Editorial
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One hundred grand challenges in petroleum science
Li-Zhi Xiao, Yan Jin, Lai-Bin Zhang, Gen-Sheng Li, Jing-Ye Li, Zhen-Hua Rui, Jian-Chao Cai
引用方式:
Xiao, L.Z., Jin, Y., Zhang, L.B., et al., 2026. One hundred grand challenges in petroleum science. Petrol. Sci. 23 (8), 4477–4487. https://doi.org/10.1016/j.petsci.2026.06.013.
2026 Issue8: 4477-4487
[摘要]
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Petroleum Geology
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Micro-migration and accumulation of shale oil within lacustrine organic matter-rich tuffaceous shale: Insights from high-precision thermal simulation experiment on various laminasets
Jin-Jun Xu, Kai-Yue Li, Ying-Chang Cao, Xiao-Bing Niu, Ke-Lai Xi, Jie Wei, Xiu-Jian Ding, Xiu-Juan Wang, Xiao Hui, Yi-Ru Zhao, Jia-Yi Liu
引用方式:
Xu, J.J., Li, K.Y., Cao, Y.C., et al., 2026. Micro-migration and accumulation of shale oil within lacustrine organic matter-rich tuffaceous shale: Insights from high-precision thermal simulation experiment on various laminasets. Petrol. Sci. 23 (8), 4577–4594. https://doi.org/10.1016/j.petsci.2026.05.020.
2026 Issue8: 4577-4594
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In-situ stress controlled reservoir quality in ultra-deep sandstones in Qiulitage Structural Belt, Kuqa Depression, Tarim Basin, NW China
Lu Xiao, Jin Lai, Xun Yang, Fei Zhao, Dong Li, Hong-Bin Li, Yong-Ping Wu, Bo Zhu, Gui-Wen Wang
引用方式:
Xiao, L., Lai, J., Yang, X., et al., 2026. In-situ stress controlled reservoir quality in ultra-deep sandstones in Qiulitage Structural Belt, Kuqa Depression, Tarim Basin, NW China. Petrol. Sci. 23 (8), 4559–4576. https://doi.org/10.1016/j.petsci.2026.05.039.
2026 Issue8: 4559-4576
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Quantifying the through-going evolution of strike-slip fault zones: Insights from analogue modeling
Guang-Hui Wu, Chen Qiu, Hao Tang, Zhou Xie, Xin Chen, Heng-You Li, Zhe-Yu Luo, Chong Sun
引用方式:
Wu, G.H., Qiu, C., Tang, H., et al., 2026. Quantifying the through-going evolution of strike-slip fault zones: Insights from analogue modeling. Petrol. Sci. 23 (8), 4545–4558. https://doi.org/10.1016/j.petsci.2026.05.056.
2026 Issue8: 4545-4558
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Restoration of karst paleogeomorphology and its natural gas geological implications: An example from the Ma5 member of the Ordovician Majiagou Formation in the central Ordos Basin, NW China
Zhen Yang, Jin Lin, Wei-Bo Zhao, Jin-Song Zhou, Jun Cao, Wei Cheng, Jia-Hao Chen
引用方式:
Yang, Z., Lin, J., Zhao, W.B., et al., 2026. Restoration of karst paleogeomorphology and its natural gas geological implications: An example from the Ma5 member of the Ordovician Majiagou Formation in the central Ordos Basin, NW China. Petrol. Sci. 23 (8), 4528–4544. https://doi.org/10.1016/j.petsci.2026.04.048.
2026 Issue8: 4528-4544
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Enhancing reservoir characterization via lithology-constrained machine learning methods: The deep Jurassic Sangonghe tight sandstones in the Turpan-Hami Basin, China
Hong-Bin Li, Yin-Hong Tian, Gui-Wen Wang, Zhi-Bin He, Lin-Bo Shao, Jin Lai
引用方式:
Li, H.B., Tian, Y.H., Wang, G.W., et al., 2026. Enhancing reservoir characterization via lithology-constrained machine learning methods: The deep Jurassic Sangonghe tight sandstones in the Turpan-Hami Basin, China. Petrol. Sci. 23 (8), 4505–4527. https://doi.org/10.1016/j.petsci.2026.05.021.
2026 Issue8: 4505-4527
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Occurrence characterizations and controlling factors of lacustrine shale pore fluids in the Qingshankou Formation, Sanzhao Sag, Songliao Basin, China
Jun-Hui Li, Fang-Ju Chen, Jie Li, Peng-Fei Zhang, Yan-Ping Zhu, Neng-Wu Zhou, Jia-Wei Hao, Wei-Zheng Gao, Shuang-Fang Lu
引用方式:
Li, J.H., Chen, F.J., Li, J., et al., 2026. Occurrence characterizations and controlling factors of lacustrine shale pore fluids in the Qingshankou Formation, Sanzhao Sag, Songliao Basin, China. Petrol. Sci. 23 (8), 4488–4504. https://doi.org/10.1016/j.petsci.2026.06.008.
2026 Issue8: 4488-4504
[摘要]
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Petroleum Geophysics
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Diffusion-IDEA: A conditional diffusion framework for well log imputation
Cheng Feng, Guo-Zeng Zhang, Zi-Yan Feng, Jie Yu, Meng-Ru Hu, Ke-Gang Ling
引用方式:
Feng, C., Zhang, G.Z., Feng, Z.Y., et al., 2026. Diffusion-IDEA: A conditional diffusion framework for well log imputation. Petrol. Sci. 23 (8), 4717–4734. https://doi.org/10.1016/j.petsci.2026.05.001.
2026 Issue8: 4717-4734
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Imaging enhancement for towed-streamer data using OBN data based on deep learning
Zhi-Na Li, He-Xiang Zhang, Zhen-Chun Li, Zi-Lin He, Qi Zhang, Bo-Xiong Zhao, Zhi-Chuan Yu, Qiang Xu, Ming-Qiang Zhang
引用方式:
Li, Z.N., Zhang, H.X., Li, Z.C., et al., 2026. Imaging enhancement for towed-streamer data using OBN data based on deep learning. Petrol. Sci. 23 (8), 4704–4716. https://doi.org/10.1016/j.petsci.2026.04.040.
2026 Issue8: 4704-4716
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Influence mechanism of adjacent formation interfaces on acoustic wave modes in horizontal wells
Zhi-Yang Lei, Yi Xin, Dong Wu, Ming Cai, Xin-Jian Zhao, Cheng-Guang Zhang, Yuan-Jun Zhang, Shi-Hong Luo
引用方式:
Lei, Z.Y., Xin, Y., Wu, D., et al., 2026. Influence mechanism of adjacent formation interfaces on acoustic wave modes in horizontal wells. Petrol. Sci. 23 (8), 4686–4703. https://doi.org/10.1016/j.petsci.2026.04.027.
2026 Issue8: 4686-4703
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Characteristic reflection wave-equation traveltime inversion using full gradient
Cheng-Liang Wu, Bo Feng, Hua-Zhong Wang
引用方式:
Wu, C.L., Feng, B., Wang, H.Z., 2026. Characteristic reflection wave-equation traveltime inversion using full gradient. Petrol. Sci. 23 (8), 4662–4685. https://doi.org/10.1016/j.petsci.2026.04.026.
2026 Issue8: 4662-4685
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Hessian-based elastic reflection waveform inversion with scale fusion strategy
Ming-Qian Wang, Bing-Shou He
引用方式:
Wang, M.Q., He, B.S., 2026. Hessian-based elastic reflection waveform inversion with scale fusion strategy. Petrol. Sci. 23 (8), 4644–4661. https://doi.org/10.1016/j.petsci.2026.03.065.
2026 Issue8: 4644-4661
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Experimental study on the zonal isolation performance of cement sheaths with SBT logging
Xue-Lian Chen, Fang-Fang Zhao, Cong-Hui Zhang, Xin-Yang Guo, Xiao-Ming Tang
引用方式:
Chen, X.L., Zhao, F.F., Zhang, C.H., et al., 2026. Experimental study on the zonal isolation performance of cement sheaths with SBT logging. Petrol. Sci. 23 (8), 4634–4643. https://doi.org/10.1016/j.petsci.2026.03.051.
2026 Issue8: 4634-4643
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Depth-domain inversion with angle-domain point-spread function for quantitative reservoir characterization: A case study from the Northern Viking Graben, North Sea
Lei Zhao, Wei-Jian Mao, Xue Li
引用方式:
Zhao, L., Mao, W.J., Li, X., 2026. Depth-domain inversion with angle-domain point-spread function for quantitative reservoir characterization: A case study from the Northern Viking Graben, North Sea. Petrol. Sci. 23 (8), 4621–4633. https://doi.org/10.1016/j.petsci.2026.03.038.
2026 Issue8: 4621-4633
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Semi-supervised-learning-based AVO-preserved pre-stack seismic data resolution enhancement
Shu-Liang Wu, Yi-Ming Jiang, Jiang Liu, Jian Li, De-Wen Qin, Jian-Hua Geng
引用方式:
Wu, S.L., Jiang, Y.M., Liu, J., et al., 2026. Semi-supervised-learning-based AVO-preserved pre-stack seismic data resolution enhancement. Petrol. Sci. 23 (8), 4595–4620. https://doi.org/10.1016/j.petsci.2026.03.040.
2026 Issue8: 4595-4620
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Petroleum Geochemistry
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Efficient hydrocarbon generation mechanism in low-TOC source rocks of saline lacustrine basins: A case study of the Oligocene Linhe Formation in the Linhe Depression, Hetao Basin
Man Yuan, Jun-Gang Lu, Shu-Guang Chen, Yu-Lei Shi, Ran-Ran Zhou, Yi-Ming Fan, Ying-Xuan Lyu, Yi-Nuo Chen, Ming Li
引用方式:
Yuan, M., Lu, J.G., Chen, S.G., et al., 2026. Efficient hydrocarbon generation mechanism in low-TOC source rocks of saline lacustrine basins: A case study of the Oligocene Linhe Formation in the Linhe Depression, Hetao Basin. Petrol. Sci. 23 (8), 4753–4772. https://doi.org/10.1016/j.petsci.2026.05.024.
2026 Issue8: 4753-4772
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Diagnostic potential of light hydrocarbons in deep marine natural gas: Insights from Tarim Basin
Zhi Chai, Zhong-Hong Chen, Moïse Luemba, Yong Chen, Fu-Lai Li
引用方式:
Chai, Z., Chen, Z.H., Luemba, M., et al., 2026. Diagnostic potential of light hydrocarbons in deep marine natural gas: Insights from Tarim Basin. Petrol. Sci. 23 (8), 4735–4752. https://doi.org/10.1016/j.petsci.2026.01.012.
2026 Issue8: 4735-4752
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Petroleum Engineering
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Design and mechanism of side chain-functionalized polysuccinimide for efficient demulsification of crude oil-in-water emulsions at ambient temperature
Xiao-Hong Li, Xun Xie, Xia Liu, Lan Zhou, Huan-Jiang Wang, Can Cui, Ya-Dian Xie
引用方式:
Li, X.H., Xie, X., Liu, X., et al., 2026. Design and mechanism of side chain-functionalized polysuccinimide for efficient demulsification of crude oil-in-water emulsions at ambient temperature. Petrol. Sci. 23 (8), 5034–5048. https://doi.org/10.1016/j.petsci.2026.05.014.
2026 Issue8: 5034-5048
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Low-temperature oxidation of light crude oil: Molecular composition and deposition characteristics of oxidation products
Bo Zhang, Jing-Hua Wang, Qi-Hang Li, Yang-Nan Shangguan, Zhao-Hui Zhou, Quan Shi, Yi-Qiang Li, Qun Zhang, Chun-Ming Xu
引用方式:
Zhang, B., Wang, J.H., Li, Q.H., et al., 2026. Low-temperature oxidation of light crude oil: Molecular composition and deposition characteristics of oxidation products. Petrol. Sci. 23 (8), 5020–5033. https://doi.org/10.1016/j.petsci.2026.04.049.
2026 Issue8: 5020-5033
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Chemical plugging systems for preventing gas channeling in CO2 flooding: Progress and prospects
Shun-Dong Jiang, Li-Feng Chen, Dai-Gang Wang, Wei-Wei Sheng, Ming-Chen Shi, Ming-Hao Xue, Hui-Yong Zeng, Lei Hu, Xu-Rui Long
引用方式:
Jiang, S.D., Chen, L.F., Wang, D.G., et al., 2026. Chemical plugging systems for preventing gas channeling in CO2 flooding: Progress and prospects. Petrol. Sci. 23 (8), 4999–5019. https://doi.org/10.1016/j.petsci.2026.04.016.
2026 Issue8: 4999-5019
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A novel in situ polymerizing gel–fiber composite system with enhanced strength and degradability for temporary plugging
Yu-Hui Yang, Jun-Cheng Su, Shan-Sheng Xu, Zhi-Yi Wei, Chu-Yu Kang, Zhuo-Zhuang Liu, Jie Geng, Hai Huang, Hai-Ming Fan
引用方式:
Yang, Y.H., Su, J.C., Xu, S.S., et al., 2026. A novel in situ polymerizing gel–fiber composite system with enhanced strength and degradability for temporary plugging. Petrol. Sci. 23 (8), 4985–4998. https://doi.org/10.1016/j.petsci.2026.04.052.
2026 Issue8: 4985-4998
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Advanced fluid-loss control in drilling fluids: A review on rationally designed temperature- and salt-tolerant synthetic polymers
Xin-Yan Li, Guan-Cheng Jiang, Jun Liu, Li-Li Yang, Wei Zhang, Hao-Zhe Chen, Yin-Bo He, Teng-Fei Dong
引用方式:
Li, X.Y., Jiang, G.C., Liu, J., et al., 2026. Advanced fluid-loss control in drilling fluids: A review on rationally designed temperature- and salt-tolerant synthetic polymers. Petrol. Sci. 23 (8), 4951–4984. https://doi.org/10.1016/j.petsci.2026.05.049.
2026 Issue8: 4951-4984
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Defining conductivity optimal correlation resolution (COCR) for 3D scanning of acid fracture surface
Yi-Fan Dai, Bing Hou, Zhen-Yu Wang, Lin-Jun Zou, Ming-Fang He, Shi-Hui Gao
引用方式:
Dai, Y.F., Hou, B., Wang, Z.Y., et al., 2026. Defining conductivity optimal correlation resolution (COCR) for 3D scanning of acid fracture surface. Petrol. Sci. 23 (8), 4939–4950. https://doi.org/10.1016/j.petsci.2026.04.038.
2026 Issue8: 4939-4950
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Numerical simulation of integrated “fracturing-soaking-production” in tight reservoirs
Li Ma, Jian-Chun Guo, Cong Lu, Shi-Qian Xu, Yi Song, Cheng Shen, Jun-Feng Li
引用方式:
Ma, L., Guo, J.C., Lu, C., et al., 2026. Numerical simulation of integrated “fracturing-soaking-production” in tight reservoirs. Petrol. Sci. 23 (8), 4927–4938. https://doi.org/10.1016/j.petsci.2026.03.002.
2026 Issue8: 4927-4938
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Ensemble-based interpretation of partitioning inter-well tracer tests for residual saturation and permeability estimation
Zi-Hao Zhao, Yu-Hao Ou, Cun-Qi Jia, Ruo-Yu Li, Kishore Mohanty
引用方式:
Zhao, Z.H., Ou, Y.H., Jia, C.Q., et al., 2026. Ensemble-based interpretation of partitioning inter-well tracer tests for residual saturation and permeability estimation. Petrol. Sci. 23 (8), 4914–4926. https://doi.org/10.1016/j.petsci.2026.03.019.
2026 Issue8: 4914-4926
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The influence of energy enhancement on the morphology of hydraulic fractures based on a fully-coupled XFEM method
Pin-Jin Zhang, Yun Zhou, Shan-Po Jia, Zong-Feng Zhang, Bin-Tao Wang, Dian-Sen Yang
引用方式:
Zhang, P.J., Zhou, Y., Jia, S.P., et al., 2026. The influence of energy enhancement on the morphology of hydraulic fractures based on a fully-coupled XFEM method. Petrol. Sci. 23 (8), 4891–4913. https://doi.org/10.1016/j.petsci.2026.06.004.
2026 Issue8: 4891-4913
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Energy-efficient fracturing based on stress-coupled perforation
Cheng Cheng, Gang Hui, Zhang-Xin Chen
引用方式:
Cheng, C., Hui, G., Chen, Z.X., 2026. Energy-efficient fracturing based on stress-coupled perforation. Petrol. Sci. 23 (8), 4873–4890. https://doi.org/10.1016/j.petsci.2026.03.063.
2026 Issue8: 4873-4890
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Study on gas–liquid counter-current flow behavior and calculation of key killing parameters using bullheading well control method in directional wells
Bang-Tang Yin, Tian-Bao Ding, Wei Zhang, Shu-Long Wang, Zhi-Yuan Wang, Bao-Jiang Sun, Xu-Liang Zhang, Qian-Li Ma
引用方式:
Yin, B.T., Ding, T.B., Zhang, W., et al., 2026. Study on gas–liquid counter-current flow behavior and calculation of key killing parameters using bullheading well control method in directional wells. Petrol. Sci. 23 (8), 4855–4872. https://doi.org/10.1016/j.petsci.2026.03.067.
2026 Issue8: 4855-4872
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Physics-informed autoencoder with Bayesian optimization for real-time stuck pipe risk prediction
Mu-Chen Liu, Zhao-Peng Zhu, Xian-Zhi Song, Yan-Long Yang, Tao Pan, Zhi Yan, De-Tao Zhou
引用方式:
Liu, M.C., Zhu, Z.P., Song, X.Z., et al., 2026. Physics-informed autoencoder with Bayesian optimization for real-time stuck pipe risk prediction. Petrol. Sci. 23 (8), 4842–4854. https://doi.org/10.1016/j.petsci.2026.01.020.
2026 Issue8: 4842-4854
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Integrating rock mechanics and optimized mechanical specific energy for real-time pore pressure estimation in high-temperature and high-pressure drilling
Cheng-Kai Weng, Hong-Wei Yang, Jun Li, Xian-Jun Chen, Gong-Hui Liu, Shu-Sheng Guo, Zhen-Yu Long, Wang Chen
引用方式:
Weng, C.K., Yang, H.W., Li, J., et al., 2026. Integrating rock mechanics and optimized mechanical specific energy for real-time pore pressure estimation in high-temperature and high-pressure drilling. Petrol. Sci. 23 (8), 4829–4841. https://doi.org/10.1016/j.petsci.2026.03.062.
2026 Issue8: 4829-4841
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Fully anisotropic undrained effects on short-term wellbore stability of arbitrarily inclined wells in transversely isotropic formations
Wen-Da Li, Ya-Yun Zhang, Ming-Ming Zhang, Yan Jin, Yun-Hu Lu, Yang Xia, Shi-Ming Wei
引用方式:
Li, W.D., Zhang, Y.Y., Zhang, M.M., et al., 2026. Fully anisotropic undrained effects on short-term wellbore stability of arbitrarily inclined wells in transversely isotropic formations. Petrol. Sci. 23 (8), 4810–4828. https://doi.org/10.1016/j.petsci.2026.06.037.
2026 Issue8: 4810-4828
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Axial-torsional-lateral vibration model of drill bit considering axial and lateral cutting effects
Jin-Cheng Huang, Wen-Jun Huang, De-Li Gao, Wen-Tuo Li, Jin-Hui Zhou
引用方式:
Huang, J.C., Huang, W.J., Gao, D.L., et al., 2026. Axial-torsional-lateral vibration model of drill bit considering axial and lateral cutting effects. Petrol. Sci. 23 (8), 4792–4809. https://doi.org/10.1016/j.petsci.2026.04.001.
2026 Issue8: 4792-4809
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Experimental study on vertical propagation of hydraulic fracturing in multilayer permeability heterogeneous reservoirs: Based on true triaxial experiment and acoustic emission monitoring
Lin-Hao Zou, Wei Li, Yi-Nao Su, Huan Zhao, Jing-Ming Gai
引用方式:
Zou, L.H., Li, W., Su, Y.N., et al., 2026. Experimental study on vertical propagation of hydraulic fracturing in multilayer permeability heterogeneous reservoirs: Based on true triaxial experiment and acoustic emission monitoring. Petrol. Sci. 23 (8), 4773–4791. https://doi.org/10.1016/j.petsci.2026.03.054.
2026 Issue8: 4773-4791
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Petroleum Mechanical & Transportation Engineering
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Investigation of hydrocyclone coupled with particles for enhancing oil–water separation
Shuang Zhang, Li-Xin Zhao, Xing-Yue Chen, Lin Liu, Ming-Hu Jiang
引用方式:
Zhang, S., Zhao, L.X., Chen, X.Y., et al., 2026. Investigation of hydrocyclone coupled with particles for enhancing oil–water separation. Petrol. Sci. 23 (8), 5174–5188. https://doi.org/10.1016/j.petsci.2026.03.047.
2026 Issue8: 5174-5188
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Mechanical characteristics of deep to ultra-deep sandstones: A comparison study based on rock mechanical and hydraulic fracturing experiments
Zi-Xi Jiao, Hai-Yan Zhu, Peng Zhao, Shi-Jie Chen, Xian-Bo Meng, Shou-Wei Zhou, Jun Zhou
引用方式:
Jiao, Z.X., Zhu, H.Y., Zhao, P., et al., 2026. Mechanical characteristics of deep to ultra-deep sandstones: A comparison study based on rock mechanical and hydraulic fracturing experiments. Petrol. Sci. 23 (8), 5156–5173. https://doi.org/10.1016/j.petsci.2026.03.041.
2026 Issue8: 5156-5173
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A critical review on deep-water oil and gas development equipment research and application: Floating platform, mooring cable and pile foundation
Dong-Sheng Xu, Jin Yang, Jian-Chun Fan, Ying-Fang Zhou
引用方式:
Xu, D.S., Yang, J., Fan, J.C., et al., 2026. A critical review on deep-water oil and gas development equipment research and application: Floating platform, mooring cable and pile foundation. Petrol. Sci. 23 (8), 5129–5155. https://doi.org/10.1016/j.petsci.2026.03.009.
2026 Issue8: 5129-5155
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Ultrasonic velocity-based model for water holdup prediction in polymer-oil-water flows
Feng Yue, Lan-Di Bai, Jia-Chen Zhang, Zi-Yan Tang, Ning-De Jin
引用方式:
Yue, F., Bai, L.D., Zhang, J.C., et al., 2026. Ultrasonic velocity-based model for water holdup prediction in polymer-oil-water flows. Petrol. Sci. 23 (8), 5111–5128. https://doi.org/10.1016/j.petsci.2026.04.004.
2026 Issue8: 5111-5128
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Investigation of the effect of water-vapour-containing hydrogen-blended natural gas fraction on the condensation performance of a Laval nozzle using BBD and PSO
Guan-Wei Jia, Kai-Feng Xue, Rui Li
引用方式:
Jia, G.W., Xue, K.F., Li, R., 2026. Investigation of the effect of water-vapour-containing hydrogen-blended natural gas fraction on the condensation performance of a Laval nozzle using BBD and PSO. Petrol. Sci. 23 (8), 5096–5110. https://doi.org/10.1016/j.petsci.2026.05.002.
2026 Issue8: 5096-5110
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A new model to predict the electrical submersible Pump's characteristic curves under highly viscous flow
William Monte Verde, Ellen Kindermann, Natan Augusto Vieira Bulgarelli, Bernardo Foresti, Antonio Carlos Bannwart
引用方式:
Monte Verde, W., Kindermann, E., Bulgarelli, N.A.V., et al., 2026. A new model to predict the electrical submersible Pump's characteristic curves under highly viscous flow. Petrol. Sci. 23 (8), 5081–5095. https://doi.org/10.1016/j.petsci.2026.02.020.
2026 Issue8: 5081-5095
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Corrected model and charts for corrosion probe monitoring effectiveness in high-water-cut crude oil gathering pipelines with elevation changes
Min Qin, Xue-Ling Wu, Ke-Xi Liao, Long Qin, Guo-Xi He, Teng-Jiao He
引用方式:
Qin, M., Wu, X.L., Liao, K.X., et al., 2026. Corrected model and charts for corrosion probe monitoring effectiveness in high-water-cut crude oil gathering pipelines with elevation changes. Petrol. Sci. 23 (8), 5063–5080. https://doi.org/10.1016/j.petsci.2026.01.039.
2026 Issue8: 5063-5080
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3-D contour inversion of pipeline defects based on direction-aware multi-axis fusion and depth-gradient joint decoding
Lu-Shuai Xu, Shao-Hua Dong, Feng Li, Hao-Tian Wei, Cong Zuo, Di Qian, Peng Hou
引用方式:
Xu, L.S., Dong, S.H., Li, F., et al., 2026. 3-D contour inversion of pipeline defects based on direction-aware multi-axis fusion and depth-gradient joint decoding. Petrol. Sci. 23 (8), 5049–5062. https://doi.org/10.1016/j.petsci.2026.03.039.
2026 Issue8: 5049-5062
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Petroleum Chemical Engineering
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Co-pyrolysis of oil shale and bituminous coal in a fluidized bed: Properties and distribution of pyrolysates, and reaction mechanisms
Dong-Ling Xu, Yue Ma, Zhi-Jun Fu, Lu Gong, Ze-Kai Zhang, Hao-Lun Wang, Jin-Ke Wang, Feng-Zhi Guo, Si-Jia Li, Ke-Xin Zhao, Chang-Tao Yue
引用方式:
Xu, D.L., Ma, Y., Fu, Z.J., et al., 2026. Co-pyrolysis of oil shale and bituminous coal in a fluidized bed: Properties and distribution of pyrolysates, and reaction mechanisms. Petrol. Sci. 23 (8), 5221–5233. https://doi.org/10.1016/j.petsci.2026.03.058.
2026 Issue8: 5221-5223
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Study on the pyrolysis of kerogen at varying moisture contents: Experimental modeling and ReaxFF simulation
Yue-Qin Li, Wen-Ji-Bin Sun, Yu-Jun Zuo, Bo-Bo Li, Zhong-Hu Wu, Lei Zhang, Ren-Jun Tian, Wei Lv
引用方式:
Li, Y.Q., Sun, W.J.B., Zuo, Y.J., et al., 2026. Study on the pyrolysis of kerogen at varying moisture contents: Experimental modeling and ReaxFF simulation. Petrol. Sci. 23 (8), 5203–5220. https://doi.org/10.1016/j.petsci.2026.03.012.
2026 Issue8: 5203-5220
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Flocculation–microfiltration integration for high-salinity oilfield offshore produced water treatment
Mariane Carolina Proner, Maria Alice Prado Cechinel, Carine Loureço Alves, Sálvio Lima de Carvalho Neto, Silvio Edegar Weschenfelder, Sergio Yesid Gómez González, Alan Ambrosi, Marco Di Luccio, Regina de Fatima Peralta Muniz Moreira
引用方式:
Proner, M.C., Cechinel, M.A.P., Alves, C.L., et al., 2026. Flocculation–microfiltration integration for high-salinity oilfield offshore produced water treatment. Petrol. Sci. 23 (8), 5189–5202. https://doi.org/10.1016/j.petsci.2026.03.025.
2026 Issue8: 5189-5202
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Emerging Fields
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Large-scale 3D experimental study on in-situ pyrolysis of tar-rich coal (I): Heat transfer behavior and product characteristics under conductive heating
Yan-Wei Li, Chao-Fan Zhu, Cun-Han Fan, Tian-Le Zhang, Han Tian, Yi-Jian Zeng, Wei Guo
引用方式:
Li, Y.W., Zhu, C.F., Fan, C.H., et al., 2026. Large-scale 3D experimental study on in-situ pyrolysis of tar-rich coal (I): Heat transfer behavior and product characteristics under conductive heating. Petrol. Sci. 23 (8), 5252–5269. https://doi.org/10.1016/j.petsci.2026.04.003.
2026 Issue8: 5252-5269
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Geological fault identification via multi-knowledge causally embedding graph representation applied in underground gas storage
Feng-Yuan Zhang, Ji-Zhou Tang, Hong-Liang Wu, Jie Liu, Jun Zhou, Shi-Jie Zhao, Fa-Mu Huang, Juan Zhang, Hao Wang, Jun-Lun Li
引用方式:
Zhang, F.Y., Tang, J.Z., Wu, H.L., et al., 2026. Geological fault identification via multi-knowledge causally embedding graph representation applied in underground gas storage. Petrol. Sci. 23 (8), 5234–5251. https://doi.org/10.1016/j.petsci.2026.05.047.
2026 Issue8: 5234-5251
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