Modifications to key coefficients in a k E based explicit algebraic stress model (EASM) are examined with the objective of improving the prediction of turbulent jet flows. The pressure strain coefficient, C2 and the turbulent diffusion coefficients, k and E were investigated. For a series of benchmark subsonic jets at heated and unheated conditions, lowering C2 from the default value of 0.36 to 0.10 resulted in a significant improvement in the jet mixing, when compared to experimental data. Changing k and E from default values of 1.00 and 1.4489, respectively, to 0.50 and 0.7244, respectively, improved the initial mixing rate, while reducing the farfield mixing rate and the peak turbulent kinetic energy along the centerline. A high-speed m...
A database of direct numerical simulation (DNS) of spatially evolving turbulent mixing slot jets of ...
A database of direct numerical simulation (DNS) of spatially evolving turbulent mixing slot jets of ...
An explicit algebraic stress model (EASM) was used to simulate anisotropic turbulent flows in baffle...
Full seven-equation Reynolds stress turbulence models are a relatively new and promising tool for to...
Two full seven-equation turbulence models have been implemented into the FUN3D code to evaluate thei...
The state-of-the-art of turbulent flow computation is surveyed. The formulations were generalized to...
A computational model, SCIPVIS, is described which predicts the multiple cell shock structure in imp...
Large temperature and pressure fluctuations have a profound effect on turbulence development in tran...
In recent years codes that use the Navier-Stokes equations to compute aerodynamic flows have evolved...
This study focuses on the prediction of airfoil characteristics, including lift and drag over a rang...
For the simulation of complex, three-dimensional turbulent flows within the Reynolds-Averaged Navier...
The behavior of several turbulence models applied to the prediction of scramjet combustor flows is d...
A three-dimensional multiblock Navier-Stokes code, PAB3D, which was developed for propulsion integra...
AbstractReynolds stress turbulence models are still an effective method to solve thermal density flo...
Explicit algebraic stress models that are valid for three-dimensional turbulent flows in noninertial...
A database of direct numerical simulation (DNS) of spatially evolving turbulent mixing slot jets of ...
A database of direct numerical simulation (DNS) of spatially evolving turbulent mixing slot jets of ...
An explicit algebraic stress model (EASM) was used to simulate anisotropic turbulent flows in baffle...
Full seven-equation Reynolds stress turbulence models are a relatively new and promising tool for to...
Two full seven-equation turbulence models have been implemented into the FUN3D code to evaluate thei...
The state-of-the-art of turbulent flow computation is surveyed. The formulations were generalized to...
A computational model, SCIPVIS, is described which predicts the multiple cell shock structure in imp...
Large temperature and pressure fluctuations have a profound effect on turbulence development in tran...
In recent years codes that use the Navier-Stokes equations to compute aerodynamic flows have evolved...
This study focuses on the prediction of airfoil characteristics, including lift and drag over a rang...
For the simulation of complex, three-dimensional turbulent flows within the Reynolds-Averaged Navier...
The behavior of several turbulence models applied to the prediction of scramjet combustor flows is d...
A three-dimensional multiblock Navier-Stokes code, PAB3D, which was developed for propulsion integra...
AbstractReynolds stress turbulence models are still an effective method to solve thermal density flo...
Explicit algebraic stress models that are valid for three-dimensional turbulent flows in noninertial...
A database of direct numerical simulation (DNS) of spatially evolving turbulent mixing slot jets of ...
A database of direct numerical simulation (DNS) of spatially evolving turbulent mixing slot jets of ...
An explicit algebraic stress model (EASM) was used to simulate anisotropic turbulent flows in baffle...