Petroleum Geology
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Helium dynamic accumulation process in the Hetianhe gas field, Tarim Basin, northwest China
Jia-Hao Lv, Quan-You Liu, Peng-Peng Li, Jia-Run Liu, Yu Gao, Zheng Zhou
引用方式:
Lv, J.H., Liu, Q.Y., Li, P.P., et al., 2026. Helium dynamic accumulation process in the Hetianhe gas field, Tarim Basin, northwest China. Pet. Sci. 23 (2), 596–607. https://doi.org/10.1016/j.petsci.2025.09.027.
2026 Issue2: 596-607
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Geochemical characteristics and sources of natural gas in the Upper Paleozoic limestone strata, Ordos Basin
Wen Zhang, Qian-Ping Wang, Wen-Hui Liu, Ping-Ping Shi, Hou-Yong Luo, Peng Liu, Xiao-Yan Chen, Qian Zhang, Xiao-Feng Wang, Dong-Dong Zhang, Yi-Ran Wang, Fu-Qi Li
引用方式:
Zhang, W., Wang, Q.P., Liu, W.H., et al., 2026. Geochemical characteristics and sources of natural gas in the Upper Paleozoic limestone strata, Ordos Basin. Pet. Sci. 23 (2), 582–595. https://doi.org/10.1016/j.petsci.2025.10.008.
2026 Issue2: 582-595
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The development of deformation bands from experiments: Review and perspective
Ming-Ming Jiang, Xiao-Fei Fu, Quan-You Liu
引用方式:
Jiang, M.M., Fu, X.F., Liu, Q.Y., 2026. The development of deformation bands from experiments: Review and perspective. Pet. Sci. 23 (2), 563–581. https://doi.org/10.1016/j.petsci.2025.09.029.
2026 Issue2: 563-581
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Fracture response patterns in deep to ultra-deep tight sandstones: A comparison based on core and borehole images
Yu Du, Hu-Cheng Deng, Xiao-Fei Hu, Hao-Tian Zhang, Hong-Hui Wang, Cui-Li Wang, Mao-Xin Liu, Chen-Yang Zhao, Shang-Rong Guo, Zi-Yun Zheng
引用方式:
Du, Y., Deng, H.C., Hu, X.F., et al., 2026. Fracture response patterns in deep to ultra-deep tight sandstones: A comparison based on core and borehole images. Pet. Sci. 23 (2), 541–562. https://doi.org/10.1016/j.petsci.2025.09.021.
2026 Issue2: 541-562
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Petroleum Geophysics
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Adsorption behavior of spherical pores in shale integrated with simplified local density theory
Yu Zhao, Da-Guo Quan, Chao-Lin Wang, Kun-Peng Zhang
引用方式:
Zhao, Y., Quan, D.G., Wang, C.L., et al., 2026. Adsorption behavior of spherical pores in shale integrated with simplified local density theory. Pet. Sci. 23 (2), 692–711. https://doi.org/10.1016/j.petsci.2025.09.012.
2026 Issue2: 692-711
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A novel NMR methodology for the quantitative characterization of solid organic matter in shale oil
Chen-Yu Xu, Ran-Hong Xie, Jiang-Feng Guo, Xiang-Yu Wang, Li-Zhi Xiao, Guo-Wen Jin, Bo-Chuan Jin, Xiao-Long Ju
引用方式:
Xu, C.Y., Xie, R.H., Guo, J.F., et al., 2026. A novel NMR methodology for the quantitative characterization of solid organic matter in shale oil. Pet. Sci. 23 (2), 680–691. https://doi.org/10.1016/j.petsci.2025.11.009.
2026 Issue2: 680-691
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Permeability estimation using rock physics modeling and variational Bayes inversion
Mohammadfarid Ghasemi, Abdorrazagh Javid
引用方式:
Ghasemi, M., Javid, A., 2026. Permeability estimation using rock physics modeling and variational Bayes inversion. Pet. Sci. 23 (2), 656–679. https://doi.org/10.1016/j.petsci.2025.10.011.
2026 Issue2: -
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A machine learning method for evaluating shale gas production based on the TCN-PgInformer model
Hao-Yu Zhang, Wen-Sheng Wu, Zhang-Xin Chen, Benjieming Liu
引用方式:
Zhang, H.Y., Wu, W.S., Chen, Z.X., et al., 2026. A machine learning method for evaluating shale gas production based on the TCN-PgInformer model. Pet. Sci. 23 (2), 643–655. https://doi.org/10.1016/j.petsci.2025.11.022.
2026 Issue2: 643-655
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Seismic simulation for distributed acoustic sensing data using a novel stress and strain-rate elastic wave equation
Chong Zhao, Ji-Dong Yang, Jian-Ping Huang, Ning Qin, Kun Tian, Fei-Long Yang
引用方式:
Zhao, C., Yang, J.D., Huang, J.P., et al., 2026. Seismic simulation for distributed acoustic sensing data using a novel stress and strain-rate elastic wave equation. Pet. Sci. 23 (2), 626–642. https://doi.org/10.1016/j.petsci.2025.09.015.
2026 Issue2: 626-642
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Joint geostatistical seismic inversion of elastic and petrophysical properties using stochastic co-simulation models based on parametric copulas
Daniel Vázquez-Ramírez, Martín A. Díaz-Viera, Raúl del Valle-García
引用方式:
Vázquez Ramírez, D., Díaz Viera, M.A., Valle García, R.D., 2026. Joint geostatistical seismic inversion of elastic and petrophysical properties using stochastic co-simulation models based on parametric copulas. Pet. Sci. 23 (2), 608–625. https://doi.org/10.1016/j.petsci.2025.10.029.
2026 Issue2: 608-625
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Petroleum Geochemistry
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Genesis of Late Carboniferous volcanic rocks in the Kebai Fault Zone, Western Junggar, Xinjiang: Constraints from zircon U-Pb age, whole rock geochemistry, and Sr-Nd-Pb isotopes
Wei Wang, Chuan-Yi Tang, Zong-Quan Yao, Yan Gao, Feng-Bin Han, Zong-Rui Xie, Jian Chen, Yuan-Feng Yang, Ya-Fang Zhang
引用方式:
Wang, W., Tang, C.Y., Yao, Z.Q., et al., 2026. Genesis of Late Carboniferous volcanic rocks in the Kebai Fault Zone, Western Junggar, Xinjiang: Constraints from zircon U-Pb age, whole rock geochemistry, and Sr-Nd-Pb isotopes. Pet. Sci. 23 (2), 712–729. https://doi.org/10.1016/j.petsci.2025.10.030.
2026 Issue2: 712-729
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Petroleum Engineering
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Study of the effect of wax on carbon dioxide hydrate formation in oil–water mixture with high water content
Hang Yang, Jia-Qiang Jing, Jie Sun, Jia-Tong Tan
引用方式:
Yang, H., Jing, J.Q., Sun, J., et al., 2026. Study of the effect of wax on carbon dioxide hydrate formation in oil–water mixture with high water content. Pet. Sci. 23 (2), 939–953. https://doi.org/10.1016/j.petsci.2025.09.042.
2026 Issue2: 939-953
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Competition between viscous and capillary forces triggers diversity of fluid distribution and imbibition modes
Jin-Xin Cao, Yi-Qiang Li, Yu-Ling Zhang, Ya-Qian Zhang, Zhe-Yu Liu, Qi-Hang Li, Xue-Chen Tang, Tao Song
引用方式:
Cao, J.X., Li, Y.Q., Zhang, Y.L., et al., 2026. Competition between viscous and capillary forces triggers diversity of fluid distribution and imbibition modes. Pet. Sci. 23 (2), 928–938. https://doi.org/10.1016/j.petsci.2025.09.043.
2026 Issue2: 928-938
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Stability mechanism and steady-state flow characteristics of oil-resistant foam in high-salinity reservoirs
Lin Sun, Jia-Qi Yin, Hong-Ying Sun, Yan-Ping Wu, Wan-Fen Pu, Bing Wei
引用方式:
Sun, L., Yin, J.Q., Sun, H.Y., et al., 2026. Stability mechanism and steady-state flow characteristics of oil-resistant foam in high-salinity reservoirs. Pet. Sci. 23 (2), 913–927. https://doi.org/10.1016/j.petsci.2025.11.014.
2026 Issue2: 913-927
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Study of the effect of nanoemulsion on the EOR in low-permeability, highly waxy oil reservoirs based on NMR displacement experiments
Rui-Jie Fei, Ming-Hui Li, Shuai Yuan, Chen Cao, Fu-Jian Zhou, Er-Dong Yao, Hao Bai, Diu-Wei Ding
引用方式:
Fei, R.J., Li, M.H., Yuan, S., et al., 2026. Study of the effect of nanoemulsion on the EOR in low-permeability, highly waxy oil reservoirs based on NMR displacement experiments. Pet. Sci. 23 (2), 897–912. https://doi.org/10.1016/j.petsci.2025.11.013.
2026 Issue2: 897-912
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Mechanistic insights into amine-oxide-modified silica nanoparticle-stabilized Pickering emulsions for enhanced heavy oil recovery in heterogeneous reservoirs
Hai-Hua Pei, Jian-Wei Zhao, Yang Liu, Jian Zhang, Gui-Cai Zhang
引用方式:
Pei, H.H., Zhao, J.W., Liu, Y., et al., 2026. Mechanistic insights into amine-oxide-modified silica nanoparticle-stabilized Pickering emulsions for enhanced heavy oil recovery in heterogeneous reservoirs. Pet. Sci. 23 (2), 882–896. https://doi.org/10.1016/j.petsci.2025.11.012.
2026 Issue2: 882-896
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NMR-monitored CH4 adsorption/desorption dynamics in shale: Implications for CO2-ESGR and in-situ sequestration
Sheng-Ming Huang, Guan-Cheng Jiang, Jun Yang, Chun-Ping Guo, Quan-De Wang, Teng-Fei Dong, Yin-Bo He, Li-Li Yang, Qing-Gong Liu, Zhe-Hui Jin
引用方式:
Huang, S.M., Jiang, G.C., Yang, J., et al., 2026. NMR-monitored CH4 adsorption/desorption dynamics in shale: Implications for CO2-ESGR and in-situ sequestration. Pet. Sci. 23 (2), 868–881. https://doi.org/10.1016/j.petsci.2025.11.003.
2026 Issue2: 868-881
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Enhancing acrylamide-based polymer performance in high temperature drilling fluid: Role of isopentenol polyoxyethylene ether
Yuan-Wei Sun, Jin-Sheng Sun, Kai-He Lv, Jing-Ping Liu, Chen-Jing Shi, Tai-Feng Zhang, Yu-Fan Zheng, Han Yan, Ye-Cheng Li
引用方式:
Sun, Y.W., Sun, J.S., Lv, K.H., et al., 2026. Enhancing acrylamide-based polymer performance in high temperature drilling fluid: Role of isopentenol polyoxyethylene ether. Pet. Sci. 23 (2), 851–867. https://doi.org/10.1016/j.petsci.2025.10.028.
2026 Issue2: 851-867
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A novel approach to evaluating remaining oil potential using dynamic connectivity and bivariate mapping in large-scale reservoirs
Jun-Da Wu, Tao Chang, Yi-Fan He, Quan-Lin Wang, Di Wang
引用方式:
Wu, J.D., Chang, T., He, Y.F., et al., 2026. A novel approach to evaluating remaining oil potential using dynamic connectivity and bivariate mapping in large-scale reservoirs. Pet. Sci. 23 (2), 836–850. https://doi.org/10.1016/j.petsci.2025.12.018.
2026 Issue2: 836-850
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Performance evaluation of multilateral horizontal wells on flow characteristics and recovery efficiency based on coupled model
Chun-Xue Cui, Xiao-Long Chai, Yue-Wu Liu, Zhi-Jun Zhou, Guo-Qing Zhang, Leng Tian
引用方式:
Cui, C.X., Chai, X.L., Liu, Y.W., et al., 2026. Performance evaluation of multilateral horizontal wells on flow characteristics and recovery efficiency based on coupled model. Pet. Sci. 23 (2), 818–835. https://doi.org/10.1016/j.petsci.2025.10.025.
2026 Issue2: 818-835
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Modified Peng-Robinson equation of state for confined fluids: Critical pore size and phase behavior in shale nanopores
Hong-Xian Kuang, Zhou-Hua Wang, Na Jia, Han-Min Tu, Yun Li, Huang Liu, Ping Guo, Zi-Yan Wang
引用方式:
Kuang, H.X., Wang, Z.H., Jia, N., et al., 2026. Modified Peng-Robinson equation of state for confined fluids: Critical pore size and phase behavior in shale nanopores. Pet. Sci. 23 (2), 804–817. https://doi.org/10.1016/j.petsci.2025.11.010.
2026 Issue2: 804-817
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Mechanism and influencing factors of electroosmosis-driven residual water drainage in soft coal seams during coalbed methane recovery
Jun-Qing Guo, Peng-Hui Liu, De-Zhi Sun, Chun-Sheng Lu, Yu-Qing Wang, Wei Li
引用方式:
Guo, J.Q., Liu, P.H., Sun, D.Z., et al., 2026. Mechanism and influencing factors of electroosmosis-driven residual water drainage in soft coal seams during coalbed methane recovery. Pet. Sci. 23 (2), 791–803. https://doi.org/10.1016/j.petsci.2025.10.021.
2026 Issue2: 791-803
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Study on the phase behavior and minimum miscible pressure of CO2-shale oil in nanopores with confinement effect
Ying Xiong, Peng-Fei Chen, Wan-Fen Pu, Rui Jiang, Qin Pang
引用方式:
Xiong, Y., Chen, P.F., Pu, W.F., et al., 2026. Study on the phase behavior and minimum miscible pressure of CO2-shale oil in nanopores with confinement effect. Pet. Sci. 23 (2), 777–790. https://doi.org/10.1016/j.petsci.2025.11.039.
2026 Issue2: 777-790
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Numerical investigation of natural gas-enhanced autothermic pyrolysis for optimizing in-situ conversion in oil shale
Chao-Fan Zhu, Tan-En Jiang, Shan-Shan Yao, Jia-Zong Li, Rui Jia, Wei Guo
引用方式:
Zhu, C.F., Jiang, T.E., Yao, S.S., et al., 2026. Numerical investigation of natural gas-enhanced autothermic pyrolysis for optimizing in-situ conversion in oil shale. Pet. Sci. 23 (2), 762–776. https://doi.org/10.1016/j.petsci.2025.11.035.
2026 Issue2: 762-776
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Application of a CWFS model-based brittleness index for evaluating anisotropic brittleness in terrestrial shale under triaxial stress
Jun Zhang, Jin-Yuan Zhang, Jia Zeng, Zhe-Jun Pan, Yu-Wei Li, Zi-Yuan Cong
引用方式:
Zhang, J., Zhang, J.Y., Zeng, J., et al., 2026. Application of a CWFS model-based brittleness index for evaluating anisotropic brittleness in terrestrial shale under triaxial stress. Pet. Sci. 23 (2), 742–761. https://doi.org/10.1016/j.petsci.2025.11.045.
2026 Issue2: 742-761
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Application of acrylic-based wellbore strengthening material in water-based drilling fluid to stabilize the fractured formation
Kai-He Lv, Juan He, Xian-Bin Huang, Jin-Sheng Sun
引用方式:
Lv, K.H., He, J., Huang, X.B., et al., 2026. Application of acrylic-based wellbore strengthening material in water-based drilling fluid to stabilize the fractured formation. Pet. Sci. 23 (2), 730–741. https://doi.org/10.1016/j.petsci.2025.11.037.
2026 Issue2: 730-741
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Petroleum Chemical Engineering
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Comparing the thermal processing with slurry phase hydroupgrading to increase the yields of distillates of Arabian heavy crude oil
Yi-Di Wang, Xu Zhang, Xin-Yi Feng, Bin Liu, Yuan Pan, Guang-Zheng Sun, Hong-Yang Lv, Feng-Yu Tian, Bin Dong, Yi-Chuan Li, Chen-Guang Liu, Yong-Ming Chai
引用方式:
Wang, Y.D., Zhang, X., Feng, X.Y., et al., 2026. Comparing the thermal processing with slurry phase hydroupgrading to increase the yields of distillates of Arabian heavy crude oil. Pet. Sci. 23 (2), 966–978. https://doi.org/10.1016/j.petsci.2025.11.032.
2026 Issue2: 966-978
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Long-term sustained release of small molecular surfactants using microcapsules
Shuang Liu, Ling-Ling Ren, Zheng Wang, Jia-Wei Shi, Chen-Guang Wang, Jia-Hui Guo, Lu Zhang, Hao-Ran Cheng, Li-Yuan Zhang
引用方式:
Liu, S., Ren, L.L., Wang, Z., et al., 2026. Long-term sustained release of small molecular surfactants using microcapsules. Pet. Sci. 23 (2), 954–965. https://doi.org/10.1016/j.petsci.2025.11.019.
2026 Issue2: 954-965
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Petroleum Economics & Management
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The impact of fossil energy technological progress on sectoral implied energy intensity: Evidence from the U.S. shale gas revolution
Xiang-Yu Kong, Hong Li, Bang-Rui Wu
引用方式:
Kong, X.Y., Li, H., Wu, B.R., 2026. The impact of fossil energy technological progress on sectoral implied energy intensity: Evidence from the U.S. shale gas revolution. Pet. Sci. 23 (2), 990–997. https://doi.org/10.1016/j.petsci.2025.12.017.
2026 Issue2: 990-997
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A more efficient subsidy policy for CO2 enhanced oil recovery: Insights from a vertically integrated business model
Liang-Yu Xia, Yao Wu, Yue-Mei Zhang
引用方式:
Xia, L.Y., Wu, Y., Zhang, Y.M., 2026. A more efficient subsidy policy for CO2 enhanced oil recovery: Insights from a vertically integrated business model. Pet. Sci. 23 (2), 979–989. https://doi.org/10.1016/j.petsci.2025.11.040.
2026 Issue2: 979-989
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Emerging Fields
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Changes in the effective absolute permeability of hydrate-bearing sands during isotropic loading and unloading
Hui-Long Ma, Xiu-Li Feng, Le-Le Liu, An Zhang, Dong Wang
引用方式:
Ma, H.L., Feng, X.L., Liu, L.L., et al., 2026. Changes in the effective absolute permeability of hydrate-bearing sands during isotropic loading and unloading. Pet. Sci. 23 (2), 998–1013. https://doi.org/10.1016/j.petsci.2025.10.009.
2026 Issue2: 998-1013
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