사진

  • ResearcherID
  • ORCiD
  • Scopus

Kim, Byungmin (김병민)

Department
Department of Civil, Urban, Earth, and Environmental Engineering(지구환경도시건설공학과)
Website
http://byungminkim.unist.ac.kr/
Lab
Geotechnical Earthquake Engineering Research Group (지반지진공학 연구실)
Research Keywords
지진, 지진동, 지진학, Earthquake, ground motion, seismology, deep learning, landslide, liquefaction
Research Interests
Earthquakes generate strong ground motions that ultimately lead to the destruction of existing infrastructure and loss of life, and are a major threat to sustainability. Our research group focuses on predicting the hazards from earthquakes and secondary effects by seismic hazard analysis, site response analysis, slope stability analysis, liquefaction analysis, and soil-structure interaction analysis. These efforts can facilitate designing new earthquake-resistant structures and seismically mitigating existing structures.
This table browses all dspace content
Issue DateTitleAuthor(s)TypeViewAltmetrics
2024-01Leveraging ChatGPT and Bard: What does it convey for water treatment/desalination and harvesting sectors?Ray, Saikat Sinha; Peddinti, Pranav R.T.; Verma, Rohit Kumar, et alARTICLE181 Leveraging ChatGPT and Bard: What does it convey for water treatment/desalination and harvesting sectors?
2023-10Seismic Analysis of Waste Packages Stacked in Radioactive Waste Disposal SilosByeon, Hyeongin; Park, Jaeyeong; Kim, ByungminARTICLE500 Seismic Analysis of Waste Packages Stacked in Radioactive Waste Disposal Silos
2023-10Responses of a cantilever retaining wall under multiple earthquake sequencesHa, Seong Jun; Kim, ByungminARTICLE410 Responses of a cantilever retaining wall under multiple earthquake sequences
2023-10Machine-learning models to predict P-and S-wave velocity profiles for Japan as an exampleKim, Jisong; Kang, Jae-Do; Kim, ByungminARTICLE105 Machine-learning models to predict P-and S-wave velocity profiles for Japan as an example
2023-09Pavement Monitoring Using Unmanned Aerial Vehicles: An OverviewPeddinti, Pranav R. T.; Puppala, Harish; Kim, ByungminARTICLE346 Pavement Monitoring Using Unmanned Aerial Vehicles: An Overview
2023-09Constraining wave velocities for shallow depths on MarsMun, Eunbi; Kim, ByungminARTICLE170 Constraining wave velocities for shallow depths on Mars
2023-08Seismic fragility assessments of fill slopes in South Korea using finite element simulationsTran, Dung T. P.; Cho, Youngkyu; Seo, Hwanwoo, et alARTICLE152 Seismic fragility assessments of fill slopes in South Korea using finite element simulations
2023-08Barriers to the adoption of new technologies in rural areas: The case of unmanned aerial vehicles for precision agriculture in IndiaPuppala, Harish; Peddinti, Pranav R. T.; Tamvada, Jagannadha Pawan, et alARTICLE60 Barriers to the adoption of new technologies in rural areas: The case of unmanned aerial vehicles for precision agriculture in India
2023-05Effectiveness of nanoparticles-based ultrahydrophobic coating for concrete materialsRay, Saikat Sinha; Peddinti, Pranav R.T.; Soni, Ritesh, et alARTICLE1157 Effectiveness of nanoparticles-based ultrahydrophobic coating for concrete materials
2023-05Unmanned aerial vehicles for planning rooftop rainwater harvesting systems: a case study from Gurgaon, IndiaPuppala, Harish; Peddinti, Pranav R. T.; Kim, Byungmin, et alARTICLE128 Unmanned aerial vehicles for planning rooftop rainwater harvesting systems: a case study from Gurgaon, India
2023-03Effects of pulse-like ground motions and wavelet asymmetry on responses of cantilever retaining wallHa, Seong Jun; Seo, Hwanwoo; Kim, ByungminARTICLE346 Effects of pulse-like ground motions and wavelet asymmetry on responses of cantilever retaining wall
2022-11Soil liquefaction potential assessment using ambient noise: A case study in Pohang, KoreaKang, Su Young; Kim, Kwang-Hee; Gihm, Yong Sik, et alARTICLE185 Soil liquefaction potential assessment using ambient noise: A case study in Pohang, Korea
2022-10Seismic fragility assessment for cantilever retaining walls with various backfill slopes in South KoreaSeo, Hwanwoo; Lee, Young-Joo; Park, Duhee, et alARTICLE440 Seismic fragility assessment for cantilever retaining walls with various backfill slopes in South Korea
2022-08Single-path ground motion amplifications during the 2020 Haenam, South Korea, swarmKwak, Dongyoup; Ahn, Jae-Kwang; Seo, Hwanwoo, et alARTICLE417 Single-path ground motion amplifications during the 2020 Haenam, South Korea, swarm
2022-08Shear-wave velocity map for Pohang Basin, South Korea, based on the P-wave seismogram methodLee, Junyoung; Kim, Kwang-Hee; Kang, Su Young, et alARTICLE214 Shear-wave velocity map for Pohang Basin, South Korea, based on the P-wave seismogram method
2022-08Influence of Uncertainty in V-s Profiles in the Southeastern Korea On Site Response AnalysesCho, Youngkyu; Jang, Young-Eun; Kim, ByungminARTICLE243 Influence of Uncertainty in V-s Profiles in the Southeastern Korea On Site Response Analyses
2022-07Building damage caused by the 2017 M5.4 Pohang, South Korea, earthquake, and effects of ground conditionsKim, Byungmin; Ji, Yumin; Kim, Mirae, et alARTICLE1012 Building damage caused by the 2017 M5.4 Pohang, South Korea, earthquake, and effects of ground conditions
2022-06Machine-Learning-Based Surface Ground-Motion Prediction Models for South Korea with Low-to-Moderate SeismicitySeo, Hwanwoo; Kim, Jisong; Kim, ByungminARTICLE261 Machine-Learning-Based Surface Ground-Motion Prediction Models for South Korea with Low-to-Moderate Seismicity
2022-04MASW-Based Shear Wave Velocities for Predicting Liquefaction-Induced Sand Boils Caused by the 2017 M5.4 Pohang, South Korea EarthquakeJi, Yumin; Seo, Hwanwoo; Kang, Sinhang, et alARTICLE598 MASW-Based Shear Wave Velocities for Predicting Liquefaction-Induced Sand Boils Caused by the 2017 M5.4 Pohang, South Korea Earthquake
2022-03Effects of coupled hydro-mechanical model considering dual-phase fluid flow on potential for shallow landslides at a regional scaleKang, Sinhang; Kim, ByungminARTICLE458 Effects of coupled hydro-mechanical model considering dual-phase fluid flow on potential for shallow landslides at a regional scale

MENU