World's Best Scientists 2026 revealed!
Tae Sup Yun

Tae Sup Yun

D-Index & Metrics

Earth Science

D-Index
38
Citations
6575
World Ranking
6401
National Ranking
7

Overview

Tae Sup Yun is affiliated with Yonsei University in South Korea and conducts research primarily in the field of engineering, with a focus on several specialized subfields. Their work spans civil and structural engineering, ocean engineering, mechanics of materials, mechanical engineering, and environmental engineering.

Their research topics cover a range of areas related to geotechnical and material sciences. These topics include:

  • Rock Mechanics and Modeling
  • Hydraulic Fracturing and Reservoir Analysis
  • Drilling and Well Engineering
  • Grouting, Rheology, and Soil Mechanics
  • Mineral Processing and Grinding
  • Enhanced Oil Recovery Techniques
  • Geophysical Methods and Applications

Tae Sup Yun has published extensively in various scientific venues. Frequent publication outlets include:

  • SSRN Electronic Journal
  • Scientific Reports
  • Engineering Geology
  • Computers and Geotechnics
  • Earth Science Informatics

The scientist has collaborated frequently with several other researchers. Regular co-authors are:

  • Yejin Kim
  • Eomzi Yang
  • Kwang Yeom Kim
  • Wanhyuk Seo
  • Jaewon Jang

The recent scholarly contributions of Tae Sup Yun include the following papers:

  • "How to classify sand types: A deep learning approach," 2021, Engineering Geology
  • "A ChatGPT-MATLAB framework for numerical modeling in geotechnical engineering applications," 2024, Computers and Geotechnics
  • "Pore-Scale Controls on the Gas and Water Transport in Hydrate-Bearing Sediments," 2020, Geophysical Research Letters
  • "Determination of shape parameters of sands: a deep learning approach," 2022, Acta Geotechnica
  • "Ground Collapse in EPB shield TBM site: A case study of railway tunnels in the deltaic region near Nak-Dong River in Korea," 2021, Tunnelling and Underground Space Technology

Best Publications

  • PHYSICAL PROPERTIES OF HYDRATE-BEARING SEDIMENTS

    William F. Waite;J.C. Santamarina;D.D. Cortes;Brandon Dugan

  • Mechanical properties of sand, silt, and clay containing tetrahydrofuran hydrate

    T. S. Yun;J. C. Santamarina;C. Ruppel;C. Ruppel

  • Compressional and shear wave velocities in uncemented sediment containing gas hydrate

    T. S. Yun;F. M. Francisca;F. M. Francisca;J. C. Santamarina;C. Ruppel

  • Fundamental study of thermal conduction in dry soils

    T. S. Yun;J. C. Santamarina

  • Observations related to tetrahydrofuran and methane hydrates for laboratory studies of hydrate‐bearing sediments

    J. Y. Lee;T. S. Yun;J. C. Santamarina;C. Ruppel;C. Ruppel

  • 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

  • Upscaling of Navier–Stokes equations in porous media: Theoretical, numerical and experimental approach

    Guillermo A. Narsilio;Olivier Buzzi;Stephen Fityus;Tae Sup Yun

  • The water retention curve and relative permeability for gas production from hydrate‐bearing sediments: pore‐network model simulation

    Nariman Mahabadi;Sheng Dai;Yongkoo Seol;Tae Sup Yun

  • Thermal conductivity of hydrate‐bearing sediments

    Douglas D. Cortes;Ana I. Martin;Tae Sup Yun;Franco M. Francisca

  • Geophysical and geotechnical properties of near-seafloor sediments in the northern Gulf of Mexico gas hydrate province

    F. Francisca;T.-S. Yun;C. Ruppel;J.C. Santamarina

  • Effect of hydrate nucleation mechanisms and capillarity on permeability reduction in granular media

    Dong Hun Kang;Tae Sup Yun;Kwang Yeom Kim;Jaewon Jang

  • Decementation, Softening, and Collapse: Changes in Small-Strain Shear Stiffness in k0 Loading

    Tae Sup Yun;J. Carlos Santamarina

  • Review on the gas hydrate development and production as a new energy resource

    Joo Yong Lee;Byung Jae Ryu;Tae Sup Yun;Jaehyung Lee

  • Instrumented pressure testing chamber for characterizing sediment cores recovered at in situ hydrostatic pressure

    T.S. Yun;G.A. Narsilio;J.C. Santamarina;C. Ruppel

  • Three-dimensional random network model for thermal conductivity in particulate materials

    Tae Sup Yun;T. Matthew Evans

  • 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

  • Sorption equilibrium and kinetics of CO2 on clay minerals from subcritical to supercritical conditions: CO2 sequestration at nanoscale interfaces

    Pil Rip Jeon;Jiwon Choi;Tae Sup Yun;Chang Ha Lee

  • Evaluation of rock anisotropy using 3D X-ray computed tomography

    Tae Sup Yun;Yeon Jong Jeong;Kwang Yeom Kim;Ki Bok Min

  • 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

  • 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

  • Geotechnical characterization of marine sediments in the Ulleung Basin, East Sea

    Changho Lee;Tae Sup Yun;Jong Sub Lee;Jang Jun Bahk

Frequent Co-Authors

Carolyn D. Ruppel
Carolyn D. Ruppel United States Geological Survey
J. Carlos Santamarina
J. Carlos Santamarina Georgia Institute of Technology
T. Matthew Evans
T. Matthew Evans Oregon State University
Jin-Yeon Kim
Jin-Yeon Kim Georgia Institute of Technology
Yongkoo Seol
Yongkoo Seol National Energy Technology Laboratory
John T. Germaine
John T. Germaine Tufts University
Timothy J. Kneafsey
Timothy J. Kneafsey Lawrence Berkeley National Laboratory
Brandon Dugan
Brandon Dugan Colorado School of Mines
Kenichi Soga
Kenichi Soga University of California, Berkeley
Gye-Chun Cho
Gye-Chun Cho Korea Advanced Institute of Science and Technology

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