Computational aerodynamics of insect flight using volume penalization

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Abstract

The state-of-the-art of insect flight research using advanced computational fluid dynamics techniques on supercomputers is reviewed, focusing mostly on the work of the present authors. We present a brief historical overview, discuss numerical challenges and introduce the governing model equations. Two open source codes, one based on Fourier, the other based on wavelet representation, are succinctly presented and a mass-spring flexible wing model is described. Various illustrations of numerical simulations of flapping insects at low, intermediate and high Reynolds numbers are presented. The role of flexible wings, data-driven modeling and fluid–structure interaction issues are likewise discussed.

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Engels, T., Truong, H., Farge, M., Kolomenskiy, D., & Schneider, K. (2022). Computational aerodynamics of insect flight using volume penalization. Comptes Rendus - Mecanique, 350. https://doi.org/10.5802/crmeca.129

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