A Novel Strong-Coupling Pseudo-Spectral Method for Numerical Studies of Two-Layer Turbulent Channel Flows
DOI10.4208/cicp.OA-2019-0124zbMath1476.76056OpenAlexW3045472944MaRDI QIDQ5162333
Shizhao Wang, Tong Wu, Zi-Xuan Yang, Guo-wei He
Publication date: 2 November 2021
Published in: Communications in Computational Physics (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.4208/cicp.oa-2019-0124
direct numerical simulationturbulence statisticsinterface conditioncoupled air-water turbulenceviscous momentum flux
Statistical turbulence modeling (76F55) Shear flows and turbulence (76F10) Spectral methods applied to problems in fluid mechanics (76M22) Direct numerical and large eddy simulation of turbulence (76F65)
Cites Work
- A non-iterative direct forcing immersed boundary method for strongly-coupled fluid-solid interactions
- Simulation of viscous flows with undulatory boundaries. I: Basic solver
- Simulation of viscous flows with undulatory boundaries: II. Coupling with other solvers for two-fluid computations
- Application of a fractional-step method to incompressible Navier-Stokes equations
- Numerical study on the dissipation of water waves over a viscous fluid-mud layer
- A conservative scheme for simulation of free-surface turbulent and wave flows
- Influence of active control on STG-based generation of streamwise vortices in near-wall turbulence
- Direct-simulation-based study of turbulent flow over various waving boundaries
- The surface layer for free-surface turbulent flows
- Shear-free turbulence near a flat free surface
- Direct numerical simulation of near-interface turbulence in coupled gas-liquid flow
- Simulation of turbulent flow over idealized water waves
- Direct numerical simulation of wind turbulence over breaking waves
- Influence of Langmuir circulations on turbulence in the bottom boundary layer of shallow water
- Turbulence statistics in fully developed channel flow at low Reynolds number
- Interaction of surface waves with turbulence: direct numerical simulations of turbulent open-channel flow
- A Comparison of Fourier Spectral Iterative Perturbation Method and Finite Element Method in Solving Phase-Field Equilibrium Equations
- Pseudospectral Methods for Computing the Multiple Solutions of the Schrodinger Equation
- Nonstandard Fourier Pseudospectral Time Domain (PSTD) Schemes for Partial Differential Equations
- An Efficient Spectral Method for the Inextensible Immersed Interface in Incompressible Flows
- Study of wave effect on vorticity in Langmuir turbulence using wave-phase-resolved large-eddy simulation
- Investigation of coupled air-water turbulent boundary layers using direct numerical simulations
- An improved velocity increment model based on Kolmogorov equation of filtered velocity
- Direct numerical simulation of scalar transport in turbulent flows over progressive surface waves
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