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ASSOCIATE PROFESSOR

Weibiao Xie

Xie Weibiao,81985_500x500

 doctoral student,

 senior engineer.

E-mail:xiewb@cupk.edu.cn/15932597520

Educational experience:

Bachelor of Science, Changjiang University from 2005 to 2009

Master of Engineering, Changjiang University from 2009 to 2012

2018 to 2022 Doctor of Science, China University of Petroleum (Beijing)

Work experience:

From 2012 to 2022 PetroChina Jidong Oilfield Exploration and Development Research Institute Logging Geological Evaluation Senior Engineer

From 2022 to the present, full-time geology teacher and senior engineer at Karamay Campus of China University of Petroleum (Beijing)

Lecture course:

Geophysical Logging Method, Geophysical Logging, Logging Interpretation and Digital Processing, Geological Interpretation of Logging Data, Loggeology, Loggeology, C Language Programming

Research direction:

Research on the principle of geophysical logging and reservoir evaluation methods, research on rock physics and geological evaluation methods of logging

Paper:

1.  Xie, W.; Yin, Q.; Zeng, J.; Yang, F.; Zhang, P.; Yan, B. An Improved Rock Resistivity Model Based on Multi-Fractal Characterization Method for Sandstone Micro-Pore Structure Using Capillary Pressure. Fractal Fract. 2024, 8, 118. (SCI,IF3.3)

2.  Xie, W., Yin, Q., Wu, L., Yang, F., Zhao, J., & Wang, G. (2024). A new nuclear magnetic resonance-based permeability model based on two pore structure characterization methods for complex pore structure rocks: Permeability assessment in Nanpu Sag, China. Geophysics, 89(1), MR43-MR51. (SCI,IF5.4)

3. Xie, W.; Yin, Q.; Zeng, J.; Wang, G.; Feng, C.; Zhang, P. Fractal-Based Approaches to Pore Structure Investigation and Water Saturation Prediction from NMR Measurements: A Case Study of the Gas-Bearing Tight Sandstone Reservoir in Nanpu Sag. Fractal Fract. 2023, 7, 273.(SCI,IF3.3)

4.  Zhao, J.; Ke, S.; Xie, W.; Zhang, Z.; Wei, B.; Wan, J.; Cheng, D.; Li, Z.; Fang, C. Research on the Shale Porosity–TOC Maturity Relationship Based on an Improved Pore Space Characterization Method. Energies 2024, 17, 997. (SCI,IF3.2)

5.  Weibiao Xie, Qiuli Yin, Guiwen Wang, Zhiyong Yu.(2021).Variable Dimension Fractal-Based Conversion Method between the Nuclear Magnetic Resonance T2 Spectrum and Capillary Pressure Curve. Energy&Fuels. 2021.35,351-357.( SCI, IF:3.6)

6.  Weibiao Xie,Qiuli Yin et al.(2020). Estimating the Relative Permeability from the Electrical Parameters of Sandstone with a Complex Pore Structure. Energy&Fuels. 2020, 34,14124-14131. (SCI, IF:3.6)

7.  Yin, Q., Xie, W., Wang, G., & Liu, D. (2023). Logging evaluation of petrophysical facies based reservoir quality prediction method for the volcanic rocks in the deep depth of Nanpu Sag, China. Petroleum Science and Technology, 1-22.(SCI,IF:1.695)

8.  Weibiao Xie, Qiuli Yin, Guiwen Wang, Wei Guan. (2021). Modeling and evaluation method of gas saturation based on P-wave and pore structure classification in low porosity and low permeability reservoir. Arabian Journal of Geosciences, 2021,14:917

9.  Weibiao Xie, Si, Z., Xu, F., Lin, F., & Tian, C. (2022). A Method for Reservoir Effectiveness Evaluations of Altered Igneous Reservoirs based on Logging data: A Case Study of the Nanpu Structure in Eastern China. Arabian Journal of Geosciences, 15(3), 1-12.

10.  Weibiao Xie, Qiuli Yin, Guiwen Wang.(2022). The effect of pore structure on the electrical properties of sand-based porous media. Arabian Journal of Geosciences, 2022, 15:36

Patent:

1. 2018.01: Acquisition method and device of mud sandstone permeability, invention patent (ZL201410425925.0), ranked 1st;

2. 2019.11: Gas saturation determination method and device, invention patent (ZL201611263196.9), ranked No. 1;

3. 2021.03: Determination method, device and computer equipment of fluid saturation parameters, invention patent (CN113175321B), ranking 1st;

4. 2023: Reservoir gas saturation prediction method and device, invention patent (CN116482154A), ranking 1;

5. 2023: A functional description method of rock resistivity, invention patent (CN116449102A), ranking 1;

6. 2023: Reservoir permeability treatment methods, devices, equipment and readable storage media, invention patent (CN116046632A), ranking 1;

7. 2021.04. Bound water saturation parameter determination method, device, equipment and storage media, invention patent (CN113153284B), ranking 2nd;

8. 2021.7 Determination method, device and computer equipment of bound water saturation parameters, invention patent (CN113586043B), ranking No. 1;

9. 2022.1 Reservoir water yield calculation method, device, electronic equipment and storage medium, invention patent (CN116699100A), ranked 3rd;

10. 2022.11 A low oil saturation oil layer identification method, device and equipment, invention patent (CN113031064B), ranking 4th;

11. 2021.7. A patent for well-controlled self-coding lithological identification method in igneous development area, invention patent (ZL201810724558.2), ranked 7th;

12. 2017.02: A patent for a method to determine reservoir permeability, invention patent (ZL201310129359.4), ranked 17th;

13. 2023. Electromagnetic field calculation method, device and equipment based on physical constraint neural network, invention patent (application number 2023112778889), ranked 4th;

14. 2016.07: LEAD-GETCOR reservoir quality classification evaluation software, computer software copyright of the National Copyright Administration; ranked third.