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Jinhyun Choo

Seoul National University · 工学

研究室紹介

Professor Jinhyun Choo's research lab specializes in computational mechanics and multiscale modeling of geomaterials, with a focus on unsaturated and porous media, fracture mechanics, and large deformation behavior. The lab develops thermodynamically consistent, phase-field, and finite element frameworks to model complex hydromechanical processes in materials such as shale, fractured rocks, and dilative soils. Key research directions include double-porosity modeling, viscoplasticity in layered materials, volumetric locking mitigation in meshfree and particle methods, and locally conservative simulations of fluid-infiltrated porous media.

poromechanicsphase-field modelingdouble-porosityviscoplasticitylocking mitigation

Research Overview

Papers
83
Total Citations
2,183
Papers (5y)
33
Primary Field
工学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
33total
2022
2023
2024
2025
2026
Citations per year (5y)
362total
20222023202420252026

Selected Papers

15
1
Article|216 citations·2017
Coupled phase-field and plasticity modeling of geological materials: From brittle fracture to ductile flow
Jinhyun Choo, WaiChing Sun
SJR Q1Computer Methods in Applied Mechanics and EngineeringOA
Mechanics of MaterialsEngineering
2
Article|147 citations·2021
Double-phase-field formulation for mixed-mode fracture in rocks
Fan Fei, Jinhyun Choo
SJR Q1Computer Methods in Applied Mechanics and EngineeringOA
Mechanics of MaterialsEngineering
3
Article|110 citations·2016
Hydromechanical Modeling of Unsaturated Flow in Double Porosity Media
Jinhyun Choo, Joshua A. White, Ronaldo I. Borja
SJR Q1International Journal of GeomechanicsOA

Geomaterials with aggregated structure or containing fissures often exhibit a bimodal pore size distribution that can be viewed as two coexisting pore regions of different scales. The double-porosity concept enables continuum modeling of such materials by considering two interacting pore scales satisfying relevant conservation laws. This paper develops a thermodynamically consistent framework for hydromechanical modeling of unsaturated flow in double-porosity media. With an explicit treatment of

Civil and Structural EngineeringEngineering
4
Article|102 citations·2020
A phase-field model of frictional shear fracture in geologic materials
Fan Fei, Jinhyun Choo
SJR Q1Computer Methods in Applied Mechanics and EngineeringOA
Mechanics of MaterialsEngineering
5
Article|101 citations·2018
Cracking and damage from crystallization in pores: Coupled chemo-hydro-mechanics and phase-field modeling
Jinhyun Choo, WaiChing Sun
SJR Q1Computer Methods in Applied Mechanics and EngineeringOA
Mechanics of MaterialsEngineering
6
Article|100 citations·2015
Stabilized mixed finite elements for deformable porous media with double porosity
Jinhyun Choo, Ronaldo I. Borja
SJR Q1Computer Methods in Applied Mechanics and EngineeringOA
Computational MechanicsEngineering
7
Article|98 citations·2020
Stabilized material point methods for coupled large deformation and fluid flow in porous materials
Yidong Zhao, Jinhyun Choo
SJR Q1Computer Methods in Applied Mechanics and EngineeringOA
Computational MechanicsEngineering
8
Article|86 citations·2019
A phase‐field method for modeling cracks with frictional contact
Fan Fei, Jinhyun Choo
SJR Q1International Journal for Numerical Methods in EngineeringOA

Summary We introduce a phase‐field method for continuous modeling of cracks with frictional contacts. Compared with standard discrete methods for frictional contacts, the phase‐field method has two attractive features: (i) it can represent arbitrary crack geometry without an explicit function or basis enrichment, and (ii) it does not require an algorithm for imposing contact constraints. The first feature, which is common in phase‐field models of fracture, is attained by regularizing a sharp int

Mechanics of MaterialsEngineering
9
Article|77 citations·2018
Enriched Galerkin finite elements for coupled poromechanics with local mass conservation
Jinhyun Choo, Sanghyun Lee
SJR Q1Computer Methods in Applied Mechanics and Engineering
Computational MechanicsEngineering
10
Article|46 citations·2020
An anisotropic viscoplasticity model for shale based on layered microstructure homogenization
Jinhyun Choo, Shabnam J. Semnani, Joshua A. White
SJR Q1International Journal for Numerical and Analytical Methods in GeomechanicsOA

Abstract Viscoplastic deformation of shale is frequently observed in many subsurface applications. Many studies have suggested that this viscoplastic behavior is anisotropic—specifically, transversely isotropic—and closely linked to the layered composite structure at the microscale. In this work, we develop a two‐scale constitutive model for shale in which anisotropic viscoplastic behavior naturally emerges from semianalytical homogenization of a bilayer microstructure. The microstructure is mod

Mechanics of MaterialsEngineering
11
Article|45 citations·2012
Stress-induced evolution of anisotropic thermal conductivity of dry granular materials
Jinhyun Choo, Young Jin Kim, Jung Hwoon Lee, Tae Sup Yun, Jangguen Lee, Young Seok Kim
SJR Q1Acta Geotechnica
Civil and Structural EngineeringEngineering
12
Article|44 citations·2023
Circumventing volumetric locking in explicit material point methods: A simple, efficient, and general approach
Yidong Zhao, Chenfanfu Jiang, Jinhyun Choo
SJR Q1International Journal for Numerical Methods in Engineering

Abstract The material point method (MPM) is frequently used to simulate large deformations of nearly incompressible materials such as water, rubber, and undrained porous media. However, MPM solutions to nearly incompressible materials are susceptible to volumetric locking, that is, overly stiff behavior with erroneous strain and stress fields. While several approaches have been devised to mitigate volumetric locking in the MPM, they require significant modifications of the existing MPM machinery

Computational MechanicsEngineering
13
Article|39 citations·2023
Size effects on the strength and cracking behavior of flawed rocks under uniaxial compression: from laboratory scale to field scale
Jinhyun Choo, Yuan Sun, Fan Fei
SJR Q1Acta Geotechnica
Mechanics of MaterialsEngineering
14
Article|34 citations·2022
Hybrid continuum–discrete simulation of granular impact dynamics
Yupeng Jiang, Yidong Zhao, Clarence Edward Choi, Jinhyun Choo
SJR Q1Acta GeotechnicaOA
Computational MechanicsEngineering
15
Article|33 citations·2023
Coupled material point and level set methods for simulating soils interacting with rigid objects with complex geometry
Yidong Zhao, Jinhyun Choo, Yupeng Jiang, Liuchi Li
SJR Q1Computers and Geotechnics
Computational MechanicsEngineering

Research Areas

Mechanics of MaterialsCivil and Structural EngineeringComputational MechanicsManagement, Monitoring, Policy and LawMechanical EngineeringComputational Theory and Mathematics

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