Jihui Ding
Physical Science Research Scientist
Earth & Planetary Sciences
Bio
Jihui is interested in advancing sustainability by developing geoscience-based solutions. This includes geothermal energy, carbon capture and sequestration (CCS), geological storage of renewable energy, and critical mineral exploration. Previously, Jihui utilized various experimental techniques to quantify rock behavior under different geological conditions and used modeling approaches to understand experimental observations. Currently, he is working on integrating artificial intelligence and data science into geological uncertainty quantification for an economical and safe development of geothermal energy.
Professional Education
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Ph.D., Texas A&M University, College Station, Geology (2019)
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M.S., Texas A&M University, College Station, Petroleum Engineering (2013)
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B.S., China University of Petroleum, Beijing, Petroleum Engineering (2009)
All Publications
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A Deep-Learning P-Wave Arrival Picker for Laboratory Acoustic Emissions: Model Training and Its Performance
ROCK MECHANICS AND ROCK ENGINEERING
2024
View details for DOI 10.1007/s00603-024-04296-5
View details for Web of Science ID 001373929300001
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Integrating laboratory acoustic measurements, deep neural networks, and micro-CT imaging for characterizing rock brittle deformation
FRONTIERS IN EARTH SCIENCE
2023; 11
View details for DOI 10.3389/feart.2023.1052431
View details for Web of Science ID 000999271100001
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Elastic anisotropy of shales: The roles of crack alignment and compliance ratio
GEOPHYSICS
2022; 87 (2): A13-A17
View details for DOI 10.1190/geo2021-0517.1
View details for Web of Science ID 000776709500002
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Acoustic velocity and permeability of acidized and propped fractures in shale
GEOPHYSICS
2022; 87 (1): MR13-MR24
View details for DOI 10.1190/GEO2020-0873.1
View details for Web of Science ID 000745835300004
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Test of the Effective Stress Law for Semibrittle Deformation Using Isostatic and Triaxial Load Paths
JOURNAL OF GEOPHYSICAL RESEARCH-SOLID EARTH
2021; 126 (5)
View details for DOI 10.1029/2020JB021326
View details for Web of Science ID 000654526100056
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Coupled Brittle and Viscous Micromechanisms Produce Semibrittle Flow, Grain-Boundary Sliding, and Anelasticity in Salt-Rock
JOURNAL OF GEOPHYSICAL RESEARCH-SOLID EARTH
2021; 126 (2)
View details for DOI 10.1029/2020JB021261
View details for Web of Science ID 000631921200065
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Fabric evolution and crack propagation in salt during consolidation and cyclic compression tests
ACTA GEOTECHNICA
2021
View details for DOI 10.1007/s11440-020-01117-1
View details for Web of Science ID 000604217700004
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Micromechanical modeling for rate-dependent behavior of salt rock under cyclic loading
INTERNATIONAL JOURNAL FOR NUMERICAL AND ANALYTICAL METHODS IN GEOMECHANICS
2020
View details for DOI 10.1002/nag.3133
View details for Web of Science ID 000556531200001
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Mechanisms of Anisotropy in Salt Rock Upon Microcrack Propagation
ROCK MECHANICS AND ROCK ENGINEERING
2020; 53 (7): 3185-3205
View details for DOI 10.1007/s00603-020-02096-1
View details for Web of Science ID 000526617800004