Eun‐Taik Lee
Papers
2
Total Citations
22
H-Index
2
About
Eun‐Taik Lee is a structural engineer whose research focuses on the durability and dynamic behavior of concrete infrastructure. His most cited work, "Analysis of prestressed concrete cylinder pipes with fiber reinforced polymer" (2014, 17 citations), addresses the critical challenge of rehabilitating aging water conveyance systems. By modeling the use of fiber-reinforced polymers to strengthen prestressed concrete cylinder pipes, Lee provided a practical framework for extending the service life of essential buried pipelines—a contribution with significant implications for civil infrastructure resilience. He also developed a "Numerical integration scheme to reduce the errors in the satisfaction of constrained dynamic equation" (2013, 5 citations), refining computational methods for analyzing structures under dynamic loads, such as earthquakes or heavy traffic. This work helps engineers achieve more accurate simulations of constrained systems, reducing numerical drift and improving design reliability. While his citation counts reflect a focused, specialized impact, Lee’s contributions are valued by practitioners seeking cost-effective repair strategies for critical infrastructure. His research bridges theoretical mechanics and real-world structural assessment, offering tools that enhance both safety and sustainability in civil engineering.
Research Focus
Key Achievements
Top Papers
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