Chen Bo, Li Song, Tang Dazhen, Pu Yifan, Zhong Guanghao
School of Energy Resources, China University of Geosciences (Beijing), Beijing, 100083, China.
Coal Reservoir Laboratory of National Engineering Research Center of CBM Development & Utilization, Beijing, 100083, China.
Sci Rep. 2024 Apr 22;14(1):9192. doi: 10.1038/s41598-024-59128-x.
The deep coalbed methane (CBM) resources are widely developed in the Linxing Block. However, the evaluation of CBM geological areas suitable for CBM exploitation remains unexplored, hindering further development. This research optimizes the key geological parameters that influence the development of deep CBM from the perspectives of resource and development conditions. The evaluation system for deep CBM recoverability has been established, and the multi-fuzzy evaluation method has been used to perform the quantitative evaluation of recoverability. The results indicate that the resource conditions of No.8 + 9 coal seam are superior to those of No.4 + 5 coal seam. Favorable resource conditions are predominantly concentrated in the northeast and specific southern portions of the research area. Favorable development conditions for both coal seams are mostly concentrated in the northeastern area. Based on the classification standard of recoverable favorable areas, the Level II area is crucial for the development of No.4 + 5 coal seam. This area is primarily distributed in the northeast of the research area., Both Level I and Level II areas for the No. 8 + 9 coal seam are situated in the northeast. The Level III area is earmarked for deep CBM production and shows potential for exploration. Further analysis reveals that the resource conditions in the favorable area are generally superior to the development conditions. These areas are classified as Class A, including categories such as I-A, II-A, and III-A, indicating relatively complex reservoir transformation.
临兴区块深部煤层气(CBM)资源广泛发育。然而,适合煤层气开发的煤层气地质区域评价仍未开展,阻碍了进一步开发。本研究从资源和开发条件的角度优化了影响深部煤层气开发的关键地质参数。建立了深部煤层气可采性评价体系,并采用多模糊评价方法对可采性进行了定量评价。结果表明,8+9煤层的资源条件优于4+5煤层。有利的资源条件主要集中在研究区的东北部和特定的南部地区。两个煤层的有利开发条件大多集中在东北地区。根据可采有利区分类标准,II级区域对4+5煤层的开发至关重要。该区域主要分布在研究区的东北部。8+9煤层的I级和II级区域均位于东北部。III级区域用于深部煤层气生产,具有勘探潜力。进一步分析表明,有利区的资源条件总体上优于开发条件。这些区域被归类为A类,包括I-A、II-A和III-A等类别,表明储层改造相对复杂。