Abstract

The development of coalbed methane (CBM) is not only affected by geological factors, but also by engineering factors, such as artificial fracturing and drainage strategies. In order to optimize drainage strategies for wells in unique geological conditions, the characteristics of different stages of CBM production are accurately described based on the dynamic behavior of the pressure drop funnel and coal reservoir permeability. Effective depressurization is achieved by extending the pressure propagation radius and gas desorption radius to the well-controlled boundary, in the single-phase water flow stage and the gas–water flow stage, respectively, with inter-well pressure interference accomplished in the single-phase gas flow stage. A mathematic model was developed to quantitatively optimize drainage strategies for each stage, with the maximum bottom hole flow pressure (BHFP) drop rate and the maximum daily gas production calculated to guide the optimization of CBM production. Finally, six wells from the Shizhuangnan Block in the southern Qinshui Basin of China were used as a case study to verify the practical applicability of the model. Calculation results clearly indicate the differences in production characteristics as a result of different drainage strategies. Overall, if the applied drainage strategies do not achieve optimal drainage results, the coal reservoir could be irreversibly damaged, which is not conducive to expansion of the pressure drop funnel. Therefore, this optimization model provides valuable guidance for rational CBM drainage strategy development and efficient CBM production.

Details

Title
Quantitative optimization of drainage strategy of coalbed methane well based on the dynamic behavior of coal reservoir permeability
Author
Yan Xinlu 1 ; Zhang Songhang 1 ; Tang Shuheng 1 ; Li, Zhongcheng 2 ; Zhang, Qian 1 ; Wang, Jingyu 1 ; Deng Zhiyu 2 

 China University of Geosciences, School of Energy Resources, Beijing, China (GRID:grid.162107.3) (ISNI:0000 0001 2156 409X); China University of Geoscience, MOE Key Lab of Marine Reservoir Evolution and Hydrocarbon Accumulation Mechanism, Beijing, China (GRID:grid.162107.3) (ISNI:0000 0001 2156 409X); Beijing Key Laboratory of Unconventional Natural Gas Geological Evaluation and Development Engineering, Beijing, China (GRID:grid.162107.3) 
 China United Coalbed Methane Corporation Ltd, Beijing, China (GRID:grid.162107.3) 
Publication year
2020
Publication date
2020
Publisher
Nature Publishing Group
e-ISSN
20452322
Source type
Scholarly Journal
Language of publication
English
ProQuest document ID
2471575627
Copyright
© The Author(s) 2020. This work is published under http://creativecommons.org/licenses/by/4.0/ (the “License”). Notwithstanding the ProQuest Terms and Conditions, you may use this content in accordance with the terms of the License.