石油地质与地球物理
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EMT simulation and effect of TTI anisotropic media in EMT signal
Qing-Yun Di, Olalekan Fayemi, Qi-Hui Zhen & Tian Fei
引用方式:
Di, QY., Fayemi, O., Zhen, QH. et al. EMT simulation and effect of TTI anisotropic media in EMT signal. Pet. Sci. 18, 106–122 (2021). https://doi.org/10.1007/s12182-020-00523-0
2021 lssue 1: -
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Rhenium–osmium (Re–Os) geochronology of crude oil from lacustrine source rocks of the Hailar Basin, NE China
Qi-An Meng, Xue Wang, Qiu-Li Huo, Zhong-Liang Dong, Zhen Li, Svetlana G. Tessalina, Bryant D. Ware, Brent I. A. McInnes, Xiao-Lin Wang, Ting Liu & Li Zhang
引用方式:
Meng, Q., Wang, X., Huo, Q. et al. Rhenium–osmium (Re–Os) geochronology of crude oil from lacustrine source rocks of the Hailar Basin, NE China. Pet. Sci. (2020). https://doi.org/10.1007/s12182-020-00518-x
2021 lssue 1: -
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3D anatomy and flow dynamics of net-depositional cyclic steps on the world’s largest submarine fan: a joint 3D seismic and numerical approac
Da-Li Shao, Guo-Zhang Fan, Hai-Qiang Wang, Hong-Xia Ma, Guo-Ping Zuo, Liang-Bo Ding, Zheng Cai & Wei-Qiang Li
引用方式:
Shao, DL., Fan, GZ., Wang, HQ. et al. 3D anatomy and flow dynamics of net-depositional cyclic steps on the world’s largest submarine fan: a joint 3D seismic and numerical approach. Pet. Sci. (2020). https://doi.org/10.1007/s12182-020-00512-3
2021 lssue 1: -
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Paleoenvironment and organic matter enrichment of the Carboniferous volcanic-related source rocks in the Malang Sag, Santanghu Basin, NW Chi
Tian-Jun Li, Zhi-Long Huang, Xuan Chen, Xin-Ning Li & Jun-Tian Liu
引用方式:
Li, TJ., Huang, ZL., Chen, X. et al. Paleoenvironment and organic matter enrichment of the Carboniferous volcanic-related source rocks in the Malang Sag, Santanghu Basin, NW China. Pet. Sci. (2020). https://doi.org/10.1007/s12182-020-00514-1
2021 lssue 1: -
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A deep learning network for estimation of seismic local slopes
Wei-Lin Huang, Fei Gao, Jian-Ping Liao & Xiao-Yu Chuai
引用方式:
Huang, WL., Gao, F., Liao, JP. et al. A deep learning network for estimation of seismic local slopes. Pet. Sci. (2020). https://doi.org/10.1007/s12182-020-00530-1
2021 lssue 1: -
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NMR fluid analyzer applying to petroleum industry
Guang-Zhi Liao, Wei-Liang Chen, Fang-Rong Zong, Feng Deng, Hua-Bing Liu, Bo-Song Wu, Wei Liu, Zhe Sun & Si-Hui Luo
引用方式:
Liao, GZ., Chen, WL., Zong, FR. et al. NMR fluid analyzer applying to petroleum industry. Pet. Sci. (2021). https://doi.org/10.1007/s12182-020-00529-8
2021 lssue 1: -
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石油工程与机械
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Experimental study of multi-timescale crack blunting in hydraulic fracture
Jing-Nan Dong, Guang-Jie Yuan, Xiang-Yang Wang, Mian Chen, Yan Jin, Chao Zeng & Musharraf Zaman
引用方式:
Dong, JN., Yuan, GJ., Wang, XY. et al. Experimental study of multi-timescale crack blunting in hydraulic fracture. Pet. Sci. 18, 234–244 (2021). https://doi.org/10.1007/s12182-020-00479-1
2021 lssue 1: -
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Effect of the structure of backward orifices on the jet performance of self-propelled nozzles
Bi-Wei Fu, Si Zhang & Shao-Hu Liu
引用方式:
Fu, B., Zhang, S. & Liu, S. Effect of the structure of backward orifices on the jet performance of self-propelled nozzles. Pet. Sci. (2020). https://doi.org/10.1007/s12182-020-00511-4
2021 lssue 1: -
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Multi-objective optimization and experiment of nylon cord rubber in expandable packer
Yan-Wen Zhang, Han-Xiang Wang, Jia-Qi Che, Ming-Chao Du & Hong-Jie Zhang
引用方式:
Zhang, YW., Wang, HX., Che, JQ. et al. Multi-objective optimization and experiment of nylon cord rubber in expandable packer. Pet. Sci. (2021). https://doi.org/10.1007/s12182-020-00539-6
2021 lssue 1: -
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Cause analysis and solutions of water blocking damage in cracked/non-cracked tight sandstone gas reservoirs
Jie Wang & Fu-Jian Zhou
引用方式:
Wang, J., Zhou, F. Cause analysis and solutions of water blocking damage in cracked/non-cracked tight sandstone gas reservoirs. Pet. Sci. (2020). https://doi.org/10.1007/s12182-020-00482-6
2021 lssue 1: 1-15
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A novel complex network-based deep learning method for characterizing gas–liquid two-phase flow
Zhong-Ke Gao, Ming-Xu Liu, Wei-Dong Dang & Qing Cai
引用方式:
Gao, Z., Liu, M., Dang, W. et al. A novel complex network-based deep learning method for characterizing gas–liquid two-phase flow. Pet. Sci. (2020). https://doi.org/10.1007/s12182-020-00493-3
2021 lssue 1: -
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Investigating microscopic seepage characteristics and fracture effectiveness of tight sandstones: a digital core approach
Jing Li, Xiao-Rong Li, Ming-Shui Song, Hui-Min Liu, Yong-Cun Feng & Chen Liu
引用方式:
Cite this article Li, J., Li, X., Song, M. et al. Investigating microscopic seepage characteristics and fracture effectiveness of tight sandstones: a digital core approach. Pet. Sci. (2020). https://doi.org/10.1007/s12182-020-00464-8
2021 lssue 1: 1-10
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Flow simulation considering adsorption boundary layer based on digital rock and finite element method
Yong-Fei Yang, Ke Wang, Qian-Fei Lv, Roohollah Askari, Qing-Yan Mei, Jun Yao, Jie-Xin Hou, Kai Zhang, Ai-Fen Li & Chen-Chen Wang
引用方式:
Yang, Y., Wang, K., Lv, Q. et al. Flow simulation considering adsorption boundary layer based on digital rock and finite element method. Pet. Sci. (2020). https://doi.org/10.1007/s12182-020-00476-4
2021 lssue 1: 1-12
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Shale gas reservoir modeling and production evaluation considering complex gas transport mechanisms and dispersed distribution of kerogen
Jie Zeng, Jishan Liu, Wai Li, Yee-Kwong Leong, Derek Elsworth & Jianchun Guo
引用方式:
Zeng, J., Liu, J., Li, W. et al. Shale gas reservoir modeling and production evaluation considering complex gas transport mechanisms and dispersed distribution of kerogen. Pet. Sci. (2020). https://doi.org/10.1007/s12182-020-00495-1
2021 lssue 1: 1-24
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A review of pressure transient analysis in reservoirs with natural fractures, vugs and/or caves
Isah Mohammed, Teslim O. Olayiwola, Murtadha Alkathim, Abeeb A. Awotunde & Saad F. Alafnan
引用方式:
Mohammed, I., Olayiwola, T.O., Alkathim, M. et al. A review of pressure transient analysis in reservoirs with natural fractures, vugs and/or caves. Pet. Sci. (2020). https://doi.org/10.1007/s12182-020-00505-2
2021 lssue 1: -
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The effect of nanoparticles on reservoir wettability alteration: a critical review
Hilmy Eltoum, Yu-Long Yang & Ji-Rui Hou
引用方式:
Eltoum, H., Yang, Y. & Hou, J. The effect of nanoparticles on reservoir wettability alteration: a critical review. Pet. Sci. (2020). https://doi.org/10.1007/s12182-020-00496-0
2021 lssue 1: -
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Characterization and oil recovery enhancement by a polymeric nanogel combined with surfactant for sandstone reservoirs
Mustafa Almahfood & Baojun Bai
引用方式:
Almahfood, M., Bai, B. Characterization and oil recovery enhancement by a polymeric nanogel combined with surfactant for sandstone reservoirs. Pet. Sci. (2020). https://doi.org/10.1007/s12182-020-00525-y
2020 lssue 1: -
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石油化学与化工
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Probing surface interactions of underwater oleophobic polyelectrolyte multilayers
Kai Li, Wei Wang, Zhi-Peng Yu, Hang Jin, Yun-Tong Ge, Wei-Wei Gao, Fan Xiao, Hui-Rong Huang, Ze-Heng Peng & Jing Gong
引用方式:
Li, K., Wang, W., Yu, Z. et al. Probing surface interactions of underwater oleophobic polyelectrolyte multilayers. Pet. Sci. (2020). https://doi.org/10.1007/s12182-020-00521-2
2021 lssue 1: -
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Synthesis of highly active Cu(I)-Y(III)-Y zeolite and its selective adsorption desulfurization performance in presence of xylene isomers
Bo-Long Jiang, Nan Jiang & You-Xin Chang
引用方式:
Jiang, BL., Jiang, N. & Chang, YX. Synthesis of highly active Cu(I)-Y(III)-Y zeolite and its selective adsorption desulfurization performance in presence of xylene isomers. Pet. Sci. (2020). https://doi.org/10.1007/s12182-020-00531-0
2021 lssue 1: -
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Effect of anodic dissolution and passivation on X80 steel in NaHCO3 solution
Lai-Shun Yang & Chao Yang
引用方式:
Yang, LS., Yang, C. Effect of anodic dissolution and passivation on X80 steel in NaHCO3 solution. Pet. Sci. (2020). https://doi.org/10.1007/s12182-020-00532-z
2021 lssue 1: -
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石油经济与管理