Computational load imbalance is a well-known performance issue in multiprocessor reacting flow simulations utilizing directly integrated chemical kinetics. We introduce an open-source dynamic load balancing model named DLBFoam to address this issue within OpenFOAM, an open-source C++ library for Computational Fluid Dynamics (CFD). Due to the commonly applied operator splitting practice in reactive flow solvers, chemistry can be treated as an independent stiff ordinary differential equation (ODE) system within each computational cell. As a result of the highly non-linear characteristics of chemical kinetics, a large variation in the convergence rates of the ODE integrator may occur, leading to a high load imbalance across multiprocessor conf...
Although OpenFOAM is a widely-used open source computational fluid dynamics (CFD) tool, it is limite...
CP10. In this work a numerical code for the simulation of reactive flows in laminar conditions is pr...
Flame simulations are used to gain insight into combustion physics and to design combustion systems ...
Funding Information: The present study has been financially supported by the Academy of Finland (gra...
Detailed chemistry-based computational fluid dynamics (CFD) simulations are computationally expensiv...
Due to the composition-dependent stiffness of chemistry, simulations of reactive turbulent flows may...
In computational fluid dynamics (CFD), the mathematical description of a physical phenomenon that in...
Combustion simulations with finite-rate chemistry rely on accurate and efficient methods for solving...
Talk given in the Boulder Fluid and Thermal Sciences Seminar Series, University of Colorado, Boulder...
OpenSMOKE++ is a general framework for numerical simulations of reacting systems with detailed kinet...
The integration of stiff ordinary differential equation (ODE) systems associated with detailed chemi...
The development and assessment of an efficient parallelization method for the evaluation of reaction...
Appropriate, numerical modeling of combustion systems needs an accurate treatment of the governing c...
This work details efforts to reduce the cost of using detailed chemical kinetic modeling in realisti...
To meet future climate goals, the efficiency of combustion devices has to be increased. This require...
Although OpenFOAM is a widely-used open source computational fluid dynamics (CFD) tool, it is limite...
CP10. In this work a numerical code for the simulation of reactive flows in laminar conditions is pr...
Flame simulations are used to gain insight into combustion physics and to design combustion systems ...
Funding Information: The present study has been financially supported by the Academy of Finland (gra...
Detailed chemistry-based computational fluid dynamics (CFD) simulations are computationally expensiv...
Due to the composition-dependent stiffness of chemistry, simulations of reactive turbulent flows may...
In computational fluid dynamics (CFD), the mathematical description of a physical phenomenon that in...
Combustion simulations with finite-rate chemistry rely on accurate and efficient methods for solving...
Talk given in the Boulder Fluid and Thermal Sciences Seminar Series, University of Colorado, Boulder...
OpenSMOKE++ is a general framework for numerical simulations of reacting systems with detailed kinet...
The integration of stiff ordinary differential equation (ODE) systems associated with detailed chemi...
The development and assessment of an efficient parallelization method for the evaluation of reaction...
Appropriate, numerical modeling of combustion systems needs an accurate treatment of the governing c...
This work details efforts to reduce the cost of using detailed chemical kinetic modeling in realisti...
To meet future climate goals, the efficiency of combustion devices has to be increased. This require...
Although OpenFOAM is a widely-used open source computational fluid dynamics (CFD) tool, it is limite...
CP10. In this work a numerical code for the simulation of reactive flows in laminar conditions is pr...
Flame simulations are used to gain insight into combustion physics and to design combustion systems ...