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Progress in wall turbulence 2 : understanding and modelling / edited by Michel Stanislas, Javier Jimenez, Ivan Marusic.

Colaborador(es): Tipo de material: TextoTextoSeries ERCOFTAC Series ; 23Editor: Cham : Springer International Publishing : Springer, 2016Edición: 1st ed. 2016Descripción: xi, 439 páginas : 273 ilustraciones, 174 ilustraciones en colorTipo de contenido:
  • texto
Tipo de medio:
  • computadora
Tipo de portador:
  • recurso en línea
ISBN:
  • 9783319203881
Formatos físicos adicionales: Edición impresa:: Sin títuloClasificación LoC:
  • TA357-359
Recursos en línea:
Contenidos:
On the Size of the Eddies in the Outer Turbulent Wall Layer: Evidence from Velocity Spectra -- Sensitized-RANS Modelling of Turbulence: Resolving Turbulence Unsteadiness by a (Near-wall) Reynolds Stress Model -- Coherent Structures in Wall-bounded Turbulence -- Attached Eddies and High-order Statistics -- DNS of Turbulent Boundary Layers in the Quasi-laminarization Process -- Numerical ABL Wind Tunnel Simulations with Direct Modeling of Roughness Elements through Immersed Boundary Condition Method -- Three-dimensional Nature of 2D Hairpin Packet Signatures in a DNS of a Turbulent Boundary Layer -- Wall Pressure Signature in Compressible Turbulent Boundary Layers -- Three-dimensional Structure of Pressure-Velocity Correlations in a Turbulent Boundary Layer -- Computation of Complex Terrain Turbulent Flows Using Hybrid Algebraic Structure-based Models (ASBM) and LES.
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Springer eBooks

On the Size of the Eddies in the Outer Turbulent Wall Layer: Evidence from Velocity Spectra -- Sensitized-RANS Modelling of Turbulence: Resolving Turbulence Unsteadiness by a (Near-wall) Reynolds Stress Model -- Coherent Structures in Wall-bounded Turbulence -- Attached Eddies and High-order Statistics -- DNS of Turbulent Boundary Layers in the Quasi-laminarization Process -- Numerical ABL Wind Tunnel Simulations with Direct Modeling of Roughness Elements through Immersed Boundary Condition Method -- Three-dimensional Nature of 2D Hairpin Packet Signatures in a DNS of a Turbulent Boundary Layer -- Wall Pressure Signature in Compressible Turbulent Boundary Layers -- Three-dimensional Structure of Pressure-Velocity Correlations in a Turbulent Boundary Layer -- Computation of Complex Terrain Turbulent Flows Using Hybrid Algebraic Structure-based Models (ASBM) and LES.

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