Multiple Flow Mechanism-Based Numerical Model for CO2 Huff-n-Puff in Shale Gas Reservoirs with Complex Fractures
Author:
Affiliation:
1. State Key Laboratory of Petroleum Resources and Prospecting, China University of Petroleum, Beijing 102249, China
2. State Key Laboratory of Oil and Gas Reservoir Geology and Exploitation, Chengdu University of Technology, Chengdu 610059, China
Funder
Natural Science Foundation of Beijing Municipality
National Natural Science Foundation of China
Open Fund of State Key Laboratory of Oil and Gas Reservoir Geology and Exploitation (Chengdu University of Technology)
Publisher
American Chemical Society (ACS)
Subject
Energy Engineering and Power Technology,Fuel Technology,General Chemical Engineering
Link
https://pubs.acs.org/doi/pdf/10.1021/acs.energyfuels.3c00931
Reference43 articles.
1. U.S. Energy Information Administration (EIA), Annual Energy Outlook 2022 with Projections to 2050. 2022, https://www.eia.gov/outlooks/aeo/narrative/pdf/AEO2022_Narrative.pdf. (accessed January 15, 2023).
2. Wu, Y.; Moridis, G.; Bai, B.; Zhang, K. A Multi-Continuum Model for Gas Production in Tight Fractured Reservoirs, 2009; SPE-118944-MS. SPE Hydraulic Fracturing Technology Conference
3. A quadruple-porosity model for shale gas reservoirs with multiple migration mechanisms
4. Pressure transient analysis of multiple fractured horizontal well in composite shale gas reservoirs by boundary element method
5. A new approach to model shale gas production behavior by considering coupled multiple flow mechanisms for multiple fractured horizontal well
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