石油地质与地球物理
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Convolution-based multi-scale envelope inversion
Ding-Jin Liu, Jian-Ping Huang & Zi-Ying Wang
引用方式:
Liu, D., Huang, J. & Wang, Z. Convolution-based multi-scale envelope inversion. Pet. Sci. 17, 352–362 (2020). https://doi.org/10.1007/s12182-019-00419-8
2020 Issue 2: 1-11
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A review on reflection-waveform inversion
Gang Yao, Di Wu & Shang-Xu Wang
引用方式:
Yao, G., Wu, D. & Wang, S. A review on reflection-waveform inversion. Pet. Sci. 17, 334–351 (2020). https://doi.org/10.1007/s12182-020-00431-3
2020 Issue 2: 1-18
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The effects of diagenesis on the petrophysical and geochemical attributes of the Asmari Formation, Marun oil field, southwest Iran
J. Jafari, A. Mahboubi, R. Moussavi-Harami & I. S. Al-Aasm
引用方式:
Jafari, J., Mahboubi, A., Moussavi-Harami, R. et al. The effects of diagenesis on the petrophysical and geochemical attributes of the Asmari Formation, Marun oil field, southwest Iran. Pet. Sci. 17, 292–316 (2020). https://doi.org/10.1007/s12182-019-00421-0
2020 Issue 2: 1-25
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3D modeling of deepwater turbidite lobes: a review of the research status and progress
Lei-Fu Zhang, Mao Pan, Zhao-Liang Li
引用方式:
Zhang, L., Pan, M. & Li, Z. 3D modeling of deepwater turbidite lobes: a review of the research status and progress. Pet. Sci. (2020). https://doi.org/10.1007/s12182-019-00415-y
2020 Issue 2: 1-17
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Processes and causes of Phanerozoic tectonic evolution of the western Tarim Basin, northwest China
Teng-Fei Wang, Zhen-Kui Jin, He Li, Dong-Qing Liu, Ri-Hui Cheng, Shu-Ting Shi, Jin-Yi Wang
引用方式:
Wang, T., Jin, Z., Li, H. et al. Processes and causes of Phanerozoic tectonic evolution of the western Tarim Basin, northwest China. Pet. Sci. (2020). https://doi.org/10.1007/s12182-019-00424-x
2020 Issue 2: 1-13
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Automatic estimation of traveltime parameters in VTI media using similarity-weighted clustering
Shi-You Liu, Ying-Zhao Zhang, Chao Li, Wan-Yuan Sun, Gang Fang, Guo-Chang Liu
引用方式:
Liu, S., Zhang, Y., Li, C. et al. Automatic estimation of traveltime parameters in VTI media using similarity-weighted clustering. Pet. Sci. (2020). https://doi.org/10.1007/s12182-019-00423-y
2020 Issue 2: 1-13
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石油工程与机械
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Application of CFD technique to simulate enhanced oil recovery processes: current status and future opportunities
Arezou Jafari, Mohammadreza Hasani, Mostafa Hosseini, Reza Gharibshahi
引用方式:
Jafari, A., Hasani, M., Hosseini, M. et al. Pet. Sci. (2019). https://doi.org/10.1007/s12182-019-00363-7
2020 Issue 2: 1-23
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Modified method for fracability evaluation of tight sandstones based on interval transit time
Jing Li, Xiao-Rong Li, Hong-Bin Zhan, Ming-Shui Song, Chen Liu, Xiang-Chao Kong, Lu-Ning Sun
引用方式:
Li, J., Li, XR., Zhan, HB. et al. Pet. Sci. (2019). https://doi.org/10.1007/s12182-019-00397-x
2020 Issue 2: 1-10
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Investigation into mechanisms and kinetics of asphaltene aggregation in toluene/n-hexane mixtures
Bahram Soltani Soulgani, Fatemeh Reisi, Fatemeh Norouzi
引用方式:
Soulgani, B.S., Reisi, F. & Norouzi, F. Pet. Sci. (2019). https://doi.org/10.1007/s12182-019-00383-3
2020 Issue 2: 1-10
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Gas injection for enhanced oil recovery in two-dimensional geology-based physical model of Tahe fractured-vuggy carbonate reservoirs: karst fault system
Zhao-Jie Song, Meng Li, Chuang Zhao, Yu-Long Yang, Ji-Rui Hou
引用方式:
Song, Z., Li, M., Zhao, C. et al. Gas injection for enhanced oil recovery in two-dimensional geology-based physical model of Tahe fractured-vuggy carbonate reservoirs: karst fault system. Pet. Sci. (2020). https://doi.org/10.1007/s12182-020-00427-z
2020 Issue 2: 1-15
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Performance comparison of novel chemical agents in improving oil recovery from tight sands through spontaneous imbibition
Hai Huang, Tayfun Babadagli, Xin Chen & Huazhou Andy Li
引用方式:
Huang, H., Babadagli, T., Chen, X. et al. Performance comparison of novel chemical agents in improving oil recovery from tight sands through spontaneous imbibition. Pet. Sci. 17, 409–418 (2020). https://doi.org/10.1007/s12182-019-00369-1
2020 Issue 2: 1-10
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Standard friction prediction model of long-distance hot oil pipelines
Tao Yu, Chuan-xian Li, Bo Yao, Zhi-jun Zhang, Yi Guo, Li-jun Liu
引用方式:
Yu, T., Li, C., Yao, B. et al. Standard friction prediction model of long-distance hot oil pipelines. Pet. Sci. (2020). https://doi.org/10.1007/s12182-019-00417-w
2020 Issue 2: 1-12
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Evolution and analysis of gas sorption-induced coal fracture strain data
Zhanghao Liu, Jishan Liu, Pengzhi Pan, Derek Elsworth, Mingyao Wei, Rui Shi
引用方式:
Liu, Z., Liu, J., Pan, P. et al. Evolution and analysis of gas sorption-induced coal fracture strain data. Pet. Sci. (2020). https://doi.org/10.1007/s12182-019-00422-z
2020 Issue 2: 1-17
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Compatibility evaluation of modified seawater for EOR in carbonate reservoirs through the introduction of polyphosphate compound
Bisweswar Ghosh, Liying Sun, Nithin Chacko Thomas
引用方式:
Ghosh, B., Sun, L. & Thomas, N.C. Pet. Sci. (2019). https://doi.org/10.1007/s12182-019-00380-6
2020 Issue 2: 1-16
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Effect of nanoparticles on the nucleation and agglomeration rates of hydrate growth using THF–water clathrates
Syed Y. Nahri, James L. Nielsen & Yuanhang Chen
引用方式:
Nahri, S.Y., Nielsen, J.L. & Chen, Y. Effect of nanoparticles on the nucleation and agglomeration rates of hydrate growth using THF–water clathrates. Pet. Sci. 17, 467–476 (2020). https://doi.org/10.1007/s12182-019-00390-4
2020 Issue 2: 1-10
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石油化学与化工
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Non-spherical particle mixing behaviors by spherical inert particles assisted in a fluidized bed
An-Xing Ren, Tian-Yu Wang, Tian-Qi Tang, Yu-Rong He
引用方式:
Ren, AX., Wang, TY., Tang, TQ. et al. Pet. Sci. (2019). https://doi.org/10.1007/s12182-019-00401-4
2020 Issue 2: 1-16
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Effect of WC/Ni–Cr additive on changes in the composition of an atmospheric residue in the course of cracking
Galina S. Pevneva, Natalya G. Voronetskaya, Nikita N. Sviridenko, Anatoly K. Golovko
引用方式:
Pevneva, G.S., Voronetskaya, N.G., Sviridenko, N.N. et al. Pet. Sci. (2019). https://doi.org/10.1007/s12182-019-00402-3
2020 Issue 2: 1-10
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Investigation and analysis of a fluidized bed dryer by process tomography sensor
Hai-Gang Wang, Yong-Lei Lin, Wu-Qiang Yang
引用方式:
Wang, HG., Lin, YL. & Yang, WQ. Pet. Sci. (2019). https://doi.org/10.1007/s12182-019-00406-z
2020 Issue 2: 1-12
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Simulation on hydrodynamics of non-spherical particulate system using a drag coefficient correlation based on artificial neural network
Sheng-Nan Yan, Tian-Yu Wang, Tian-Qi Tang, An-Xing Ren, Yu-Rong He
引用方式:
Yan, SN., Wang, TY., Tang, TQ. et al. Pet. Sci. (2019). https://doi.org/10.1007/s12182-019-00411-2
2020 Issue 2: 1-19
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石油经济与管理
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Modeling and analysis of a catastrophic oil spill and vapor cloud explosion in a confined space upon oil pipeline leaking
Shengzhu Zhang, Xu Wang, Y. Frank Cheng, Jian Shuai
引用方式:
Zhang, S., Wang, X., Cheng, Y.F. et al. Pet. Sci. (2019). https://doi.org/10.1007/s12182-019-00403-2
2020 Issue 2: 1-11
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