A fully integrated Kinetic Monte Carlo/Molecular Dynamics approach for the simulation of soot precursor growth

Update Item Information
Publication Type report
Research Institute Institute for Clean and Secure Energy (ICSE)
Author Violi, A.; Kubota, A.; Truong, Thanh; Pitz, W. J.; Westbrook, C. K.; Sarofim, Adel F.
Title A fully integrated Kinetic Monte Carlo/Molecular Dynamics approach for the simulation of soot precursor growth
Date 2002
Description The emphasis in this paper is on presenting a new methodology, together with some illustrative applications, for the study of polycyclic aromatic hydrocarbon polymerization leading to soot, widely recognized as a very important and challenging combustion problem. The new code, named fully integrated Kinetic Monte Carlo/Molecular Dynamics (KMC/MD), places the two simulation procedures on an equal footing and involves alternating between KMC and MD steps during the simulation. The KMC/MD simulations are used in conjunction with high-level quantum chemical calculations. With traditional kinetic rates and dealing with the growth of particles, it is often necessary to perform a lumping procedure in which much atomic-scale information is lost. Our KMC/MD approach is designed to preserve atomic-scale structure: a single particle evolves in time with real three-dimensional structure (bonds, bond angles, dihedral angles). In this paper, the methodology is illustrated by a sample simulation of high molecular mass compound growth in an environment (T, H, H2, naphthalene, and acenaphthylene concentrations) of a low-pressure laminar premixed benzene/oxygen/argon flame with an equivalence ratio of 1.8. The use of this approach enables the investigation of the physical (e.g., porosity, density, sphericity) as well as chemical (e.g., H/C, aromatic moieties, number of cross-links) properties.
Type Text
Publisher Elsevier
Subject Polycyclic aromatic hydrocarbon polymerization; Soot; KMC/MD; Kinetic Monte Carlo/Molecular Dynamics; Particle growth; Atomic-scale structure; Molecular Transformations; KMC; MD; Simulation; Kinetic mechanism
Language eng
Bibliographic Citation Violi, A., Kubota, A., Truong, T. N., Pitz, W. J., Westbrook, C. K., & Sarofim, A. F. (2002). A Fully Integrated Kinetic Monte Carlo/Molecular Dynamics Approach for the Simulation of Soot Precursor Growth. Proceedings of the Combustion Institute, 29, 2343-2349.
Rights Management (c)Elsevier
Format Medium application/pdf
Format Extent 101,782 bytes
Identifier ir-eua/id/2307
Source DSpace at ICSE
ARK ark:/87278/s6419w42
Setname ir_eua
ID 213511
Reference URL https://collections.lib.utah.edu/ark:/87278/s6419w42
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