Numerical simulation of coalbed methane leakage from shallow exposed area of steep coal seam

被引:0
|
作者
Wang H. [1 ]
Zhang S. [1 ]
Huang H. [2 ,3 ]
Zhang X. [4 ]
机构
[1] School of Petroleum Engineering, China University of Petroleum, Beijing, Beijing
[2] China United Coalbed Methane National Engineering Research Center Co.,Ltd., Beijing
[3] National Engineering Research Center for Coalbed Methane Development and Utilization, Beijing
[4] College of Science, China University of Petroleum, Beijing, Beijing
关键词
coalbed methane leakage; Fukang Baiyanghe Mining Area; methane divalgence; non-carbon dioxide gas mo⁃ nitoring; steep coal seam;
D O I
10.13199/j.cnki.cst.2020-1683
中图分类号
学科分类号
摘要
Based on the gas-water gravity differentiation in the steep coal seams, the three-dimensional gas-water two-phase seepage for steep coal seam was revised. Combined with the actual geological data of the No. 42 coal seam in the Baiyanghe mining area of Fukang, a numerical simulation study on the leakage of coalbed methane from the shallow exposed area of steep coal seam was carried out. The re⁃ search results indicated the existence of coalbed methane leakage in the shallow exposed area of steep coal seam; when vertical wells with buried depths of 300, 500, and 700 m were produced, the amount of leakage and production ratio are 5.06%, 668.02% and 335.77%, respectively. During production, a large amount of coalbed methane resources will be wasted; the leakage phenomenon did not accompany the entire drainage stage. The amount of leakage firstly increased and then decreased until the phenomenon ends. When using lateral wells for production, the leakage phenomenon lasted for 1 918 days, and the ratio of the amount of overflow and cumulative production is 1.54%. After adding simulation cases of 400 m and 600 m burying depth vertical well, it is found that the maximum and cumulative a⁃ mount of coalbed leakage are positively correlated with the vertical well burying depth. The starting time of leakage phenomenon reduce with the buried depth increases, and the start time remains constant in the deeper area. In conclusion, coalbed methane leakage is one of the reasons for poor productivity of vertical wells in this area. The use of lateral wells can effectively improve economic benefits and reduce coalbed methane leakage. © 2022 Journal of Zhongshan University. All rights reserved.
引用
收藏
页码:143 / 150
页数:7
相关论文
共 21 条
  • [1] XIAO Qingxia, WANG Shengwei, CHEN Andong, Coalbed methane reservoir forming model and main controlling factors of Baiyanghe Mining Area in the Southern Junggar, North China Earthqauke Sciences, 38, 2, pp. 28-33, (2020)
  • [2] CHEN Jianping, WANG Xulong, NI Yunyan, Et al., Genetic type and source of natural gas in the southern margin of Junggar basin, NW China, Petroleum Exploration and Development, 46, 3, pp. 461-473, (2019)
  • [3] WANG Hongli, ZHANG Suian, CHEN Dong, Et al., Dynamic dis⁃ tribution of remaining gas content in steep and thick coal seams in Baiyanghe Mining Area of Fukang [ J ], Xinjiang Petroleum Geology, 41, 5, pp. 587-591, (2020)
  • [4] WANG Shengwei, WANG Fengming, HOU Guangjiu, Et al., CBM development well type for steep seam in Fukang Baiyanghe mining area, Xinjiang, Journal of China Coal Society, 39, 9, pp. 1914-1918, (2014)
  • [5] MAO Delei, CHEN Dong, KANG Yongshang, Et al., Analysis on main controlling factors of high-dip coalbed methane in baiyanghe mining Area of Fukang, NW China, Advances in Geosciences, 8, 3, pp. 599-607, (2018)
  • [6] WU Yongping, LIU Kongzhi, YUN Dongfeng, Et al., Research pro⁃ gress on the safe and efficient mining technology of steeply dipping seam, Journal of China Coal Society, 39, 8, pp. 1611-1618, (2014)
  • [7] ZHOU Sandong, LIU Dameng, SUN Shaohua, Et al., Factors af⁃ fecting coalbed methane enrichment and CBM favorable area of Li⁃ uhuanggou area in the southern Jungger Basin [ J], Geoscience, 29, 1, pp. 179-189, (2015)
  • [8] YIN Huaixin, Prospect of exploration of CBM resources in Fukang Coal Mining area in Xinjiang and recommendations on its develop⁃ ment, China Coalbed Methane, 6, 2, pp. 16-18, (2009)
  • [9] WANG Hongli, ZHANG Xiao, ZHANG Suian, Et al., Numerical simulation research on well pattern optimization in high dip angle coal seams:a case of baiyanghe block[J], Frontiers in Earth Sci⁃ ence, 9, (2021)
  • [10] WANG Chaowen, PENG Xiaolong, ZHU Suyang, Et al., Coalbed methane well-type optimization and well pattern arrangement for thick coal seam with a large dip angle, Chinese Journal of Rock Mechanics and Engineering, 38, 2, pp. 313-320, (2019)