Petroleum Science >2024, Issue2: - DOI: https://doi.org/10.1016/j.petsci.2023.10.026
Hydrocarbon gas huff-n-puff optimization of multiple horizontal wells with complex fracture networks in the M unconventional reservoir Open Access
文章信息
作者:Hao-Chuan Zhang, Yong Tang, You-Wei He, Yong Qin, Jian-Hong Luo, Yu Sun, Ning Wang, De-Qiang Wang
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引用方式:Hao-Chuan Zhang, Yong Tang, You-Wei He, Yong Qin, Jian-Hong Luo, Yu Sun, Ning Wang, De-Qiang Wang, Hydrocarbon gas huff-n-puff optimization of multiple horizontal wells with complex fracture networks in the M unconventional reservoir, Petroleum Science, Volume 21, Issue 2, 2024, Pages 1018-1031, https://doi.org/10.1016/j.petsci.2023.10.026.
文章摘要
Abstract: The oil production of the multi-fractured horizontal wells (MFHWs) declines quickly in unconventional oil reservoirs due to the fast depletion of natural energy. Gas injection has been acknowledged as an effective method to improve oil recovery factor from unconventional oil reservoirs. Hydrocarbon gas huff-n-puff becomes preferable when the CO2 source is limited. However, the impact of complex fracture networks and well interference on the EOR performance of multiple MFHWs is still unclear. The optimal gas huff-n-puff parameters are significant for enhancing oil recovery. This work aims to optimize the hydrocarbon gas injection and production parameters for multiple MFHWs with complex fracture networks in unconventional oil reservoirs. Firstly, the numerical model based on unstructured grids is developed to characterize the complex fracture networks and capture the dynamic fracture features. Secondly, the PVT phase behavior simulation was carried out to provide the fluid model for numerical simulation. Thirdly, the optimal parameters for hydrocarbon gas huff-n-puff were obtained. Finally, the dominant factors of hydrocarbon gas huff-n-puff under complex fracture networks are obtained by fuzzy mathematical method. Results reveal that the current pressure of hydrocarbon gas injection can achieve miscible displacement. The optimal injection and production parameters are obtained by single-factor analysis to analyze the effect of individual parameter. Gas injection time is the dominant factor of hydrocarbon gas huff-n-puff in unconventional oil reservoirs with complex fracture networks. This work can offer engineers guidance for hydrocarbon gas huff-n-puff of multiple MFHWs considering the complex fracture networks.
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Keywords: Unconventional oil reservoir; Complex fracture network; Hydrocarbon gas huff-n-puff; Parameter optimization; Numerical simulation