [CrossRef] [Google Scholar]
- Li, L., Yang, D., Liu, W., Zhang, X., Zhao, L., and Zhu, X. Experimental study on the porosity and permeability change of high-rank coal under cyclic loading and unloading. ACS Omega 34(7): 30197-30207. (2022) [CrossRef] [PubMed] [Google Scholar]
- Xia, Y., Tan, P., Wang, X., and Ren, L. Differences of fracture propagation behavior for two typical fractured formations. Natural Gas Industry B 9(3): 264-270. (2022) [CrossRef] [Google Scholar]
- Fan, P. H., Nie, B. S., Peng, B. Coal Permeability Study for Gas Disaster Control under Stress Paths of Three Mining Layouts. Journal of Applied Science and Engineering 20(4): 491-502. (2017) [Google Scholar]
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