PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
May 16, 2026Physics of Fluids0 citations

Propulsive performance and vortex streets of tandem in-line and tandem-staggered pitching foils

View Full Paper
SDSaahil DharABAnirban BhattacharyyaMSMohd Atif Siddiqui

Key Points

  • This study investigates how the position and oscillation frequency of tandem pitching foils affect their propulsive performance.
  • Two-dimensional computational fluid dynamics simulations conducted in OpenFOAM.
  • Symmetric foils analyzed at varying Strouhal numbers and phase offsets.
  • Tandem configurations studied include both in-line and staggered arrangements.
  • In-phase pitching produces constructive von Kármán vortex streets and higher net thrust.
  • The aft foil achieves up to 28% propulsive efficiency, significantly outpacing the forward foil.
  • Tandem in-line foils show higher peak efficiency but are more sensitive to phase changes, while staggered foils maintain uniform power demand with lower efficiency.

Abstract

The propulsive performance of tandem pitching foils strongly depends on the position and the oscillation frequency of the foils. Fluid–foil interactions in paired pitching hydrofoils arranged in tandem in-line and tandem-staggered configurations are studied, inspired by the efficient undulatory motions of fish fins and aquatic animals. Symmetric National Advisory Committee for Aeronautics foils oscillating at varying Strouhal numbers (St) and phase offsets (φ) are analyzed using two-dimensional computational fluid dynamics simulations performed in OpenFOAM with an overset-mesh technique. The results reveal a clear transition from drag-dominated to thrust-dominated regimes. Phase synchronization is identified to be a key control parameter: constructive reverse von Kármán vortex streets and higher net thrust are produced by in-phase pitching, whereas destructive wake interactions and lower net thrust are induced by 180° out-of-phase motion. The aft (downstream) foil in tandem configurations achieves up to 28% propulsive efficiency, approximately four times that of the forward (upstream) foil due to wake recapture. Dynamic mode decomposition shows that the tandem-staggered configuration diverts energy into higher harmonics and exhibits weaker jet coherence. Overall, tandem in-line foils provide higher peak efficiency but are phase-sensitive, whereas staggered foils exhibit more uniform power demand across phase offsets, but lower efficiency. These findings highlight a trade-off between stability and performance in multi-foil systems.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Dhar et al. (2026) studied this question.

synapsesocial.com/papers/6a080af2a487c87a6a40cfcchttps://doi.org/10.1063/5.0310877
Ask AI
Helpful
Bookmark
Share
View Full Paper

Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Spectral analysis of nonlinear flows2009 · 2,334 citations
  2. 2An Efficient Swimming Machine1995 · 1,007 citations
  3. 3Optimal Thrust Development in Oscillating Foils with Application to Fish Propulsion1993 · 876 citations
  4. 4Mechanism of formation of wake patterns behind two staggered in-phase pitching foils2025 · 1 citations
  5. 5A sudden alteration in the self-propulsion of tandem flapping foils2025 · 6 citations