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郭宇航
Guo Yuhang
(副教授)
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学位:博士
性别:男
学历:博士研究生毕业
在职信息:在职
所在单位:地球探测科学与技术学院
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Research on the physical properties of supercritical CO2 and the log evaluation of CO2-bearing volcanic reservoirs
Pore-scale fluid distributions determined by nuclear magnetic resonance spectra of partially saturated sandstones
Experiment and analysis for the influence of saturating method on saturation exponent n
Study on the C0-Cw relationship of clay-bearing sandstones based on digital cores
A fluid discrimination method based on Gassmann-Brie-Patchy Equation full waveform simulations and time-frequency analysis. Energy
Effect of gas saturation on P-wave velocity in tight sandstone
Research on a new method to evaluate shale gas content based on the transformation model of petrophysical parameters. 地球物理学报. 2019
A study on water saturation predictions in igneous reservoirs based on the relationship between the transverse relaxation time and the resistivity index. JOURNAL OF PETROLEUM SCIENCE AND ENGINEERING(影响因子5.168). 2022
An experimental study on the complex resistivity of fractured rock under different saturation conditions. Acta Geophysica. 2022
Study on reservoir characteristics and evaluation methods of altered igneous reservoirs in Songliao Basin, China. JOURNAL OF PETROLEUM SCIENCE AND ENGINEERING(影响因子5.168). 2022
A research on the relationship between resistivity index and relative permeability at different measurement conditions based on the pore structure. Environmental Fluid Mechanics. 2016
Research and application of the relationship between transverse relaxation time and resistivity index in tight sandstone reservoir. JOURNAL OF PETROLEUM SCIENCE AND ENGINEERING(影响因子5.168)
A New Method to Identify Reservoirs in Tight Sandstones Based on the New Model of Transverse Relaxation Time and Relative Permeability. Geofluids. 2017
A new model to predict the relative permeability of wetting phase for tight sandstones. Environmental Fluid Mechanics. 2017
Depth Prediction of Karstic-Fault Reservoirs Based on Wellbore Temperature Measurements and Numerical Simulations. Geofluids. 2020
The temperature distribution model and its application to reservoir depth prediction in fault-karst carbonate reservoirs. Arabian Journal of Geosciences. 2020
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