The Reynolds-averaged Navier-Stokes (RANS) approach has been popular for engineering turbulent flow computations. The most widely used ones, such as the k-ε two-equation model, have well-recognized deficiencies when treating time dependent flow fields. To identify ways to improve the predictive capability of the current RANS-based engineering turbulence closures, conditional averaging is adopted for the Navier-Stokes equation, and one more parameter, based on the filter size, is introduced into the k-ε model. The sub-filter stresses are constructed directly by using the filter size and the conventional turbulence closure. The filter is decoupled from the grid, making it possible to obtain grid independent solutions with a fixed filter scale...
Recently, several attempts have been done to bridge Smagorinski and RANS models (Mavenides et al. (1...
Navier-Stokes equations) turbulence models provide adequately accurate solutions for many engineerin...
A two-equation transport model is used to model turbulence at any mesh resolution, from RANS, to LES...
The widely used Reynolds-Averaged Navier-Stokes (RANS) approach, such as the k - ε two-equation mode...
The statistical characteristics of unsteady Reynolds-averaged Navier-Stokes (RANS) turbulence models...
The paper evaluates the performance of the Partially-Averaged Navier-Stokes (PANS) method on complex...
The formulation of analytical turbulence closure models for use in computational fluid mechanics is ...
The goal of this dissertation is to consolidate the theoretical foundation of variable-resolution (V...
The present study focuses on a turbulence modeling strategy aiming at advancement of the Reynolds-av...
An adaptive low-pass filtering procedure for the modeled turbulent length and time scales is derived...
Historically turbulence modeling has been sharply divided into Reynolds averaged Navier-Stokes (RANS...
Recent increased computational power has led to interest in the simulation of time-dependent flows f...
Press. Reynolds-averaged Navier-Stokes (RANS) simulations with turbulence closure models continue to...
Swirling flows are very dominant in applied technical problems, especially in IC engines, and their ...
Flow past a square cylinder placed centrally in a parallel plate channel has been numerically simula...
Recently, several attempts have been done to bridge Smagorinski and RANS models (Mavenides et al. (1...
Navier-Stokes equations) turbulence models provide adequately accurate solutions for many engineerin...
A two-equation transport model is used to model turbulence at any mesh resolution, from RANS, to LES...
The widely used Reynolds-Averaged Navier-Stokes (RANS) approach, such as the k - ε two-equation mode...
The statistical characteristics of unsteady Reynolds-averaged Navier-Stokes (RANS) turbulence models...
The paper evaluates the performance of the Partially-Averaged Navier-Stokes (PANS) method on complex...
The formulation of analytical turbulence closure models for use in computational fluid mechanics is ...
The goal of this dissertation is to consolidate the theoretical foundation of variable-resolution (V...
The present study focuses on a turbulence modeling strategy aiming at advancement of the Reynolds-av...
An adaptive low-pass filtering procedure for the modeled turbulent length and time scales is derived...
Historically turbulence modeling has been sharply divided into Reynolds averaged Navier-Stokes (RANS...
Recent increased computational power has led to interest in the simulation of time-dependent flows f...
Press. Reynolds-averaged Navier-Stokes (RANS) simulations with turbulence closure models continue to...
Swirling flows are very dominant in applied technical problems, especially in IC engines, and their ...
Flow past a square cylinder placed centrally in a parallel plate channel has been numerically simula...
Recently, several attempts have been done to bridge Smagorinski and RANS models (Mavenides et al. (1...
Navier-Stokes equations) turbulence models provide adequately accurate solutions for many engineerin...
A two-equation transport model is used to model turbulence at any mesh resolution, from RANS, to LES...