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Investigation on influence of drilling unloading on wellbore stability in clay shale formation
Yi Ding, Xiang-Jun Liu & Ping-Ya Luo
引用方式:
Ding, Y., Liu, X. & Luo, P. Investigation on influence of drilling unloading on wellbore stability in clay shale formation. Pet. Sci. 17, 781–796 (2020). https://doi.org/10.1007/s12182-020-00438-w
2020 Vol. (石油工程与机械): 1-
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Viscous flow simulations through multi-lobe progressive cavity pumps
F. M. El-Abd, E. M. Wahba & I. G. Adam
引用方式:
El-Abd, F.M., Wahba, E.M. & Adam, I.G. Viscous flow simulations through multi-lobe progressive cavity pumps. Pet. Sci. (2020). https://doi.org/10.1007/s12182-020-00458-6
2020 Vol. (石油工程与机械): 1-13
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Influence of formation heterogeneity on foam flooding performance using 2D and 3D models: an experimental study
Ling-Zhi Hu, Lin Sun, Jin-Zhou Zhao, Peng Wei, Wan-Fen Pu
引用方式:
Hu, L., Sun, L., Zhao, J. et al. Influence of formation heterogeneity on foam flooding performance using 2D and 3D models: an experimental study. Pet. Sci. (2019) doi:10.1007/s12182-019-00408-x
2020 Vol. (石油工程与机械): 1-19
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Evaluating the potential of surface-modified silica nanoparticles using internal olefin sulfonate for enhanced oil recovery
Afaque Ahmed, Ismail Mohd Saaid, Abdelazim Abbas Ahmed, Rashidah M. Pilus, Mirza Khurram Baig
引用方式:
Ahmed, A., Saaid, I.M., Ahmed, A.A. et al. Pet. Sci. (2019). https://doi.org/10.1007/s12182-019-00404-1
2020 Vol. (石油工程与机械): 1-12
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Wettability alteration analysis of smart water/novel functionalized nanocomposites for enhanced oil recovery
Sara Habibi, Arezou Jafari & Zahra Fakhroueian
引用方式:
Habibi, S., Jafari, A. & Fakhroueian, Z. Wettability alteration analysis of smart water/novel functionalized nanocomposites for enhanced oil recovery. Pet. Sci. (2020). https://doi.org/10.1007/s12182-020-00436-y
2020 Vol. (石油工程与机械): 1-11
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CFD analysis and field observation of tool erosion caused by abrasive waterjet fracturing
Mao Sheng, Zhong-Wei Huang, Shou-Ceng Tian, Yi Zhang, Shi-Wang Gao, Yun-Peng Jia
引用方式:
Sheng, M., Huang, Z., Tian, S. et al. CFD analysis and field observation of tool erosion caused by abrasive waterjet fracturing. Pet. Sci. (2020). https://doi.org/10.1007/s12182-020-00425-1
2020 Vol. (石油工程与机械): 1-11
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Porothermoelastic response of an oil sand formation subjected to injection and micro-fracturing in horizontal wells
Botao Lin, Han Meng, Jingjun Pan,
Sen Chen
引用方式:
Lin, B., Meng, H., Pan, J. et al. Porothermoelastic response of an oil sand formation subjected to injection and micro-fracturing in horizontal wells. Pet. Sci. (2020). https://doi.org/10.1007/s12182-019-00420-1
2020 Vol. (石油工程与机械): 1-14
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Modeling of fiber bridging in fluid flow for well stimulation applications
Mehdi Ghommem, Mustapha Abbad, Gallyam Aidagulov, Steve Dyer, Dominic Brady
引用方式:
Ghommem, M., Abbad, M., Aidagulov, G. et al. Pet. Sci. (2019). https://doi.org/10.1007/s12182-019-00398-w
2020 Vol. (石油工程与机械): 1-16
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Experimental and modeling study of wettability alteration through seawater injection in limestone: a case study
Omolbanin Seiedi, Mohammad Zahedzadeh, Emad Roayaei, Morteza Aminnaji, Hossein Fazeli
引用方式:
Seiedi, O., Zahedzadeh, M., Roayaei, E. et al. Experimental and modeling study of wettability alteration through seawater injection in limestone: a case study. Pet. Sci. (2020). https://doi.org/10.1007/s12182-019-00407-y
2020 Vol. (石油工程与机械): 1-10
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Insight into selection of appropriate formulation for colloidal gas aphron (CGA)-based drilling fluids
Mohsen Pasdar, Ezatallah Kazemzadeh, Ehsan Kamari, Mohammad Hossein
引用方式:
Pasdar, M., Kazemzadeh, E., Kamari, E. et al. Insight into selection of appropriate formulation for colloidal gas aphron (CGA)-based drilling fluids. Pet. Sci. (2020). https://doi.org/10.1007/s12182-020-00435-z
2020 Vol. (石油工程与机械): 1-9
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