Skip to main content

Choong-Ki Chung

Seoul National University · Engineering

About the Lab

Professor Choong-Ki Chung's research lab specializes in geotechnical and geoenvironmental engineering, with a focus on soil-structure interaction, subsurface hazards, and sustainable ground improvement. The lab investigates critical issues such as sinkhole formation due to pipe failures, debris-flow hazards in mountainous regions, and the behavior of pile foundations under cyclic lateral loads. Using a combination of model testing, field data analysis, and advanced geostatistical modeling, the lab develops predictive tools for ground deformation and hazard assessment, particularly in urban and transportation infrastructure contexts. Their work emphasizes practical applications for risk mitigation and resilient infrastructure design.

sinkhole formationdebris-flow hazardp-y curvesoil mixture hydraulicsgeostatistical modeling

Research Overview

Papers
237
Total Citations
1,563
Papers (5y)
32
Primary Field
Engineering

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
32total
2021
2022
2023
2024
2025
Citations per year (5y)
115total
20212022202320242025

Selected Papers

15
1
Article|102 citations·2001
Optimal pile arrangement for minimizing differential settlements in piled raft foundations
Kyung Nam Kim, Su‐Hyung Lee, Ki‐Seok Kim, Choong‐Ki Chung, Myoung Mo Kim, Hae Sung Lee
SJR Q1Computers and Geotechnics
Safety, Risk, Reliability and QualityEngineering
2
Article|47 citations·1992
Influence of depositional processes on the geotechnical parameters of Chicago glacial clays
Choong‐Ki Chung, Richard J. Finno
SJR Q1Engineering Geology
Civil and Structural EngineeringEngineering
3
Article|45 citations·2019
Model test assessment of the generation of underground cavities and ground cave-ins by damaged sewer pipes
Tae-Young Kwak, Sang Inn Woo, Joonyoung Kim, Choong‐Ki Chung
SJR Q1SOILS AND FOUNDATIONSOA

Ground cave-ins caused by damaged sewer pipes have been frequently reported in metropolitan areas and have caused severe socioeconomic losses. In this study, model experiments were conducted to determine how damaged sewer pipes generate ground cave-ins or cavities, with a focus on the influence of the soil type and density. Digital images of the model ground were captured to evaluate the internal deformation of the model grounds. Additionally, the vertical displacement at the surface, the size o

Civil and Structural EngineeringEngineering
4
Article|34 citations·2020
A Three-Dimensional Geotechnical Spatial Modeling Method for Borehole Dataset Using Optimization of Geostatistical Approaches
Mingi Kim, Hansaem Kim, Choong‐Ki Chung
SJR Q2KSCE Journal of Civil Engineering
Environmental EngineeringEnvironmental Science
5
Article|32 citations·2020
Experimental assessment of the relationship between rainfall intensity and sinkholes caused by damaged sewer pipes
Tae-Young Kwak, Sang-Inn Woo, Choong‐Ki Chung, Joonyoung Kim
SJR Q1Natural hazards and earth system sciencesOA

Abstract. In several countries, the rising occurrence of sinkholes has led to severe social and economic damage. Based on the mechanism of sinkhole development, researchers have investigated the correlation between rainfall intensity and sinkholes caused by damaged sewer pipes. In this study, the effect of rainfall intensity on the formation of eroded zones, as well as the occurrence of sinkholes caused by soil erosion due to groundwater infiltration through pipe defects, has been analyzed throu

Earth-Surface ProcessesEarth and Planetary Sciences
6
Article|28 citations·2016
Integrated system for site-specific earthquake hazard assessment with geotechnical spatial grid information based on GIS
Hansaem Kim, Choong‐Ki Chung
SJR Q1Natural Hazards
GeophysicsEarth and Planetary Sciences
7
Article|22 citations·2016
A GIS-Based Framework for Real-Time Debris-Flow Hazard Assessment for Expressways in Korea
Hansaem Kim, Choong‐Ki Chung, Sang-Rae Kim, Kyung–Suk Kim
SJR Q1International Journal of Disaster Risk ScienceOA

Debris flows caused by heavy rainfall in mountain areas near expressways lead to severe social and economic losses and sometimes result in casualties. Therefore, the development of a real-time system for debris-flow hazard assessment is necessary to provide preliminary information for rapid decision making about evacuations or restoration measures, as well as to prevent secondary disasters caused by debris flows. Recently, various map-based approaches have been proposed using multi-attribute cri

Management, Monitoring, Policy and LawEnvironmental Science
8
Article|21 citations·2018
Assessment of the side thrust for off-road tracked vehicles based on the punching shear theory
Sung-Ha Baek, Gyu-Beom Shin, Choong‐Ki Chung
SJR Q2Journal of Terramechanics
Civil and Structural EngineeringEngineering
9
Article|19 citations·2017
Assessment of non-uniform deformation during consolidation with lateral drainage using Particle Image Velocimetry (PIV)
Joonyoung Kim, Sang Inn Woo, Choong‐Ki Chung
SJR Q2KSCE Journal of Civil Engineering
Civil and Structural EngineeringEngineering
10
Article|17 citations·2020
Estimation of in situ geotechnical properties on highly weathered granite using chemical weathering indices
Seunghwan Lee, Sung-Ha Baek, Sang Inn Woo, Choong‐Ki Chung
SJR Q1Bulletin of Engineering Geology and the Environment
GeophysicsEarth and Planetary Sciences
11
Article|16 citations·2016
Geo-spatial data integration for subsurface stratification of dam site with outlier analyses
Hansaem Kim, Choong‐Ki Chung, Hyunki Kim
SJR Q1Environmental Earth Sciences
Civil and Structural EngineeringEngineering
12
Article|16 citations·2005
지반 정보화를 위한 지구 통계학적 방법의 적용
정충기, 천성호, 선창국
http://www.ceric.net/in2/domestic_read_01.asp?docn=1001748

지층 정보는 지반 특성을 파악하기 위해 근본적으로 활용되는 가장 중요한 지반 정보이다. 전체 대상지에 대한 지반 정보는 부지들의 제한적인 지반 조사 자료를 토대로 지구통계학적 방법인 크리깅을 적용하여 연속적으로 예측할 수 있다. 본 연구에서는 지형에 따른 지층의 급격한 변화 영향을 최소화하기 위해 표고 변화가 완만한 3개 평지를 대상으로 선택하여 각 대상지의 지층 정보를 다양한 방식으로 예측하고, 그에 따른 예측 오차를 분석하였다. 예측된 지층 정보는 평지의 일반적인 지형 특성과 일치하였으며, 이는 상부 지층인 충적토층 및 풍화잔류토층에서 두드러졌다. 또한, 지층 경계면 고도보다 지층 두께를 이용한 예측 기법의 정확도가 높았다. 그러나 예측된 지층 정보는 신뢰성에 한계가 있으므로, 오차 분석 결과와 함께 지반 조사시 예비 자료로서 활용하는 것이 바람직하다.

13
Article|15 citations·2017
Development of the cyclicp–ycurve for a single pile in sandy soil
Sung-Ha Baek, Joonyoung Kim, Seunghwan Lee, Choong‐Ki Chung
SJR Q2Marine Georesources and Geotechnology

Pile foundations that support transmission towers or offshore structures are dominantly subjected to cyclic lateral load induced by wind and waves. For a successful design, it is crucial to investigate the effect of cyclic lateral loads on the pile behavior that is loaded laterally. Although the p–y curve method is generally utilized to design the cyclic laterally loaded pile foundations, the effect of cyclic lateral loads on the pile has not been properly implemented with the p–y curve. This re

Civil and Structural EngineeringEngineering
14
Article|14 citations·2015
Geotechnical comparison of weathering degree and shear wave velocity in the decomposed granite layer in Hongseong, South Korea
Chang‐Guk Sun, Bo‐Hyun Kim, Ka-Hyun Park, Choong‐Ki Chung
SJR Q1Environmental Earth Sciences
GeophysicsEarth and Planetary Sciences
15
Article|14 citations·2022
Assessing the internal erosion sensitivity of earth-fill-dam soils based on the phenomena of suffusion and suffosion
Inhyun Kim, Hee-Jun Lee, Choong‐Ki Chung
SJR Q1Natural Hazards
Civil and Structural EngineeringEngineering

Research Areas

Civil and Structural EngineeringManagement, Monitoring, Policy and LawGeochemistry and PetrologyMechanical EngineeringSafety, Risk, Reliability and QualityMechanics of Materials

Dive deeper into Choong-Ki Chung's research on Nubint

Open this lab's papers in the app to read with AI, summarize, and cite in your writing.