Calculated based on number of publications stored in Pure and citations from Scopus
20102024

Research activity per year

Personal profile

In Korean

이성철 교수(공과대학 토목공학과)

Education

o (2001) B.A., Seoul National University
o (2003) M.A., Seoul National University
o (2007) Ph.D., Seoul National University

Professional Experience

o (2020~Present) Associate Professor, Kyungpook National University, South Korea
o (2018~ 2020) Assistant Professor, Kyungpook National University, South Korea
o (2016~ 2018) Associate Professor, KEPCO International Nuclear Graduate School (KINGS), South Korea
o (2012~2016) Assistant Professor, KEPCO International Nuclear Graduate School (KINGS), South Korea
o (2009~2012) Postdoctoral Researcher, University of Toronto, Canada
o (2010~2012) Senior Researcher, Integrated Research Institute of Construction and Environmental Engineering, Seoul National University, South Korea
o (2008~2008) Senior Researcher, Korea Bridge Design & Engineering Research Center, Seoul National University, South Korea
o (2008~2009) Lecturer, Kyonggi University, South Korea
o (2008~2008) Lecturer, Ajou University, South Korea
o (2008~2008) Lecturer, Seoul National University, South Korea
o (2007~2008) Senior Researcher, Research Institute of Energy and Resources, Seoul National University, South Korea

Research Interests

Nonlinear structural analysis of concrete structures, Investigation and prediction on shear behavior of concrete structures, Nonlinear structural analysis and design of fiber reinforced concrete, Application of advanced construction materials as a structural member, Structural behavior of prestressed concrete structures, Researches on concrete for NPP decommissioning and radioactive waste management
Seismic behavior of concrete structures, Validation and implication of structural concrete design codes

Major Research Achievements

o Investigation on structural behavior of concrete members with a large scale
o Development of constitutive models for fiber-reinforced concrete under compression or tension
o Development of analytical procedures to predict strubural behavior of fiber-reinforced concrete with conventional rebars
o Development of a section analysis program for reinforced concrete members under flexural shear or torsion
o Experimental investigation and analytical approach on advanced construction materials including high strength lightweight concrete, fiber-reinforced polymer bar, high performance fiber-reinforced concrete, etc.

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