Shun Fujishiro
Papers
2
Total Citations
58
H-Index
2
About
Shun Fujishiro is a leading figure in computational fluid dynamics, with a specialized focus on bio-inspired aerodynamics. His most influential work centers on unraveling the complex aerodynamic mechanisms of insect flight, particularly the hovering capabilities of the dragonfly. By developing and applying a three-dimensional Navier-Stokes code, Fujishiro performed pioneering numerical simulations of unsteady viscous flow around tandem wing configurations. His seminal 2004 paper, "Unsteady Three-Dimensional Viscous Flow Simulation of a Dragonfly Hovering," has garnered 55 citations, establishing a foundational framework for understanding how dragonflies achieve exceptional lift and stability. This research directly models the flight of *Anax partheno*, providing critical insights into leading-edge vortices and wake interactions that are essential for designing micro air vehicles. Fujishiro’s contributions bridge the gap between biological observation and engineering application, making him a key resource for students and researchers exploring flapping-wing propulsion and high-efficiency hovering flight.
Research Focus
Key Achievements
Top Papers
- 1Unsteady Three-Dimensional Viscous Flow Simulation of a Dragonfly Hovering55 citations · 2004
- 2