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Associate Senior Title
 
 
 
 
 
 
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Details of the Faculty or Staff
Name  
GUO Peng
Title  
  Associate Senior Engineer
Highest Education  
  Ph.D
Subject Categories  
  Geological engineering
Phone  
  -
Zip Code  
  100029
Fax  
  -
Email  
  guopeng@mail.iggcas.ac.cn
Office  
  No.19 Beitucheng West Road, Chaoyang District, Beijing, 100029, China

Education and Appointments:
  1. 2010.09 - 2014.06  Lanzhou Jiaotong University  Civil Engineering  Bachelor
  2. 2014.09 - 2017.06  Beijing Jiaotong University    Civil Engineering  Master
  3. 2017.09 - 2021.12  Institute of Geology and Geophysics, Chinese Academy of Sciences Geological engineering Ph.D
  4. 2022.01 - 2024.08  Postdoctoral Fellow, Institute of Energy, Peking University
  5. 2024.09 - Present  Associate Senior Engineer, Institute of Geology and Geophysics, Chinese Academy of Sciences

Research Interests:
  1. Reservoir geomechanics
  2. Drilling rock mechanics
  3. Unconventional oil and gas development
Public Services:

Honors:

Supported Projects:
  1. 2023.09-2025.12 National Natural Science Foundation of China Major project "Formation, Evolution and Enrichment mechanism of continental Shale Oil in typical basins in Central and Western China" Subproject leader.

Publications:
  1. P Guo, X Li, S Li, et al. Quantitative Analysis of Anisotropy Effect on Hydrofracturing Efficiency and Process in Shale Using X-Ray Computed Tomography and Acoustic Emission, Rock Mechanics and Rock Engineering, 2021, 54: 5715- 5730.
  2. P Guo, X Li, W Yang, et al. Experimental study on hydrofracture propagation through perforated wellbore in naturally fractured Guanyinqiao calcareous mudstone under true triaxial stress, Journal of Natural Gas Science and Engineering, 2022, 99(104415): 1-13.
  3. P Guo, X Li, S Li, et al. Experimental investigation of simultaneous and asynchronous hydraulic fracture growth from multiple perforations in shale considering stress anisotropy, Rock Mechanics and Rock Engineering, 2023, 56: 8209-8220.
  4. P Guo, X Li, S Li, et al. Combined Effect of In Situ Stress Level and Bedding Anisotropy on Hydraulic Fracture Vertical Growth in Deep Marine Shale Revealed via CT Scans and Acoustic Emission, Energies, 2023, 16(7270): 1-14.
  5. P Guo, X Li, S Li, et al. Combined effect of rock fabric, in-situ stress, and fluid viscosity on hydraulic fracture propagation in Chang 73 lacustrine shale from the Ordos Basin. Journal of Central South University, 2024, 31:1646-1658.

 
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No. 19, Beitucheng Xilu, Chaoyang District, 100029, Beijing, P.R.China
Tel: 010-82998001 Fax: 010-62010846 Email: suoban@mail.iggcas.ac.cn