石油地质与地球物理
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Predicting the present-day in situ stress distribution within the Yanchang Formation Chang 7 shale oil reservoir of Ordos Basin, central Chi
Wei Ju, Xiao-Bing Niu, Sheng-Bin Feng, Yuan You, Ke Xu, Geoff Wang & Hao-Ran Xu
引用方式:
Ju, W., Niu, X., Feng, S. et al. Predicting the present-day in situ stress distribution within the Yanchang Formation Chang 7 shale oil reservoir of Ordos Basin, central China. Pet. Sci. (2020). https://doi.org/10.1007/s12182-020-00448-8
2020 Issue 4: 1-13
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Geochemical characteristics and genetic mechanism of the high-N2 shale gas reservoir in the Longmaxi Formation, Dianqianbei Area, China
Ji-Lin Li, Ting-Shan Zhang, Yan-Jun Li, Xing Liang, Xin Wang, Jie-Hui Zhang, Zhao Zhang, Hong-Lin Shu & Da-Qian Rao
引用方式:
Li, J., Zhang, T., Li, Y. et al. Geochemical characteristics and genetic mechanism of the high-N2 shale gas reservoir in the Longmaxi Formation, Dianqianbei Area, China. Pet. Sci. (2020). https://doi.org/10.1007/s12182-020-00456-8
2020 Issue 4: -
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Characteristics of high-rank coal structure parallel and perpendicular to the bedding plane via NMR and X-ray CT
Shi-Qi Liu, Shu-Xun Sang, Qiu-Jia Hu & Hui-Huang Fang
引用方式:
Liu, S., Sang, S., Hu, Q. et al. Characteristics of high-rank coal structure parallel and perpendicular to the bedding plane via NMR and X-ray CT. Pet. Sci. (2020). https://doi.org/10.1007/s12182-020-00462-w
2020 Issue 4: 1-14
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Lithofacies identification using support vector machine based on local deep multi-kernel learning
Xing-Ye Liu, Lin Zhou, Xiao-Hong Chen & Jing-Ye Li
引用方式:
Liu, X., Zhou, L., Chen, X. et al. Lithofacies identification using support vector machine based on local deep multi-kernel learning. Pet. Sci. (2020). https://doi.org/10.1007/s12182-020-00474-6
2020 Issue 4: 1-13
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Impact of rock type on the pore structures and physical properties within a tight sandstone reservoir in the Ordos Basin, NW China
Xiang-Dong Yin, Shu Jiang, Shi-Jia Chen, Peng Wu, Wei Gao, Ji-Xian Gao & Xian Shi
引用方式:
Yin, X., Jiang, S., Chen, S. et al. Impact of rock type on the pore structures and physical properties within a tight sandstone reservoir in the Ordos Basin, NW China. Pet. Sci. (2020). https://doi.org/10.1007/s12182-020-00460-y
2020 Issue 4: 1-16
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The nature, type, and origin of diagenetic fluids and their control on the evolving porosity of the Lower Cambrian Xiaoerbulak Formation dol
Pei-Xian Liu, Shi-Biao Deng, Ping Guan, Yi-Qiu Jin, Kai Wang & Yong-Quan Chen
引用方式:
Liu, P., Deng, S., Guan, P. et al. The nature, type, and origin of diagenetic fluids and their control on the evolving porosity of the Lower Cambrian Xiaoerbulak Formation dolostone, northwestern Tarim Basin, China. Pet. Sci. (2020). https://doi.org/10.1007/s12182-020-00434-0
2020 Issue 4: 1-23
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3D elastic waveform modeling with an optimized equivalent staggered-grid finite-difference method
Qiang Zou, Jian-Ping Huang, Peng Yong & Zhen-Chun Li
引用方式:
Zou, Q., Huang, J., Yong, P. et al. 3D elastic waveform modeling with an optimized equivalent staggered-grid finite-difference method. Pet. Sci. (2020). https://doi.org/10.1007/s12182-020-00477-3
2020 Issue 4: 1-
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石油工程与机械
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A new model for predicting irreducible water saturation in tight gas reservoirs
Yu-Liang Su, Jin-Gang Fu, Lei Li, Wen-Dong Wang, Atif Zafar, Mian Zhang & Wei-Ping Ouyang
引用方式:
Su, Y., Fu, J., Li, L. et al. A new model for predicting irreducible water saturation in tight gas reservoirs. Pet. Sci. 17, 1087–1100 (2020). https://doi.org/10.1007/s12182-020-00429-x
2020 Issue 4: -
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Gas/water foams stabilized with a newly developed anionic surfactant for gas mobility control applications
Mohammed A. Almobarky, Zuhair AlYousif & David Schechter
引用方式:
Almobarky, M.A., AlYousif, Z. & Schechter, D. Gas/water foams stabilized with a newly developed anionic surfactant for gas mobility control applications. Pet. Sci. 17, 1025–1036 (2020). https://doi.org/10.1007/s12182-020-00437-x
2020 Issue 4: 1-
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Investigation of erosion behavior of 304 stainless steel under solid–liquid jet flow impinging at 30°
Yan-Lin Zhao, Chun-Yan Tang, Jun Yao, Zi-Hua Zeng & Shi-Gang Dong
引用方式:
Zhao, Y., Tang, C., Yao, J. et al. Investigation of erosion behavior of 304 stainless steel under solid–liquid jet flow impinging at 30°. Pet. Sci. (2020). https://doi.org/10.1007/s12182-020-00473-7
2020 Issue 4: 1-16
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A practical prescreening method for sloshing severity evaluation
Miao-Zi Zheng, Ying Gou, Bin Teng & Hyojae Jo
引用方式:
Zheng, M., Gou, Y., Teng, B. et al. A practical prescreening method for sloshing severity evaluation. Pet. Sci. (2020). https://doi.org/10.1007/s12182-020-00453-x
2020 Issue 4: 1-16
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Methods for simultaneously evaluating reserve and permeability of undersaturated coalbed methane reservoirs using production data during the dewatering stage
Jun-Tai Shi, Jia-Yi Wu, Zheng Sun, Zhi-Hua Xiao, Cheng Liu, Kamy Sepehrnoori
引用方式:
Shi, J., Wu, J., Sun, Z. et al. Methods for simultaneously evaluating reserve and permeability of undersaturated coalbed methane reservoirs using production data during the dewatering stage. Pet. Sci. (2020). https://doi.org/10.1007/s12182-019-00410-3
2020 Issue 4: 1-20
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Stability of the formation interface under the impact of hydraulic fracture propagation in the vicinity of the formation interface
Cong Lu, Yun-Xiao Lu, Jian-Chun Guo, Li-ming Liu
引用方式:
Lu, C., Lu, Y., Guo, J. et al. Stability of the formation interface under the impact of hydraulic fracture propagation in the vicinity of the formation interface. Pet. Sci. (2020). https://doi.org/10.1007/s12182-019-00416-x
2020 Issue 4: 1-18
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Thermally enhanced shale gas recovery: microstructure characteristics of combusted shale
Yuan-Hao Cao, Wei Chen, Teng-Xi Wang, Yin-Nan Yuan
引用方式:
Cao, Y., Chen, W., Wang, T. et al. Thermally enhanced shale gas recovery: microstructure characteristics of combusted shale. Pet. Sci. (2020). https://doi.org/10.1007/s12182-020-00428-y
2020 Issue 4: 1-11
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Stabilization of nickel nanoparticle suspensions with the aid of polymer and surfactant: static bottle tests and dynamic micromodel flow tests
Siyuan Yi, Tayfun Babadagli, Huazhou Li
引用方式:
Yi, S., Babadagli, T. & Li, H. Stabilization of nickel nanoparticle suspensions with the aid of polymer and surfactant: static bottle tests and dynamic micromodel flow tests. Pet. Sci. (2020). https://doi.org/10.1007/s12182-020-00433-1
2020 Issue 4: 1-11
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A review of development methods and EOR technologies for carbonate reservoirs
Zheng-Xiao Xu, Song-Yan Li, Bin-Fei Li, Dan-Qi Chen, Zhong-Yun Liu & Zhao-Min Li
引用方式:
Xu, Z., Li, S., Li, B. et al. A review of development methods and EOR technologies for carbonate reservoirs. Pet. Sci. (2020). https://doi.org/10.1007/s12182-020-00467-5
2020 Issue 4: 1-24
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石油化学与化工
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Particle velocity measurement of binary mixtures in the riser of a circulating fluidized bed by the combined use of electrostatic sensing an
Wen-Biao Zhang, Tian-Yu Wang, Yao-Yao Liu, Wen-Bo Zhan & Chi-Hwa Wang
引用方式:
Zhang, W., Wang, T., Liu, Y. et al. Particle velocity measurement of binary mixtures in the riser of a circulating fluidized bed by the combined use of electrostatic sensing and high-speed imaging. Pet. Sci. 17, 1159–1170 (2020). https://doi.org/10.1007/s12182-020-00452-y
2020 Issue 4: 1-12
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Detailed study on the effect of different ignition enhancers in the binary blends of diesel/biodiesel as a possible substitute for unaltered
Yuvarajan Devarajan, Dineshbabu Munuswamy, Beemkumar Nagappan & S. Ganesan
引用方式:
Devarajan, Y., Munuswamy, D., Nagappan, B. et al. Detailed study on the effect of different ignition enhancers in the binary blends of diesel/biodiesel as a possible substitute for unaltered compression ignition engine. Pet. Sci. (2020). https://doi.org/10.1007/s12182-020-00463-9
2020 Issue 4: 1-8
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石油经济与管理
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The heterogeneous influence of economic growth on environmental pollution: evidence from municipal data of China
Zhen Huangfu, Hui Hu, Nan Xie, Yu-Qi Zhu, Hao Chen & Yang Wang
引用方式:
Huangfu, Z., Hu, H., Xie, N. et al. The heterogeneous influence of economic growth on environmental pollution: evidence from municipal data of China. Pet. Sci. (2020). https://doi.org/10.1007/s12182-020-00459-5
2020 Issue 4: 1-14
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Scenario analysis on abating industrial process greenhouse gas emissions from adipic acid production in China
Qing Tong, Han-Yi Lin, Xu-Ying Qin, Run-Sheng Yan, Yue-Feng Guo & Xin-Yang Wei
引用方式:
Tong, Q., Lin, H., Qin, X. et al. Scenario analysis on abating industrial process greenhouse gas emissions from adipic acid production in China. Pet. Sci. (2020). https://doi.org/10.1007/s12182-020-00450-0
2020 Issue 4: 1-9
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