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Shin, Myoungsu (신명수)

Department
Department of Urban and Environmental Engineering(도시환경공학과)
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Issue DateTitleAuthor(s)TypeViewAltmetrics
2023-04Optimal intensity measures for probabilistic seismic demand models of steel moment framesNguyen, Hoang D.; Shin, Myoungsu; LaFave, James M.ARTICLE718 Optimal intensity measures for probabilistic seismic demand models of steel moment frames
2023-03Self-heating characteristics of electrically conductive cement composites with carbon black and carbon fiberGwon, Seongwoo; Kim, Hyunjun; Shin, MyoungsuARTICLE239 Self-heating characteristics of electrically conductive cement composites with carbon black and carbon fiber
2023-01Rheological and Mechanical Properties of Kenaf and Jute Fiber‑Reinforced Cement CompositesGwon, Seongwoo; Han, Seong Ho; Vu, Thanh Duc, et alARTICLE136 Rheological and Mechanical Properties of Kenaf and Jute Fiber‑Reinforced Cement Composites
2022-11Characteristics of GGBFS-Based Pervious Concrete Considering Rheological Properties of the BinderOinam, Yanchen; Ju, Suhawn; Gwon, Seongwoo, et alARTICLE366 Characteristics of GGBFS-Based Pervious Concrete Considering Rheological Properties of the Binder
2022-10Assessment of internal curing of cellulose microfibers-incorporated cement composites using destructive and nondestructive methodsGwon, Seongwoo; Ahn, Eunjong; Shin, Myoungsu, et alARTICLE242 Assessment of internal curing of cellulose microfibers-incorporated cement composites using destructive and nondestructive methods
2022-10Self-heating capacity of electrically conductive cement composites: Effects of curing conditionsGwon, Seongwoo; Moon, Juhyuk; Shin, MyoungsuARTICLE210 Self-heating capacity of electrically conductive cement composites: Effects of curing conditions
2022-09Air-coupled ultrasonic diffuse-wave techniques to evaluate distributed cracking damage in concreteAhn, Eunjong; Shin, Myoungsu; Popovics, John S.ARTICLE385 Air-coupled ultrasonic diffuse-wave techniques to evaluate distributed cracking damage in concrete
2022-08Hydrogenated Graphene with Tunable Poisson's Ratio Using Machine Learning: Implication for Wearable Devices and Strain SensorsHo, Viet Hung; Nguyen, Cao Thang; Nguyen, Hoang D., et alARTICLE244 Hydrogenated Graphene with Tunable Poisson's Ratio Using Machine Learning: Implication for Wearable Devices and Strain Sensors
2022-07Monitoring of self-healing in concrete with micro-capsules using a combination of air-coupled surface wave and computer-vision techniquesAhn, Eunjong; Kim, Hyunjun; Gwon, Seongwoo, et alARTICLE365 Monitoring of self-healing in concrete with micro-capsules using a combination of air-coupled surface wave and computer-vision techniques
2022-07Machine learning-based prediction for maximum displacement of seismic isolation systemsNguyen, Hoang D.; Dao, Nhan D.; Shin, MyoungsuARTICLE510 Machine learning-based prediction for maximum displacement of seismic isolation systems
2022-07Development of ensemble machine learning models for evaluating seismic demands of steel moment framesNguyen, Hoang D.; Kim, JunHee; Shin, MyoungsuARTICLE550 Development of ensemble machine learning models for evaluating seismic demands of steel moment frames
2022-06Evaluation of self-healing in concrete using linear and nonlinear resonance spectroscopyKim, Ryulri; Woo, Ukyong; Shin, Myoungsu, et alARTICLE263 Evaluation of self-healing in concrete using linear and nonlinear resonance spectroscopy
2022-06Seismic Fragility Analysis on Nuclear Containment Structure considering the Material DegradationKim, Chan-Young; Shin, MyoungsuARTICLE234 Seismic Fragility Analysis on Nuclear Containment Structure considering the Material Degradation
2022-04Internal curing of cement composites using kenaf cellulose microfibersGwon, Seongwoo; Choi, Young Cheol; Shin, MyoungsuARTICLE378 Internal curing of cement composites using kenaf cellulose microfibers
2022-02Rapid seismic damage-state assessment of steel moment frames using machine learningNguyen, Hoang D.; LaFave, James M.; Lee, Young-Joo, et alARTICLE381 Rapid seismic damage-state assessment of steel moment frames using machine learning
2022-01Seismic performance assessment of NPP concrete containments considering recent ground motions in South KoreaKim, Chanyoung; Cha, Eun Jeong; Shin, MyoungsuARTICLE604 Seismic performance assessment of NPP concrete containments considering recent ground motions in South Korea
2021-12Effects of soil-structure interaction on seismic performance of a low-rise R/C moment frame considering material uncertaintiesNguyen, Hoang D.; Shin, MyoungsuARTICLE632 Effects of soil-structure interaction on seismic performance of a low-rise R/C moment frame considering material uncertainties
2021-11Long-term autogenous healing and re-healing performance in concrete: Evaluation using air-coupled surface-wave methodAhn, Eunjong; Kim, Hyunjun; Park, Byoungsun, et alARTICLE272 Long-term autogenous healing and re-healing performance in concrete: Evaluation using air-coupled surface-wave method
2021-09Prediction of seismic drift responses of planar steel moment frames using artificial neural network and extreme gradient boostingNguyen, Hoang D.; Dao, Nhan D.; Shin, MyoungsuARTICLE571 Prediction of seismic drift responses of planar steel moment frames using artificial neural network and extreme gradient boosting
2021-05Effect of filler particle characteristics on yield stress and viscosity of fresh sulfur compositesLee, Jin Hyun; Gwon, Seongwoo; Shin, MyoungsuARTICLE360 Effect of filler particle characteristics on yield stress and viscosity of fresh sulfur composites

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