A numerical and theoretical study of the aerodynamic performance of a hovering rhinoceros beetle (Trypoxylus dichotomus)
From MaRDI portal
Publication:5207691
DOI10.1017/JFM.2019.962zbMath1460.76987OpenAlexW2995227822MaRDI QIDQ5207691
Hyungmin Park, Sun-Tae Kim, Sehyeong Oh, Boogeon Lee, Hae Cheon Choi
Publication date: 13 January 2020
Published in: Journal of Fluid Mechanics (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1017/jfm.2019.962
General aerodynamics and subsonic flows (76G25) Biomechanics (92C10) Biopropulsion in water and in air (76Z10)
Related Items (5)
Physical models and vortex dynamics of swimming and flying: a review ⋮ Vortex dynamics and hydrodynamic performance enhancement mechanism in batoid fish oscillatory swimming ⋮ Estimating thrust from shedding vortex surfaces in the wake of a flapping plate ⋮ A CFD data-driven aerodynamic model for fast and precise prediction of flapping aerodynamics in various flight velocities ⋮ The unsteady aerodynamics of insect wings with rotational stroke accelerations, a systematic numerical study
Cites Work
- Unnamed Item
- Unnamed Item
- Sources of spurious force oscillations from an immersed boundary method for moving-body problems
- A weak-coupling immersed boundary method for fluid-structure interaction with low density ratio of solid to fluid
- A note on interpolating periodic quintic splines with equally spaced nodes
- A CFD-informed quasi-steady model of flapping-wing aerodynamics
- A scaling law for the lift of hovering insects
- Vortex dynamics and new lift enhancement mechanism of wing–body interaction in insect forward flight
- Aeromechanics of passive rotation in flapping flight
- A vortex theory of animal flight. Part 1. The vortex wake of a hovering animal
- On the identification of a vortex
- A predictive quasi-steady model of aerodynamic loads on flapping wings
- Energy-minimizing kinematics in hovering insect flight
- A multi-fidelity modelling approach for evaluation and optimization of wing stroke aerodynamics in flapping flight
- On the flow near the trailing edge of a flat plate
- Boundary-Layer Flow Near the Trailing Edge of a Flat Plate
- Unsteady aerodynamics of fluttering and tumbling plates
- On a pulsating jet from the end of a tube, with application to the propulsion of certain aquatic animals
- An immersed-boundary finite volume method for simulations of flow in complex geometries
This page was built for publication: A numerical and theoretical study of the aerodynamic performance of a hovering rhinoceros beetle (Trypoxylus dichotomus)