Development of a Multi-scale Approach Using Chemical Kinetics and Reactive Force Field Molecular Dynamics to Model Soot Formation and Oxidation

Development of a Multi-scale Approach Using Chemical Kinetics and Reactive Force Field Molecular Dynamics to Model Soot Formation and Oxidation
Author: Michel Keller
Publisher:
Total Pages: 0
Release: 2019
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In the present study bond formation reactions between soot precursors and their role in the soot inception process is investigated. The soot precursors were generated in macroscopic detailed gas-phase kinetic calculations and according to certain criteria introduced in simulation boxes to model bond formation between soot precursor molecules with reactive force field molecular dynam-ics modeling. The impacts of temperature, fuel mixture and equivalence ratio have been investigated on the rate and structure of the newly formed molecules. The resulting structures compare well to previously reported experimental results. Furthermore, the bond formation rate between PAH is found to be linearly correlated with the temperature at which the PAH precursors are generated, while fuel and equivalence ratio do not have a direct impact on the reaction rate. The generated growth structures are lumped in: 1) directly linked, 2) aliphatically linked and 3) pericondensed polycyclic hydrocarbons. It is found that the amount of aliphatically linked PAH increases with the amount of aliphatic content of fuel mixture. Finally, a reaction scheme is presented displaying the most representative reaction pathways to form growth structures in each lumping class and their eventual intercon-version. The present work - that applies a combined approach of macroscopic gas-phase kinetic calculations and atomistic reactive force field simulations - offers a good alternative to obtain structural differences of nascent soot for a broad range of thermodynamic conditions and detailed reaction mechanisms for soot inception process.


Development of a Multi-scale Approach Using Chemical Kinetics and Reactive Force Field Molecular Dynamics to Model Soot Formation and Oxidation
Language: en
Pages: 0
Authors: Michel Keller
Categories:
Type: BOOK - Published: 2019 - Publisher:

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In the present study bond formation reactions between soot precursors and their role in the soot inception process is investigated. The soot precursors were gen
Multi-scale Modeling of High-temperature Chemistry and Soot Formation of Bio-fuels
Language: en
Pages:
Authors: Hyunguk Kwon
Categories:
Type: BOOK - Published: 2021 - Publisher:

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Soot refers to carbonaceous particles that have negative impacts on the environment and human health. To intelligently manage ongoing changes in fuel compositio
Multi-Scale Investigations in Soot Formation and Chemical Vapor Deposition
Language: en
Pages:
Authors: Abhishek Jain
Categories:
Type: BOOK - Published: 2019 - Publisher:

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Progress is made in this thesis in understanding the complex multi-scale chemical and physical processes governing the formation of condensed phase material fro
Summary Report on the Workshop on High Temperature Chemical Kinetics, Applications to Combustion Research
Language: en
Pages: 100
Authors: National Measurement Laboratory (U.S.)
Categories: Chemical kinetics
Type: BOOK - Published: 1978 - Publisher:

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Scientific and Technical Aerospace Reports
Language: en
Pages: 892
Authors:
Categories: Aeronautics
Type: BOOK - Published: 1994 - Publisher:

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