Using detailed mechanisms to include chemical kinetics in computational fluid dynamics simulations is required for many combustion applications, yet the resulting computational cost is often extremely prohibitive. In order to reduce the resources dedicated to this stage, we investigated the coupling of the dynamic adaptive chemistry (DAC) reduction scheme with the in situ adaptive tabulation (ISAT) algorithm. This paper describes the tabulation of dynamic adaptive chemistry (TDAC) method which takes advantage of both ISAT and DAC to reduce the impact of the mesh and the oxidation mechanism on the computational cost, particularly for unsteady applications like internal combustion engines. In the context of homogeneous charge compression igni...
The demands for extending the limiting operation conditions and enhancing the combustion efficiency ...
This work deals with the analysis of the performance and emissions of ethanol HCCI/PSCCI engines by...
The development of computational models for the numerical simulation of chemically reacting flows op...
Using detailed mechanisms to include chemical kinetics in computational fluid dynamics simulations i...
Using detailed mechanisms to include chemical kinetics in computational fluid dynamics simulations i...
Multi-dimensional models represent today consolidated tools to simulate the combustion process in HC...
The Dynamic Adaptive Chemistry (DAC) technique is extended in this work to multidimensional simulati...
A new error controlled dynamic adaptive chemistry (EC-DAC) scheme is developed and validated for ign...
A dynamic adaptive chemistry(DAC) is developed based on the path flux analysis(PFA) model reduction ...
International audienceThe study of combustion requires the description of the thermochemistry of ele...
Detailed chemical kinetics is important for high-fidelity reacting flow simulations. The major chall...
International audienceThe development of computational models for the numerical simulation of chemic...
An integrated dynamic adaptive chemistry and hybrid multi-timescale (HMTS-DAC) method is developed b...
In this paper, a modified version of the latest implementation of In-Situ-Adaptive-Tabulation (ISAT)...
Despite the onset of peta-scale computing, simulations of reacting flows with detailed chemistry is ...
The demands for extending the limiting operation conditions and enhancing the combustion efficiency ...
This work deals with the analysis of the performance and emissions of ethanol HCCI/PSCCI engines by...
The development of computational models for the numerical simulation of chemically reacting flows op...
Using detailed mechanisms to include chemical kinetics in computational fluid dynamics simulations i...
Using detailed mechanisms to include chemical kinetics in computational fluid dynamics simulations i...
Multi-dimensional models represent today consolidated tools to simulate the combustion process in HC...
The Dynamic Adaptive Chemistry (DAC) technique is extended in this work to multidimensional simulati...
A new error controlled dynamic adaptive chemistry (EC-DAC) scheme is developed and validated for ign...
A dynamic adaptive chemistry(DAC) is developed based on the path flux analysis(PFA) model reduction ...
International audienceThe study of combustion requires the description of the thermochemistry of ele...
Detailed chemical kinetics is important for high-fidelity reacting flow simulations. The major chall...
International audienceThe development of computational models for the numerical simulation of chemic...
An integrated dynamic adaptive chemistry and hybrid multi-timescale (HMTS-DAC) method is developed b...
In this paper, a modified version of the latest implementation of In-Situ-Adaptive-Tabulation (ISAT)...
Despite the onset of peta-scale computing, simulations of reacting flows with detailed chemistry is ...
The demands for extending the limiting operation conditions and enhancing the combustion efficiency ...
This work deals with the analysis of the performance and emissions of ethanol HCCI/PSCCI engines by...
The development of computational models for the numerical simulation of chemically reacting flows op...