# | Title | Journal | Year | Citations |
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1 | A Comprehensive Modeling Study of n-Heptane Oxidation | Combustion and Flame | 1998 | 1,765 |
2 | Simplifying chemical kinetics: Intrinsic low-dimensional manifolds in composition space | Combustion and Flame | 1992 | 1,283 |
3 | A comprehensive modeling study of iso-octane oxidation | Combustion and Flame | 2002 | 1,211 |
4 | A new approach to thermochemical calculations of condensed fuel-oxidizer mixtures | Combustion and Flame | 1981 | 1,081 |
5 | A detailed kinetic modeling study of aromatics formation in laminar premixed acetylene and ethylene flames | Combustion and Flame | 1997 | 1,070 |
6 | Kinetic modeling of soot formation with detailed chemistry and physics: laminar premixed flames of C2 hydrocarbons | Combustion and Flame | 2000 | 1,035 |
7 | Combustion in swirling flows: A review | Combustion and Flame | 1974 | 852 |
8 | Burning velocities of mixtures of air with methanol, isooctane, and indolene at high pressure and temperature | Combustion and Flame | 1982 | 850 |
9 | Global reaction schemes for hydrocarbon combustion | Combustion and Flame | 1988 | 847 |
10 | Kinetic and thermodynamic issues in the formation of aromatic compounds in flames of aliphatic fuels | Combustion and Flame | 1992 | 813 |
11 | A comprehensive detailed chemical kinetic reaction mechanism for combustion of n-alkane hydrocarbons from n-octane to n-hexadecane | Combustion and Flame | 2009 | 721 |
12 | On reduced mechanisms for methaneair combustion in nonpremixed flames | Combustion and Flame | 1990 | 709 |
13 | Laminar burning velocity and Markstein lengths of methane–air mixtures | Combustion and Flame | 2000 | 636 |
14 | The Measurement of Laminar Burning Velocities and Markstein Numbers for Iso-octane–Air and Iso-octane–n-Heptane–Air Mixtures at Elevated Temperatures and Pressures in an Explosion Bomb | Combustion and Flame | 1998 | 623 |
15 | The autoignition of hydrocarbon fuels at high temperatures and pressures—Fitting of a mathematical model | Combustion and Flame | 1977 | 615 |
16 | An efficient error-propagation-based reduction method for large chemical kinetic mechanisms | Combustion and Flame | 2008 | 608 |
17 | An experimental and detailed chemical kinetic modeling study of hydrogen and syngas mixture oxidation at elevated pressures | Combustion and Flame | 2013 | 589 |
18 | Soot particle measurements in diffusion flames | Combustion and Flame | 1983 | 583 |
19 | Directions in internal combustion engine research | Combustion and Flame | 2013 | 541 |
20 | Burning velocities, markstein lengths, and flame quenching for spherical methane-air flames: A computational study | Combustion and Flame | 1996 | 540 |
21 | Shock-tube investigation of self-ignition of n-heptane-air mixtures under engine relevant conditions | Combustion and Flame | 1993 | 526 |
22 | A simplified reaction mechanism for soot formation in nonpremixed flames | Combustion and Flame | 1991 | 519 |
23 | Self-ignition of S.I. engine model fuels: A shock tube investigation at high pressure | Combustion and Flame | 1997 | 518 |
24 | Shock tube determination of ignition delay times in full-blend and surrogate fuel mixtures | Combustion and Flame | 2004 | 518 |
25 | Measurements of laminar burning velocities for natural gas–hydrogen–air mixtures | Combustion and Flame | 2006 | 512 |
26 | Aromatic and Polycyclic Aromatic Hydrocarbon Formation in a Laminar Premixed n-Butane Flame | Combustion and Flame | 1998 | 511 |
27 | Laminar flame speeds of hydrocarbon + air mixtures with hydrogen addition | Combustion and Flame | 1986 | 504 |
28 | Two-stage ignition in HCCI combustion and HCCI control by fuels and additives | Combustion and Flame | 2003 | 499 |
29 | Origins of the deflagration-to-detonation transition in gas-phase combustion | Combustion and Flame | 2007 | 491 |
30 | Calculation methods for reacting turbulent flows: A review | Combustion and Flame | 1982 | 490 |
31 | Regime classification of an exothermic reaction with nonuniform initial conditions | Combustion and Flame | 1980 | 484 |
32 | On the Adequacy of Certain Experimental Observables as Measurements of Flame Burning Rate | Combustion and Flame | 1998 | 484 |
33 | A jet fuel surrogate formulated by real fuel properties | Combustion and Flame | 2010 | 484 |
34 | Laminar burning velocity of propane-air mixtures at high temperature and pressure | Combustion and Flame | 1980 | 478 |
35 | Kinetic Modeling of Hydrocarbon/Nitric Oxide Interactions in a Flow Reactor | Combustion and Flame | 1998 | 475 |
36 | Implementation of the NCN pathway of prompt-NO formation in the detailed reaction mechanism | Combustion and Flame | 2009 | 471 |
37 | Response of a laminar premixed flame to flow oscillations: A kinematic model and thermoacoustic instability results | Combustion and Flame | 1996 | 468 |
38 | Experimental investigation of the nonlinear response of turbulent premixed flames to imposed inlet velocity oscillations | Combustion and Flame | 2005 | 467 |
39 | Comprehensive chemical kinetic modeling of the oxidation of 2-methylalkanes from C7 to C20 | Combustion and Flame | 2011 | 466 |
40 | Ignition processes in hydrogenoxygen mixtures | Combustion and Flame | 1988 | 464 |
41 | A power-law flame wrinkling model for LES of premixed turbulent combustion Part I: non-dynamic formulation and initial tests | Combustion and Flame | 2002 | 464 |
42 | A comprehensive chemical kinetic combustion model for the four butanol isomers | Combustion and Flame | 2012 | 463 |
43 | Soot in diesel fuel jets: effects of ambient temperature, ambient density, and injection pressure | Combustion and Flame | 2004 | 456 |
44 | Experimental and numerical study of the laminar burning velocity of CH4–NH3–air premixed flames | Combustion and Flame | 2018 | 449 |
45 | Effect of polymorphic phase transformations in Al2O3 film on oxidation kinetics of aluminum powders | Combustion and Flame | 2005 | 448 |
46 | Rate of combustion of size-graded fractions of char from a low-rank coal between 1 200°K and 2 000°K | Combustion and Flame | 1969 | 446 |
47 | Scalar profiles and NO formation in laminar opposed-flow partially premixed methane/air flames | Combustion and Flame | 2001 | 441 |
48 | A unified model for the prediction of laminar flame transfer functions | Combustion and Flame | 2003 | 437 |
49 | Nonlinear effects in the extraction of laminar flame speeds from expanding spherical flames | Combustion and Flame | 2009 | 436 |
50 | Soot oxidation | Combustion and Flame | 2003 | 435 |