Flow Physics & Intelligence Laboratory
School of Mechanical Engineering
Kyung Hee University
South Korea
School of Mechanical Engineering
Kyung Hee University
South Korea
Science of AI
Autonomous learning model
Super-resolution reconstruction
Data-driven turbulence modeling
Cardiovascular Biomechanics
Pediatric cardiovascular diseases
Aneurysms (intracranial / coronary)
Biofluids with Turbulence
Bacteria swimming
Active turbulence
Uncertainty Quantification
Medical device & simulation
Industrial Applications
We are pioneers of innovation. We are actively engaged in conducting cutting-edge research projects in interdisciplinary areas. As our research group continues to expand, we warmly welcome new members to join us.
2026.08.27. We are excited to share that our laboratory will be suppored by Nation Research Foundation funding project for the next 3 years! The title of the project is "Development of a self-evolving flow-physics learner via autonomous active learning"!
2026. 06. 24. Congratulations Yujin Ko for accepting an engineer position at Hanwha systems Co. Ltd!
2026.06.23. Seongwook presented in the 9th International Conference on Computational and Mathematical Biomedical Engineering (CMBE2026) in Kobe.
2026. 04. 22. Prof. Seo is invited for presentation for the special focus session: Frontiers of Biological Fluid Dynamics, in Korean Physical Society (KPS) 2026 Spring meeting.
2026. 04. 13. Welcome our new postdoc, Yujin Jung (PhD)!
2026. 04. 10. Sarah and Yunseong participated in the Korean Society for Computational Fluid Engineering 2026 Spring Symposium!
2026. 03. 20. Professor Seo has been appointed as a member of the inaugural Early Career Researcher (ECR) Committee by the International Union of Theoretical and Applied Mechanics (IUTAM) (https://iutam.org)! We will have opportunities to build global research network through the ECR committee by the IUTAM, with members from more than 40 countries worldwide!
& We have many more interesting news! Please keep updated via NEWS LINK
Our mission is to tackle the world's most pressing challenges by leveraging cutting-edge digital technologies to drive real-world innovations and make a meaningful impact to our society. In mechanical engineering department, our laboratory applies fundamental theories of mechanics and computation to guide design decisions based on quantitative and systematic approaches. We always begin with fundamental principles—physics and mathematics—and use them to develop intelligent solutions for addressing complex real-world problems.
Specifically, our group is dedicated to the identification of flow physics characteristics and their application in advancing the quantitative analysis and prediction of complex physical phenomena. Our ultimate objective is to establish a highly intelligent and robust system design process that combines human intuition, physics, and data-driven decision-making. This integrated approach holds the potential to drive innovation in medical practice and engineering industry.
We believe cross-discipline interaction is a key to bring innovation. We form multidisciplinary team to tackle important real-world problems, combining perspectives from:
Engineering Science
Medicine
Math & Computation
Human-centered Design
Industry
Our laboratory formed a close collaboration with the Kyung Hee University School of Medicine / Hospital.