Fluid-Based Convergence Lab.

유체기반 융합 연구실

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유체기반 융합 연구실

We, Fluid-Based Convergence laboratory (FBC), are mainly interested in the convergence between fluid mechanics and other areas such as biology, sports, robotics, etc. Based on the state-of-the-art experimental approaches and theoretical analysis, we solve interesting phenomena arising in fluid mechanics and develop innovative control methods that can be applied to various turbulent & separated flows.

Major research field

Experimental fluid mechanics, Flow control, Flow visualization

Desired field of research

UAV aerodynamics Large-scale wind-tunnel testing

Research Keywords and Topics

• Convergence between fluid mechanics and other areas such as biology, sports, robotics, etc.
• Experimental fluid mechanics
• Flow control

Research Publications
MORE

• Journal of Fluid Mechanics, Effects of rotor–rotor interaction on the wake characteristics of twin rotors in axial descent, Chae, S., Lee, S. & Kim, J., 2022
• Journal of Fluid Mechanics, Accurate prediction of the particle image velocimetry flow field and rotor thrust using deep learning, Oh, S., Lee, S., Son, M., Kim, J. & Ki, H., 2022
• IEEE Access, Effects of rotor-rotor interaction on the wake structure and thrust generation of a quadrotor unmanned aerial vehicle, Lee, S., Chae, S., Woo, S. Y., Jang, J. & Kim, J., 2021
• Physics of Fluids, Adaptive-passive control of flow over a sphere for drag reduction, Chae, S., Lee, S., Kim, J. & Lee, J. H., 2019

Patents

• Paraglider canopy with self-adaptive strainer, Korean Patent No. 10-2486974, 2023
• Paraglider canopy and paraglider with the same, European Patent No. EP20208575.9, 2020

국가과학기술표준분류

  • EA. 기계
  • EA11. 항공시스템
  • EA1101. 고정익/회전익 항공기 기체

국가기술지도분류

  • 국가안전 및 위상 제고
  • 050500. 무인비행체 및 시스템 기술

녹색기술분류

  • 고효율화기술
  • 수송효율성 향상
  • 331. 고효율 저공해차량기술

6T분류

  • ST 분야
  • 항공기기술
  • 040312. 지능형 자율비행 무인비행기기 시스템(UAV)기술