An automatic procedure for the simplification of chemical kinetic mechanisms based on CSP

被引:168
|
作者
Valorani, Mauro
Creta, Francesco
Goussis, Dimitris A.
Lee, Jeremiah C.
Najm, Habib N. [1 ]
机构
[1] Sandia Natl Labs, Livermore, CA 94550 USA
[2] Univ Roma La Sapienza, Dipartimento Meccan & Aeronaut, I-00184 Rome, Italy
[3] United Technol Res Ctr, E Hartford, CT 06108 USA
关键词
chemical kinetics reduction; autoignition; premixed laminar flames; counterflow diffusion flames; numerical methods;
D O I
10.1016/j.combustflame.2006.03.011
中图分类号
O414.1 [热力学];
学科分类号
摘要
An algorithm is developed to generate simplified (skeletal) kinetic mechanisms from a given detailed one. The algorithm is able to replicate the dynamics of a user-specified set of species (chosen from the original set) when a finite set of sampling points, D, in the chemistry configuration space is given. The simplification procedure involves discarding elementary reactions and species that are deemed unimportant to the fast and slow dynamics of a set of specific scalars. The criteria used in deciding which elementary reactions or species to discard are based on the computational singular perturbation (CSP) method. The procedure involves applying the CSP analysis to each point in D and an algorithm to assemble the simplified mechanism, the validity of which extends to all points in D and is tailored for the set of specified scalars. This algorithm provides a convenient way to construct comprehensive simplified mechanisms, applicable over a wide range of parameters and combustion processes. The effectiveness of this new algorithm is demonstrated by constructing simplified mechanisms for three methane/air reactive systems: autoignition in a constant-pressure reactor, a premixed flame, and a counterflow diffusion flame. (c) 2006 The Combustion Institute. Published by Elsevier Inc. All rights reserved.
引用
收藏
页码:29 / 51
页数:23
相关论文
共 50 条
  • [31] Automatic simplification of obfuscated JavaScript code: A semantics-based approach
    Department of Computer Science, University of Arizona, Tucson, AZ 85721, United States
    Proc. IEEE Int. Conf. Softw. Secur. Reliab., SERE, (31-40):
  • [32] Transient kinetic studies support refinements to the chemical and kinetic mechanisms of aminolevulinate synthase
    Hunter, Gregory A.
    Zhang, Junshun
    Ferreira, Gloria C.
    JOURNAL OF BIOLOGICAL CHEMISTRY, 2007, 282 (32) : 23025 - 23035
  • [33] Theoretical Validation of Chemical Kinetic Mechanisms: Combustion of Methanol
    Skodje, Rex T.
    Tomlin, Alison S.
    Klippenstein, Stephen J.
    Harding, Lawrence B.
    Davis, Michael J.
    JOURNAL OF PHYSICAL CHEMISTRY A, 2010, 114 (32): : 8286 - 8301
  • [34] Detailed chemical kinetic mechanisms for combustion of oxygenated fuels
    Fisher, EM
    Pitz, WJ
    Curran, HJ
    Westbrook, CK
    PROCEEDINGS OF THE COMBUSTION INSTITUTE, 2000, 28 : 1579 - 1586
  • [35] Developing detailed chemical kinetic mechanisms for fuel combustion
    Curran, Henry J.
    PROCEEDINGS OF THE COMBUSTION INSTITUTE, 2019, 37 (01) : 57 - 81
  • [36] Automated generation of kinetic chemical mechanisms using rewriting
    Bournez, O
    Côme, GM
    Conraud, V
    Kirchner, H
    Ibanescu, L
    COMPUTATIONAL SICENCE - ICCS 2003, PT III, PROCEEDINGS, 2003, 2659 : 367 - 376
  • [37] Vinculin can be opened by chemical, physical, and kinetic mechanisms
    Steimle, PA
    Adey, NB
    Craig, SW
    MOLECULAR BIOLOGY OF THE CELL, 1997, 8 : 2412 - 2412
  • [38] Chemical CSP storage system based on a manganese aluminium spinel
    Morabito, Tania
    Sau, Salvatore
    Tizzoni, Anna Chiara
    Spadoni, Annarita
    Capocelli, Mauro
    Corsaro, Natale
    D'Ottavi, Cadia
    Licoccia, Silvia
    Delise, Tiziano
    SOLAR ENERGY, 2020, 197 : 462 - 471
  • [39] Chemical mechanisms in two photochemical modelling systems: A comparison procedure
    Ferreira, J
    Carvalho, A
    Carvalho, AC
    Monteiro, A
    Martins, H
    Miranda, AI
    Borrego, C
    AIR POLLUTION MODELING AND ITS APPLICATION XVI, 2004, 16 : 87 - 96
  • [40] Automatic handling system of solid wood panels based on node simplification algorithm
    Chen J.
    Liu Y.
    Yu Y.
    Yang Y.
    Wang D.
    Jisuanji Jicheng Zhizao Xitong/Computer Integrated Manufacturing Systems, CIMS, 2020, 26 (09): : 2522 - 2530