Nonlinear Tollmien–Schlichting waves for a Blasius flow over compliant coatings
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Publication:4425545
DOI10.1063/1.868886zbMath1032.76558OpenAlexW2072479423MaRDI QIDQ4425545
Publication date: 16 December 2003
Published in: Physics of Fluids (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1063/1.868886
Nonlinear effects in hydrodynamic stability (76E30) Boundary-layer theory, separation and reattachment, higher-order effects (76D10)
Cites Work
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- Turbulent transport and the random occurrence of coherent events
- Effect of far-field boundary conditions on boundary-layer transition
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- The dynamics of waves at the interface between a viscoelastic coating and a fluid flow
- Finite-amplitude steady waves in plane viscous shear flows
- The hydrodynamic stability of flow over Kramer-type compliant surfaces. Part 1. Tollmien-Schlichting instabilities
- The hydrodynamic stability of flow over Kramer-type compliant surfaces. Part 2. Flow-induced surface instabilities
- The stability of boundary-layer flow over single-and multi-layer viscoelastic walls
- Role of three-dimensional instabilities in compliant wall boundary-layer transition
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- Effect of compliant walls on secondary instabilities in boundary-layer transition
- The nonlinear stability of flows over compliant walls
- Linear and nonlinear stability of the Blasius boundary layer
- On a degeneracy of temporal secondary instability modes in Blasius boundary-layer flow
- Finite amplitude steady waves in the Blasius boundary layer
- Homoclinic bifurcation in Blasius boundary-layer flow
- The linear stability of boundary-layer flow over compliant walls: effects of boundary-layer growth
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