本期封面
版权信息
主管:教育部
主办:中国石油大学(北京)
主编:肖立志
编辑出版:石油科学(英文)编辑部
责任编辑:郝洁 孙燕华 费佳佳 周孟娇 李敏 张茜
开放获取:KeAi
地址:北京市昌平区府学路18号中国石油大学(北京)主楼A座
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邮箱:petroleumscience@cup.edu.cn
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2026年 第23卷 第7期
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Pore pressure control on multi-scale reservoir properties in deep and ultra-deep sandstones of the Cretaceous Bashijiqike Formation, Kuqa Depression, Tarim Basin, NW China
引用方式:Su, Y., Lai, J., Dang, W.L., et al., 2026. Pore pressure control on multi-scale reservoir properties in deep and ultra-deep sandstones of the Cretaceous Bashijiqike Formation, Kuqa Depression, Tarim Basin, NW China. Petrol. Sci. 23 (7), 3875–3891. https://doi.org/10.1016/j.petsci.2026.05.038.[摘要] (
次 )
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A DBOKS-based hybrid machine learning method for carbonate rock classification
引用方式:Li, W.C., Zhao, Z.X., He, Y.B., et al., 2026. A DBOKS-based hybrid machine learning method for carbonate rock classification. Petrol. Sci. 23 (7), 3854–3874. https://doi.org/10.1016/j.petsci.2026.04.043.[摘要] (
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Multivariate data-driven fracture identification and distribution pattern in tight sandstone reservoirs using an improved CNN-Attention-BiLSTM: A case study of the Permian Lower Shihezi Formation in the Hangjinqi area, Ordos Basin, China
引用方式:Liang, B.Y., Zeng, L.B., Dong, S.Q., et al., 2026. Multivariate data-driven fracture identification and distribution pattern in tight sandstone reservoirs using an improved CNN-Attention-BiLSTM: A case study of the Permian Lower Shihezi Formation in the Hangjinqi area, Ordos Basin, China. Petrol. Sci. 23 (7), 3834–3853. https://doi.org/10.1016/j.petsci.2026.05.004.[摘要] (
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A novel interpretable machine learning framework for predicting gas-bearing properties of tight sandstone reservoirs
引用方式:Cao, L., Jiang, F.J., Chen, Z.X., et al., 2026. A novel interpretable machine learning framework for predicting gas-bearing properties of tight sandstone reservoirs. Petrol. Sci. 23 (7), 3805–3833. https://doi.org/10.1016/j.petsci.2026.05.018.[摘要] (
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A multiple review on identification and fine evaluation of shale pores: Prospects and challenges
引用方式:Gou, Q.Y., Xu, S., Hao, F., et al., 2026. A multiple review on identification and fine evaluation of shale pores: Prospects and challenges. Petrol. Sci. 23 (7), 3777–3804. https://doi.org/10.1016/j.petsci.2026.05.003.[摘要] (
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A new insight from morphological numerical simulation of casing shear-compression deformation caused by fault and fracture slip
引用方式:Zhang, H.X., Tong, H.M., Ma, W.H., et al., 2026. A new insight from morphological numerical simulation of casing shear-compression deformation caused by fault and fracture slip. Petrol. Sci. 23 (7), 3759–3776. https://doi.org/10.1016/j.petsci.2026.01.025.[摘要] (
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Formation and preservation processes of Ediacaran microbial dolomite pore system, evidence from the Qigebrak Formation, Tarim Basin, China
引用方式:Chen, X.D., Xu, Q.L., Hao, F., et al., 2026. Formation and preservation processes of Ediacaran microbial dolomite pore system, evidence from the Qigebrak Formation, Tarim Basin, China. Petrol. Sci. 23 (7), 3739–3758. https://doi.org/10.1016/j.petsci.2025.10.032.[摘要] (
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Hydrocarbon generation thermal simulation experiment of massive organic-rich tuff and laminar tuffaceous shale: A case study of the Chang 7 member of the Ordos Basin
引用方式:Liu, H.L., Yin, S., Zhao, Q., et al., 2026. Hydrocarbon generation thermal simulation experiment of massive organic-rich tuff and laminar tuffaceous shale: A case study of the Chang 7 member of the Ordos Basin. Petrol. Sci. 23 (7), 3723–3738. https://doi.org/10.1016/j.petsci.2025.12.036.[摘要] (
次 )
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Full waveform inversion via BEEMD-based gradient decomposition
引用方式:Lu, Y.L., Huang, J.P., Chen, L., et al., 2026. Full waveform inversion via BEEMD-based gradient decomposition. Petrol. Sci. 23 (7), 3972–3987. https://doi.org/10.1016/j.petsci.2026.02.002.[摘要] (
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Enhancement of NMR relaxation inversion: A review on pretreatment denoising
引用方式:Guo, J.F., Zhao, Y.J., Xie, R.H., et al., 2026. Enhancement of NMR relaxation inversion: A review on pretreatment denoising. Petrol. Sci. 23 (7), 3947–3971. https://doi.org/10.1016/j.petsci.2026.02.019.[摘要] (
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Progressive pseudo-label self-supervised waveform inversion and imaging based on multiscale strategies: A marine data case application
引用方式:Li, W.D., Zhang, H., Huo, S.D., et al., 2026. Progressive pseudo-label self-supervised waveform inversion and imaging based on multiscale strategies: A marine data case application. Petrol. Sci. 23 (7), 3932–3946. https://doi.org/10.1016/j.petsci.2026.03.011.[摘要] (
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Fluid flow visualization and resistivity variations during gas-water displacement in carbonate rock: Implications for reservoir evaluation
引用方式:Lai, Q., Wu, Y.Y., Wu, F., et al., 2026. Fluid flow visualization and resistivity variations during gas-water displacement in carbonate rock: Implications for reservoir evaluation. Petrol. Sci. 23 (7), 3920–3931. https://doi.org/10.1016/j.petsci.2026.03.036.[摘要] (
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Application of 2D full-waveform inversion for characterizing potential gas reservoirs
引用方式:Ren, K., Lu, S.P., Dong, X.T., et al., 2026. Application of 2D full-waveform inversion for characterizing potential gas reservoirs. Petrol. Sci. 23 (7), 3906–3919. https://doi.org/10.1016/j.petsci.2026.03.034.[摘要] (
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Closed-loop porosity inversion method with well-seismic joint constraints based on wavelet transform
引用方式:Chen, T.F., Zhang, G.Z., Hao, H.J., et al., 2026. Closed-loop porosity inversion method with well-seismic joint constraints based on wavelet transform. Petrol. Sci. 23 (7), 3892–3905. https://doi.org/10.1016/j.petsci.2026.03.020.[摘要] (
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Unveiling the multiscale dissolution pathways of asphaltene deposits in a natural deep eutectic solvent (NaDES)
引用方式:Liu, Y.H., Ma, X.Y., Hu, D.K., et al., 2026. Unveiling the multiscale dissolution pathways of asphaltene deposits in a natural deep eutectic solvent (NaDES). Petrol. Sci. 23 (7), 4193–4203. https://doi.org/10.1016/j.petsci.2026.04.015.[摘要] (
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Thickening characteristics and conformance control mechanism of CO2-responsive fluid during CO2 flooding
引用方式:Wang, X.G., Liu, D.H., Cheng, H.B., et al., 2026. Thickening characteristics and conformance control mechanism of CO2-responsive fluid during CO2 flooding. Petrol. Sci. 23 (7), 4183–4192. https://doi.org/10.1016/j.petsci.2026.03.043.[摘要] (
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Research on low-viscosity high-elastic fracturing fluid system with specific recognition and supramolecular assembly
引用方式:Bai, H., Zhou, F.J., Ding, Z.Y., et al., 2026. Research on low-viscosity high-elastic fracturing fluid system with specific recognition and supramolecular assembly. Petrol. Sci. 23 (7), 4165–4182. https://doi.org/10.1016/j.petsci.2026.03.032.[摘要] (
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Enhancing the performance of high-temperature, high-salinity, high-density water-based drilling fluid using a rheological modifier with low viscosity and high yield point characteristic
引用方式:Sun, Y.W., Sun, J.S., Lv, K.H., et al., 2026. Enhancing the performance of high-temperature, high-salinity, high-density water-based drilling fluid using a rheological modifier with low viscosity and high yield point characteristic. Petrol. Sci. 23 (7), 4145–4164. https://doi.org/10.1016/j.petsci.2026.03.027.[摘要] (
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Staged propagation mechanisms and their implications for fracture interaction and fracture swarm formation
引用方式:Li, Y.Y., Zhang, G.Q., Song, Z.Y., 2026. Staged propagation mechanisms and their implications for fracture interaction and fracture swarm formation. Petrol. Sci. 23 (7), 4132–4144. https://doi.org/10.1016/j.petsci.2026.05.054.[摘要] (
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Optimization of injection parameters in offshore low permeability reservoir based on a compositional embedded discrete fracture model
引用方式:Xu, S.Q., Zeng, Q.J., Guo, J.C., et al., 2026. Optimization of injection parameters in offshore low permeability reservoir based on a compositional embedded discrete fracture model. Petrol. Sci. 23 (7), 4113–4131. https://doi.org/10.1016/j.petsci.2026.02.023.[摘要] (
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Experimental investigations on spontaneous imbibition process applied in tight conglomerate oil reservoir
引用方式:Zhou, X., Hu, Z.W., Wang, F., et al., 2026. Experimental investigations on spontaneous imbibition process applied in tight conglomerate oil reservoir. Petrol. Sci. 23 (7), 4100–4112. https://doi.org/10.1016/j.petsci.2026.02.022.[摘要] (
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Intelligent early kick recognition via knowledge-guided Bi-LSTM
引用方式:Wang, D.Y., Sun, W.F., Guo, Y.L., et al., 2026. Intelligent early kick recognition via knowledge-guided Bi-LSTM. Petrol. Sci. 23 (7), 4082–4099. https://doi.org/10.1016/j.petsci.2026.03.018.[摘要] (
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Zwitterionic-hydrophobic associating polymer for enhanced rheology and fluid-loss control in high-temperature, high-salinity water-based drilling fluids
引用方式:Wang, Q.B., Luo, W.J., Pan, L.F., et al., 2026. Zwitterionic-hydrophobic associating polymer for enhanced rheology and fluid-loss control in high-temperature, high-salinity water-based drilling fluids. Petrol. Sci. 23 (7), 4065–4081. https://doi.org/10.1016/j.petsci.2026.03.042.[摘要] (
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Integration of multi-source geological engineering data for fracturing parameter optimization model
引用方式:Li, J., Xiu, Q.Z., He, X.D., et al., 2026. Integration of multi-source geological engineering data for fracturing parameter optimization model. Petrol. Sci. 23 (7), 4053–4064. https://doi.org/10.1016/j.petsci.2026.03.059.[摘要] (
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The effect of geological features on hydraulic fracture propagation guided by radial boreholes in the thin interbedded reservoirs
引用方式:Wu, X.G., Long, T.D., Xie, Z.X., et al., 2026. The effect of geological features on hydraulic fracture propagation guided by radial boreholes in the thin interbedded reservoirs. Petrol. Sci. 23 (7), 4034–4052. https://doi.org/10.1016/j.petsci.2026.03.016.[摘要] (
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A novel method for drilling rate of penetration prediction and transfer generalization based on physics-informed neural networks
引用方式:He, M., Yuan, Q.R., Li, J., et al., 2026. A novel method for drilling rate of penetration prediction and transfer generalization based on physics-informed neural networks. Petrol. Sci. 23 (7), 4009–4033. https://doi.org/10.1016/j.petsci.2026.03.010.[摘要] (
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Magnetic coupling mechanism between high-intensity magnet and multiple close-range casings and casing positioning method: Numerical simulation and experimental study
引用方式:Ma, X.P., Hu, Z.Z., Fu, S.J., et al., 2026. Magnetic coupling mechanism between high-intensity magnet and multiple close-range casings and casing positioning method: Numerical simulation and experimental study. Petrol. Sci. 23 (7), 3988–4008. https://doi.org/10.1016/j.petsci.2026.03.006.[摘要] (
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Failure mechanism and structure optimization of sand control screen in water-bearing gas well
引用方式:Deng, F.C., Gong, J., Gong, N., et al., 2026. Failure mechanism and structure optimization of sand control screen in water-bearing gas well. Petrol. Sci. 23 (7), 4320–4335. https://doi.org/10.1016/j.petsci.2025.12.021.[摘要] (
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Investigation of tip leakage vortex instability and pressure pulsation characteristics in a vane-type multiphase pump
引用方式:Wen, H.G., Shi, G.T., Lv, W.J., et al., 2026. Investigation of tip leakage vortex instability and pressure pulsation characteristics in a vane-type multiphase pump. Petrol. Sci. 23 (7), 4296–4319. https://doi.org/10.1016/j.petsci.2026.04.031.[摘要] (
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Energy-driven damage constitutive model of thermal insulation materials for deep rock in-situ temperature-preserved coring
引用方式:Wei, Z.J., He, Z.Q., Chen, L., et al., 2026. Energy-driven damage constitutive model of thermal insulation materials for deep rock in-situ temperature-preserved coring. Petrol. Sci. 23 (7), 4280–4295. https://doi.org/10.1016/j.petsci.2026.04.018.[摘要] (
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Multiple size group modeling of gas–liquid flow instability and energy conversion in a multiphase pump: Effects of inlet gas volume fraction
引用方式:Ge, Z.G., Qiu, R.B., Feng, J.J., et al., 2026. Multiple size group modeling of gas–liquid flow instability and energy conversion in a multiphase pump: Effects of inlet gas volume fraction. Petrol. Sci. 23 (7), 4259–4279. https://doi.org/10.1016/j.petsci.2026.04.030.[摘要] (
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A resilience-oriented transient optimization approach for emergency operation of natural gas pipeline systems with linepack dynamics and priority-based load shedding
引用方式:Zhao, S.R., Zuo, L.L., Zhu, F., et al., 2026. A resilience-oriented transient optimization approach for emergency operation of natural gas pipeline systems with linepack dynamics and priority-based load shedding. Petrol. Sci. 23 (7), 4243–4258. https://doi.org/10.1016/j.petsci.2026.05.045.[摘要] (
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A systematic two-stage optimization framework for congestion locating and multi-component expansion planning in natural gas pipeline networks
引用方式:Zhou, J., Qin, C., Peng, J.H., et al., 2026. A systematic two-stage optimization framework for congestion locating and multi-component expansion planning in natural gas pipeline networks. Petrol. Sci. 23 (7), 4223–4242. https://doi.org/10.1016/j.petsci.2026.02.011.[摘要] (
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A three-dimensional fuzzy dynamic risk assessment model with dynamic cloud weights for human operational errors in oil and gas pipelines
引用方式:Qu, X.Q., Cao, J.T., Zhao, T.Y., et al., 2026. A three-dimensional fuzzy dynamic risk assessment model with dynamic cloud weights for human operational errors in oil and gas pipelines. Petrol. Sci. 23 (7), 4204–4222. https://doi.org/10.1016/j.petsci.2026.01.044.[摘要] (
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Experimental study on the droplet breakup process in contracted pore throat microchannels
引用方式:Li, Y., Yang, Y.Q., Ariane F. B., E.E., et al., 2026. Experimental study on the droplet breakup process in contracted pore throat microchannels. Petrol. Sci. 23 (7), 4349–4363. https://doi.org/10.1016/j.petsci.2026.01.009.[摘要] (
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CO2-promoted Cr redox cycle driven ethane catalytic oxidative dehydrogenation to ethylene and its comparative study to ethane direct catalytic dehydrogenation
引用方式:Niu, M.F., Sun, Q.Y., Tan, Y.H., et al., 2026. CO2-promoted Cr redox cycle driven ethane catalytic oxidative dehydrogenation to ethylene and its comparative study to ethane direct catalytic dehydrogenation. Petrol. Sci. 23 (7), 4336–4348. https://doi.org/10.1016/j.petsci.2026.01.045.[摘要] (
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Refinery optimization in OPEC member states: An integrated inverse DEA approach and economic viability analysis
引用方式:Orisaremi, K.K., Chan, F.T.S., Dibia, F., et al., 2026. Refinery optimization in OPEC member states: An integrated inverse DEA approach and economic viability analysis. Petrol. Sci. 23 (7), 4380–4393. https://doi.org/10.1016/j.petsci.2026.03.035.[摘要] (
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Planning and operation optimization for oilfield negative carbon integrated energy system considering source-load interaction
引用方式:Gao, Z.H., Wang, D.D., Liu, J.F., et al., 2026. Planning and operation optimization for oilfield negative carbon integrated energy system considering source-load interaction. Petrol. Sci. 23 (7), 4364–4379. https://doi.org/10.1016/j.petsci.2026.01.019.[摘要] (
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Evolution mechanism of shale permeability considering competitive adsorption-induced swelling and slippage effect of binary CO2/CH4: Implications for CO2-ESGR
引用方式:Yang, K., Sun, Y.B., Zhou, J.P., et al., 2026. Evolution mechanism of shale permeability considering competitive adsorption-induced swelling and slippage effect of binary CO2/CH4: Implications for CO2-ESGR. Petrol. Sci. 23 (7), 4461–4475. https://doi.org/10.1016/j.petsci.2025.12.031.[摘要] (
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Coupled optimization framework of CO2-WAG injection for enhanced oil recovery and storage: Integrating MLP with evolutionary and metaheuristic algorithms
引用方式:Ud Din, S., Xue, L., Ning, F.L., et al., 2026. Coupled optimization framework of CO2-WAG injection for enhanced oil recovery and storage: Integrating MLP with evolutionary and metaheuristic algorithms. Petrol. Sci. 23 (7), 4441–4460. https://doi.org/10.1016/j.petsci.2026.01.026.[摘要] (
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Molecular insights into the effects of representative organic molecules on spontaneous hydrate nucleation in oceanic sediments
引用方式:Mi, F.Y., He, Z.J., Pang, J.T., et al., 2026. Molecular insights into the effects of representative organic molecules on spontaneous hydrate nucleation in oceanic sediments. Petrol. Sci. 23 (7), 4430–4440. https://doi.org/10.1016/j.petsci.2026.02.012.[摘要] (
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Numerical investigation of the effect of reactive transport in rock matrix on fracture fluid flow and heat transfer behavior in enhanced geothermal systems
引用方式:Ji, J.Y., Wu, H., Song, X.Z., 2026. Numerical investigation of the effect of reactive transport in rock matrix on fracture fluid flow and heat transfer behavior in enhanced geothermal systems. Petrol. Sci. 23 (7), 4414–4429. https://doi.org/10.1016/j.petsci.2026.01.047.[摘要] (
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Application of the AutoMix hybrid model for in-situ stress prediction in shale gas reservoirs
引用方式:Yuan, H., Sun, Y.P., Xiong, W., et al., 2026. Application of the AutoMix hybrid model for in-situ stress prediction in shale gas reservoirs. Petrol. Sci. 23 (7), 4394–4413. https://doi.org/10.1016/j.petsci.2026.03.023.[摘要] (
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Petroleum Geology
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最新录用
- Degradable PAM hydrogel mediated by hydroxy acids for temporary plugging
- Study on prediction of annular trap pressure in ultra-high temperature and high pressure gas wells
- Unlocking the seal capacity of unconsolidated Quaternary hydrate-bearing sediments: carbon isotope gradients as a proxy for dynamic gas trapping efficiency
- The Impact of Fossil Energy Technological Progress on Sectoral Implied Energy Intensity: Evidence from the U.S. Shale Gas Revolution
- Diagenesis and implication for the reservoir quality of the tight sandstone reservoir in the depression zone of foreland basin, Upper Triassic Xujiahe Formation, Western Sichuan Foreland Basin, China: Evidence from petrography and geochemistry
- Mechanical, structural, and mineralogical changes of shale under acid-CO2-rock interactions and their implications for CO2 storage
- Sedimentary heterogeneity-constrained differential diagenesis in fluvial tight sandstones: Implications for reservoir quality heterogeneity in sandbody architectural elements
- Review: Research on the Development Trends of Measurement While Drilling (MWD) Technology in Oil and Gas Drilling
- Biomass-derived amphiphilic nitrogen-doped carbon dots: Molecular design, interfacial regulation, and enhanced oil recovery performance
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- Assessment of shale hydrocarbon evaporative loss during exposure: insights from online low-field nuclear magnetic resonance observations in the Qingshankou Formation, Songliao Basin, China
- Fracture response patterns in deep to ultra-deep tight sandstones: A comparison based on core and borehole Images
- Differential hydrocarbon enrichment in Ordovician strata controlled by intra-cratonic ultra-deep strike-slip fault movements, eastern Shunbei area, Tarim Basin, China: Constraints from in-situ calcite U-Pb dating and fluid inclusions
- The development of deformation bands from experiments: Review and perspective
- Thermal maturity assessment of organic matter in the Precambrian-Lower Paleozoic high-over matured marine shale reservoirs: A review
- Seismic simulation for distributed acoustic sensing data using a novel stress and strain-rate elastic wave equation
- Mobility evaluation of continental shale oil of the Permian Fengcheng Formation in the Mahu Sag:Reservoirs characteristics, multiple influencing factors and conceptual models
- Interfacial plugging of shale microfractures using functionalized graphene oxide with high dispersion stability under harsh conditions
- Impacts of Himalayan tectonism on Eocene gas shale and its pore structure within the Lesser Himalayas, Nepal: Insights for shale gas accumulation and preservation
- Organic and inorganic pore networks in medium- to low-maturity shale: Insights from SEM analysis of Shahejie formation in the Dongying Sag
- Experimental and simulation study of geochemical processes during interaction of carbonated formation water with terrigenous and carbonate rocks
- Effects of different thermal insulated drill pipe deployment methods on wellbore temperature control in ultra-deep wells
- Examining the mechanisms of rebound evolution of various pore types in Longmaxi Formation shale using shale triaxial creep experiments
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