Hailong Tian

ORCID: 0000-0003-3011-9814
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About
Contact & Profiles
Research Areas
  • CO2 Sequestration and Geologic Interactions
  • Methane Hydrates and Related Phenomena
  • Hydrocarbon exploration and reservoir analysis
  • Hydraulic Fracturing and Reservoir Analysis
  • Groundwater flow and contamination studies
  • Atmospheric and Environmental Gas Dynamics
  • Geothermal Energy Systems and Applications
  • Carbon Dioxide Capture Technologies
  • Enhanced Oil Recovery Techniques
  • Rock Mechanics and Modeling
  • Drilling and Well Engineering
  • Reservoir Engineering and Simulation Methods
  • Geological and Geochemical Analysis
  • Lattice Boltzmann Simulation Studies
  • Karst Systems and Hydrogeology
  • Coal Properties and Utilization
  • Spacecraft and Cryogenic Technologies
  • Groundwater and Isotope Geochemistry
  • Advanced Mathematical Modeling in Engineering
  • Gas Dynamics and Kinetic Theory
  • Geochemistry and Geologic Mapping
  • Geoscience and Mining Technology
  • Structural Load-Bearing Analysis
  • Composite Structure Analysis and Optimization
  • Solidification and crystal growth phenomena

Jilin University
2015-2024

University of Utah
2013-2014

Jilin Medical University
2013

Global climate change is a common challenge facing mankind, which has evolved from scientifific issue into global economic and political of universal concern to the international community. Temperature increase, sea level rise, extreme weather events caused by are becoming more prominent. The understanding in community been deepening. Intergovernmental Panel on Climate Change (IPCC, 2014) further strengthened scientific conclusion that human-induced than 95% likely be attributed emissions...

10.46690/ager.2022.01.01 article EN ADVANCES IN GEO-ENERGY RESEARCH 2021-12-28

CO2 enhanced oil recovery (CO2-EOR) is an important technology due to its dual advantages of increasing production and mitigating emission. However, complex multiphase seepage mechanisms that are critical the successful application CO2-EOR still uncertain. Three-phase relative permeabilities CO2, water, in reservoir parameter characterize flow. To quantitatively investigate these permeabilities, pore-scale direct simulations were performed using Lattice Boltzmann Method (LBM). Given...

10.1063/5.0253270 article EN Physics of Fluids 2025-02-01

10.1016/j.petrol.2011.09.005 article EN Journal of Petroleum Science and Engineering 2011-09-01

Abstract Faults in CO 2 storage reservoirs affect the migration and spatial distribution of injected reservoir formations. Based on geological data from Ordos demonstration project site, A 2D numerical model was constructed to study influence high‐porosity high‐permeability faults within a low‐porosity low‐permeability reservoir. The results show that had significant effect storage. If permeability fault zone increased by 2–3 orders magnitude (a common range variation zone) porosity...

10.1111/gfl.12185 article EN Geofluids 2016-08-26
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