Research on Anti-Reflection Technology of Coal Seam by Hydraulic Fracturing
Journal: Architecture Engineering and Science DOI: 10.32629/aes.v6i2.4087
Abstract
As one of the key technologies of coal mine gas extraction and coalbed methane development in China, the anti-reflection technology of hydraulic fracturing coal seam is of great significance for improving the gas extraction amount of low permeability coal seam, reducing the risk of coal outburst, and promoting the effective mining of coalbed methane. By injecting high pressure water into the coal seam, the technology uses the pressure transmission of water to form a crack network in the coal seam. These cracks not only increase the permeability of the coal seam, so that the gas in the coal seam can flow more smoothly, but also communicate the natural cracks in the coal seam, and further improve the desorption and transport efficiency of gas. The application effect of hydraulic fracturing technology is remarkable. In some coal mines, through the implementation of hydraulic fracturing technology, the overall pressure relief and gas permeability of coal body are greatly improved, gas is released, and the total amount of extracted gas is significantly increased, which promotes the effective mining and utilization of coalbed gas. As a kind of unconventional natural gas resources, coalbed methane has great development potential. As a gas extraction and coalbed methane development technology with broad application prospects, hydraulic fracturing coal seam anti-reflection technology is of great significance for ensuring coal mine production safety, reducing gas accident incidence and promoting the effective exploitation and utilization of coalbed methane.
Keywords
hydraulic fracturing, anti-reflection of coal seam, coalbed methane, gas extraction
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[1] ZHANG Hong, XIA Yujing, ZHANG Qun, et al. Geological conditions and comprehensive exploration of deep coal deposits: Current situation and problems [J]. Coal Geology and Exploration,2009,37(01):1-11+16.
[2] National Natural Science Foundation of China, Chinese Academy of Sciences, Energy Science Discipline Development Strategy Research Group. Report on China's Energy Science Discipline Development Strategy from 2011 to 2020.2010.
[3] WU Xiaodong, XI Changfeng, WANG Guoqiang. Research on fracture model of coalbed methane Wells with complex hydraulic fracturing [J]. Natural Gas Industry,2006(12):124-126+206-207.
[4] WANG Xianzheng. New Technology of Coal mine Safety [M]. Beijing: Coal Industry Press,2002.
[5] Ministry of Coal Industry, People's Republic of China. Regulations on Prevention and control of coal and Gas outburst [M]. Beijing: Coal Industry Press,2009.
[6] LV Youchang. Application of hydraulic fracturing technology in high gas and low permeability mines [J]. Journal of Chongqing University,2010,33(07):102-107.
[7] PENG Suping. Study status and future development trend of occurrence rule and geological evaluation of deep coal resources [J]. Coal,2008(02):1-11+27.
[8] ZHANG Yi, ZHOU Weidong, WANG Ruihe, et al. Design of hydraulic self-rotating jet drill in coal seam [J]. Natural Gas Industry,2008(03):61-63+141.
[9] WANG Han. Numerical simulation of vertical fracture morphology and fracture height control in hydraulic fracturing [D]. University of Science and Technology of China,2013.
[10] CHEN Liuwu, YANG Guohe, HUANG Chunming, et al. Hydraulic fracturing hole improves gas drainage effect of soft and low permeability coal seam [J]. Mining Safety and Environmental Protection,2009,36(S1):109-110.
[11] TANG Jianxin, JIA Jianqing, HU Guozhong, et al. Design and test of high pressure water jet device for coal seam in drilling [J]. Rock and Soil Mechanics,2007(07):1501-1504.
[12] ZHAO Yangsheng, YANG Dong, HU Yaoqing, et al. Research on effective technical ways of coalbed methane exploitation in low permeability coal reservoirs [J]. Journal of China Coal Society,2001(05):455-458.
[13] ZHANG Wenyong, SI Lei, Guo Qiwen, et al. Research on anti-reflection mechanism and application of liquid nitrogen injection fracturing in coalbed methane Wells [J]. Coal Science and Technology,2019,47(11):97-102.
[14] DU Yifang. Current situation and development of hydraulic fracturing technology abroad [J]. Journal of Xi 'an Shiyou Institute (Natural Science Edition),1994(02):26-29+20.
[2] National Natural Science Foundation of China, Chinese Academy of Sciences, Energy Science Discipline Development Strategy Research Group. Report on China's Energy Science Discipline Development Strategy from 2011 to 2020.2010.
[3] WU Xiaodong, XI Changfeng, WANG Guoqiang. Research on fracture model of coalbed methane Wells with complex hydraulic fracturing [J]. Natural Gas Industry,2006(12):124-126+206-207.
[4] WANG Xianzheng. New Technology of Coal mine Safety [M]. Beijing: Coal Industry Press,2002.
[5] Ministry of Coal Industry, People's Republic of China. Regulations on Prevention and control of coal and Gas outburst [M]. Beijing: Coal Industry Press,2009.
[6] LV Youchang. Application of hydraulic fracturing technology in high gas and low permeability mines [J]. Journal of Chongqing University,2010,33(07):102-107.
[7] PENG Suping. Study status and future development trend of occurrence rule and geological evaluation of deep coal resources [J]. Coal,2008(02):1-11+27.
[8] ZHANG Yi, ZHOU Weidong, WANG Ruihe, et al. Design of hydraulic self-rotating jet drill in coal seam [J]. Natural Gas Industry,2008(03):61-63+141.
[9] WANG Han. Numerical simulation of vertical fracture morphology and fracture height control in hydraulic fracturing [D]. University of Science and Technology of China,2013.
[10] CHEN Liuwu, YANG Guohe, HUANG Chunming, et al. Hydraulic fracturing hole improves gas drainage effect of soft and low permeability coal seam [J]. Mining Safety and Environmental Protection,2009,36(S1):109-110.
[11] TANG Jianxin, JIA Jianqing, HU Guozhong, et al. Design and test of high pressure water jet device for coal seam in drilling [J]. Rock and Soil Mechanics,2007(07):1501-1504.
[12] ZHAO Yangsheng, YANG Dong, HU Yaoqing, et al. Research on effective technical ways of coalbed methane exploitation in low permeability coal reservoirs [J]. Journal of China Coal Society,2001(05):455-458.
[13] ZHANG Wenyong, SI Lei, Guo Qiwen, et al. Research on anti-reflection mechanism and application of liquid nitrogen injection fracturing in coalbed methane Wells [J]. Coal Science and Technology,2019,47(11):97-102.
[14] DU Yifang. Current situation and development of hydraulic fracturing technology abroad [J]. Journal of Xi 'an Shiyou Institute (Natural Science Edition),1994(02):26-29+20.
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