A versatile coupled progress variable/REDIM model for auto-ignition and combustion
Author:
Publisher
Elsevier BV
Subject
Physical and Theoretical Chemistry,Mechanical Engineering,General Chemical Engineering
Reference43 articles.
1. Simplifying chemical kinetics: Intrinsic low-dimensional manifolds in composition space
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3. The extension of the ILDM concept to reaction–diffusion manifolds
4. Problem adapted reduced models based on Reaction–Diffusion Manifolds (REDIMs)
5. Simple global reduction technique based on decomposition approach
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1. Reaction-Diffusion Manifolds (REDIM) Method for Ignition by Hot Gas and Spark Ignition Processes in Counterflow Flame Configurations;Combustion Science and Technology;2021-12-30
2. On-the-fly artificial neural network for chemical kinetics in direct numerical simulations of premixed combustion;Combustion and Flame;2021-04
3. Automatic Construction of REDIM Reduced Chemistry with a Detailed Transport and Its Application to CH4 Counterflow Flames;Energy & Fuels;2020-11-13
4. Direct mapping from LES resolved scales to filtered-flame generated manifolds using convolutional neural networks;Combustion and Flame;2019-12
5. Simulation of methane/air non-premixed turbulent flames based on REDIM simplified chemistry;Flow, Turbulence and Combustion;2019-10-10
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