Controlling the chaotic wake of a flapping foil by tuning its chordwise flexibility

Fuente: arXiv
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Main Authors: Shah, Chhote Lal, Majumdar, Dipanjan, Bose, Chandan, Sarkar, Sunetra
Format: Preprint
Published: 2024
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author Shah, Chhote Lal
Majumdar, Dipanjan
Bose, Chandan
Sarkar, Sunetra
author_facet Shah, Chhote Lal
Majumdar, Dipanjan
Bose, Chandan
Sarkar, Sunetra
contents Effects of chord-wise flexibility as an instrument to control chaotic transitions in the wake of a flexible flapping foil have been studied here using an immersed boundary method-based in-house fluid-structure-interaction solver. The ability of the flapping foil at an optimum level of flexibility to inhibit chaotic transition, otherwise encountered in a similar but rigid configuration, has been highlighted. The rigid foil manifests chaotic transition through a quasi-periodic-intermittency route at high dynamic plunge velocities; whereas, increasing the level of flexibility gradually regularises the aperiodic behaviour through a variety of interesting wake patterns. If flexibility is increased beyond an optimum level, aperiodicity sets in again and robust chaos is restored at very high flexibility levels. The mechanisms of triggering the order-to-chaos transition are different between the rigid and the high flexibility cases. Along the route to order and back to chaos, the flexible foil exhibits different flow-field behaviours, including far-wake switching, primary \& secondary vortex streets, bifurcated wakes and interactive vortices between the bifurcated wakes. The underlying interaction mechanisms of the flow-field vortices responsible for the associated dynamical signatures of the wake have been closely tracked. This study further examines the optimum propulsive performance range of the flexible flapper and investigates its connection with the periodicity/regularity of the system.
format Preprint
id arxiv_https___arxiv_org_abs_2403_17932
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Controlling the chaotic wake of a flapping foil by tuning its chordwise flexibility
Shah, Chhote Lal
Majumdar, Dipanjan
Bose, Chandan
Sarkar, Sunetra
Fluid Dynamics
Biological Physics
Effects of chord-wise flexibility as an instrument to control chaotic transitions in the wake of a flexible flapping foil have been studied here using an immersed boundary method-based in-house fluid-structure-interaction solver. The ability of the flapping foil at an optimum level of flexibility to inhibit chaotic transition, otherwise encountered in a similar but rigid configuration, has been highlighted. The rigid foil manifests chaotic transition through a quasi-periodic-intermittency route at high dynamic plunge velocities; whereas, increasing the level of flexibility gradually regularises the aperiodic behaviour through a variety of interesting wake patterns. If flexibility is increased beyond an optimum level, aperiodicity sets in again and robust chaos is restored at very high flexibility levels. The mechanisms of triggering the order-to-chaos transition are different between the rigid and the high flexibility cases. Along the route to order and back to chaos, the flexible foil exhibits different flow-field behaviours, including far-wake switching, primary \& secondary vortex streets, bifurcated wakes and interactive vortices between the bifurcated wakes. The underlying interaction mechanisms of the flow-field vortices responsible for the associated dynamical signatures of the wake have been closely tracked. This study further examines the optimum propulsive performance range of the flexible flapper and investigates its connection with the periodicity/regularity of the system.
title Controlling the chaotic wake of a flapping foil by tuning its chordwise flexibility
topic Fluid Dynamics
Biological Physics
url https://arxiv.org/abs/2403.17932