Both experiments and numerical simulations pertinent to the study of self-similarity in shock-induced turbulent mixing often do not cover sufficiently long times for the mixing layer to become developed in a fully turbulent manner. When the Mach number of the flow is sufficiently low, numerical simulations based on the compressible flow equations tend to become less accurate due to inherent numerical cancellation errors. This paper concerns a numerical study of the late-time behaviour of a single-shocked Richtmyer–Meshkov instability (RMI) and the associated compressible turbulent mixing using a new technique that addresses the above limitation. The present approach exploits the fact that the RMI is a compressible flow during the early stag...
In this study we propose a new numerical algorithm for droplet-laden turbulent channel flow with pha...
Mixing layers are present in very different types of physical situations such as atmospheric flows, ...
The Richtmyer–Meshkov instability (RMI) occurs when a shock wave impulsively accelerates a perturbed...
Both experiments and numerical simulations pertinent to the study of self-similarity in shock-induce...
This paper presents a hybrid compressible–incompressible approach for simulating the Richtmyer–Meshk...
Numerical methods for the simulation of shock-induced turbulent mixing have been investigated, focu...
The ability of a finite volume Godunov and a semi-Lagrangian large-eddy simulation (LES) method to ...
Turbulent mixing evolving from the Richtmyer-Meshkov instability, also known as shock-induced turbul...
This paper concerns an investigation of two different approaches in modeling the turbulent mixing in...
This thesis presents results on the effects of initial conditions (single- and multi-mode) and incid...
Large-eddy simulations of single-shock-driven mixing suggest that, for sufficiently high incident Ma...
At high Mach numbers the two-dimensional time-developing mixing layer develops shock waves, position...
The effect of Mach number on the plane muong layer has been investigated by means of linear stabilit...
A two-equation turbulence model was extended to be applicable for compressible flows. A compressibil...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/90692/1/AIAA-2011-3689-674.pd
In this study we propose a new numerical algorithm for droplet-laden turbulent channel flow with pha...
Mixing layers are present in very different types of physical situations such as atmospheric flows, ...
The Richtmyer–Meshkov instability (RMI) occurs when a shock wave impulsively accelerates a perturbed...
Both experiments and numerical simulations pertinent to the study of self-similarity in shock-induce...
This paper presents a hybrid compressible–incompressible approach for simulating the Richtmyer–Meshk...
Numerical methods for the simulation of shock-induced turbulent mixing have been investigated, focu...
The ability of a finite volume Godunov and a semi-Lagrangian large-eddy simulation (LES) method to ...
Turbulent mixing evolving from the Richtmyer-Meshkov instability, also known as shock-induced turbul...
This paper concerns an investigation of two different approaches in modeling the turbulent mixing in...
This thesis presents results on the effects of initial conditions (single- and multi-mode) and incid...
Large-eddy simulations of single-shock-driven mixing suggest that, for sufficiently high incident Ma...
At high Mach numbers the two-dimensional time-developing mixing layer develops shock waves, position...
The effect of Mach number on the plane muong layer has been investigated by means of linear stabilit...
A two-equation turbulence model was extended to be applicable for compressible flows. A compressibil...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/90692/1/AIAA-2011-3689-674.pd
In this study we propose a new numerical algorithm for droplet-laden turbulent channel flow with pha...
Mixing layers are present in very different types of physical situations such as atmospheric flows, ...
The Richtmyer–Meshkov instability (RMI) occurs when a shock wave impulsively accelerates a perturbed...