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Taesup Yoon

Yonsei University · 工学

研究室紹介

Professor Taesup Yoon's research lab specializes in the geomechanics and geophysics of gas hydrate-bearing sediments, focusing on the mechanical behavior, stiffness, permeability, and wave propagation characteristics of hydrate-bearing soils under various stress and hydrate saturation conditions. The lab employs advanced experimental techniques such as triaxial testing, instrumented pressure coring, and small-strain shear wave monitoring to investigate hydrate formation mechanisms, sediment-hydrate interactions, and the impact of hydrate distribution on geomechanical properties. Their work bridges fundamental soil behavior with practical applications in submarine slope stability, offshore drilling safety, and methane hydrate energy resource assessment.

gas hydratesgeomechanicssediment behaviorpermeabilitywave velocity

Research Overview

Papers
230
Total Citations
6,478
Papers (5y)
43
Primary Field
工学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
43total
2022
2023
2024
2025
2026
Citations per year (5y)
253total
20222023202420252026

Selected Papers

15
1
Article|486 citations·2007
Mechanical properties of sand, silt, and clay containing tetrahydrofuran hydrate
Tae Sup Yun, J. Carlos Santamarina, C. Ruppel
SJR Q1Journal of Geophysical Research AtmospheresOA

The mechanical behavior of hydrate‐bearing sediments subjected to large strains has relevance for the stability of the seafloor and submarine slopes, drilling and coring operations, and the analysis of certain small‐strain properties of these sediments (for example, seismic velocities). This study reports on the results of comprehensive axial compression triaxial tests conducted at up to 1 MPa confining pressure on sand, crushed silt, precipitated silt, and clay specimens with closely controlled

Environmental ChemistryEnvironmental Science
2
Article|275 citations·2005
Compressional and shear wave velocities in uncemented sediment containing gas hydrate
Tae Sup Yun, Franco M. Francisca, J. Carlos Santamarina, C. Ruppel
SJR Q1Geophysical Research LettersOA

The competing hypotheses for gas hydrate formation at the particle scale in sediments describe processes of pore‐filling, frame‐building, or cementation. New measurements of compressional ( V P ) and shear wave ( V S ) velocities in fine‐grained sands subjected to low confinement and monitored during formation of tetrahydrofuran hydrate indicate that hydrate nucleates in the pore space (presumably at grain boundaries) and grows with limited impact on the sediment shear stiffness, V P , and V S u

Environmental ChemistryEnvironmental Science
3
Article|244 citations·2007
Fundamental study of thermal conduction in dry soils
Tae Sup Yun, J. Carlos Santamarina
SJR Q1Granular Matter
Civil and Structural EngineeringEngineering
4
Article|186 citations·2013
Evaluation of thermal conductivity for thermally insulated concretes
Tae Sup Yun, Yeon Jong Jeong, Tong‐Seok Han, Kwang Soo Youm
SJR Q1Energy and Buildings
Civil and Structural EngineeringEngineering
5
Article|169 citations·2013
Evaluation of pore structures and cracking in cement paste exposed to elevated temperatures by X-ray computed tomography
Kwang Yeom Kim, Tae Sup Yun, Kwang Pil Park
SJR Q1Cement and Concrete Research
Civil and Structural EngineeringEngineering
6
Article|124 citations·2016
Effect of hydrate nucleation mechanisms and capillarity on permeability reduction in granular media
Dong Hun Kang, Tae Sup Yun, Kwang Yeom Kim, Jaewon Jang
SJR Q1Geophysical Research Letters

Abstract A model for water permeability reduction in hydrate‐bearing sediments is presented by considering capillary effect in hydrate nucleation. Both grain‐coating and pore‐filling cases are considered. The model is developed from a series of lattice Boltzmann flow simulations. Results show that the permeability decreases quasi‐linearly with increasing hydrate saturation during grain‐coating nucleation and that the permeability tends to be higher than predicted by previous analytical models, i

Environmental ChemistryEnvironmental Science
7
Article|104 citations·2017
Quantification of bulk form and angularity of particle with correlation of shear strength and packing density in sands
Hyoung Suk Suh, Kwang Yeom Kim, Junhwan Lee, Tae Sup Yun
SJR Q1Engineering Geology
Civil and Structural EngineeringEngineering
8
Article|101 citations·2010
Three-dimensional random network model for thermal conductivity in particulate materials
Tae Sup Yun, T. Matthew Evans
SJR Q1Computers and Geotechnics
Computational MechanicsEngineering
9
Article|93 citations·2012
Determination of air-void parameters of hardened cement-based materials using X-ray computed tomography
Kwang Yeom Kim, Tae Sup Yun, Jinhyun Choo, Dong Hun Kang, Hyu Soung Shin
SJR Q1Construction and Building Materials
Civil and Structural EngineeringEngineering
10
Article|85 citations·2018
Liquid CO2 Fracturing: Effect of Fluid Permeation on the Breakdown Pressure and Cracking Behavior
Seong Jun Ha, Jinhyun Choo, Tae Sup Yun
SJR Q1Rock Mechanics and Rock Engineering
Mechanical EngineeringEngineering
11
Article|84 citations·2005
Decementation, Softening, and Collapse: Changes in Small-Strain Shear Stiffness in k0 Loading
Tae Sup Yun, J. Carlos Santamarina
SJR Q1Journal of Geotechnical and Geoenvironmental Engineering

The small-strain stiffness of freshly remolded soils is controlled by the state of stress. Diagenesis and cementation can significantly stiffen soils. However, these effects are lost at relatively low strain levels. Previous experimental results have shown the detrimental and irrecoverable effects of unloading on cementation. This study explores the effect of k0 loading on the small-strain stiffness of cemented specimens, with emphasis on the load-induced collapse and softening of cemented, loos

Civil and Structural EngineeringEngineering
12
Article|83 citations·2006
Instrumented pressure testing chamber for characterizing sediment cores recovered at in situ hydrostatic pressure
Tae Sup Yun, Guillermo A. Narsilio, J. Carlos Santamarina, C. Ruppel
SJR Q1Marine Geology
Environmental ChemistryEnvironmental Science
13
Article|77 citations·2010
Hydrate-Bearing Sediments from the Krishna−Godavari Basin: Physical Characterization, Pressure Core Testing, and Scaled Production Monitoring
Tae Sup Yun, Dante Fratta, J. Carlos Santamarina
SJR Q1Energy & Fuels

Gas hydrate-bearing sediments recovered by pressure coring from the Krishna−Godavari Basin offshore India during the 2006 National Gas Hydrate Program (NGHP) expedition were characterized using the instrumented pressure testing chamber (IPTC). The IPTC studies provided longitudinal profiles of P- and S-wave velocities, electrical conductivity, and undrained penetration resistance. The formation consisted of fine-grained clayey sediments of high specific surface and high plasticity. X-ray images

Environmental ChemistryEnvironmental Science
14
Article|75 citations·2013
Evaluation of rock anisotropy using 3D X-ray computed tomography
Tae Sup Yun, Yeon Jong Jeong, Kwang Yeom Kim, Ki‐Bok Min
SJR Q1Engineering Geology
Mechanics of MaterialsEngineering
15
Article|71 citations·2017
Particle shape effect on thermal conductivity and shear wave velocity in sands
Chang-Ho Lee, Hyoung Suk Suh, Boyeong Yoon, Tae Sup Yun
SJR Q1Acta Geotechnica
Civil and Structural EngineeringEngineering

Research Areas

Civil and Structural EngineeringEnvironmental ChemistryEnvironmental EngineeringOcean EngineeringMechanical EngineeringMechanics of Materials

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