Effects of the cetane number on chemical ignition delay

被引:21
作者
Kim, Keunsoo [1 ]
Lee, Wooyoung [1 ]
Wiersema, Paxton [1 ]
Mayhew, Eric [2 ]
Temme, Jacob [3 ]
Kweon, Chol-Bum M. [3 ]
Lee, Tonghun [1 ]
机构
[1] Univ Illinois, Dept Mech Sci & Engn, Urbana, IL 61801 USA
[2] Combat Capabil Dev Command Army Res Lab, Weap & Mat Res Directorate, Aberdeen Proving Ground, MD 21005 USA
[3] Combat Capabil Dev Command Army Res Lab, Computat & Informat Sci Directorate, Aberdeen Proving Ground, MD 21005 USA
关键词
Autoignition; Ignition delay; Cetane number; Shock tube; Jet fuel; Sustainable aviation fuel (SAF); FUEL COMBUSTION CHEMISTRY; PHYSICS-BASED APPROACH; CONSTANT-VOLUME SPRAY; SHOCK-TUBE; JET FUELS; DIESEL FUEL; N-DECANE; AUTOIGNITION; TEMPERATURE; BEHAVIOR;
D O I
10.1016/j.energy.2022.126263
中图分类号
O414.1 [热力学];
学科分类号
摘要
This study evaluates the effects of cetane number (CN) on autoignition reactivity and chemical ignition delay. Recent interest in sustainable aviation fuels and single-fuel policies in the US necessitates the investigation of the effect of various fuels' properties on combustion. CN is a representative metric quantifying ignition quality across a range of fuels' relevant properties. However, there is no concrete relationship between CN and chemical reactivity. To investigate the impact of CN on combustion characteristics, a set of test fuels have been formulated with varying CNs while maintaining other properties. Fuels were tested in the RCM and shock tube at various conditions. Typically, the reactivity is linearly proportional to the CN. However, the results showed that DCN could not be the sole predictor of ignition delay across the range of thermodynamic conditions relevant to propulsion systems. CN has been used as an indirect marker (or correlation) of chemical composition effects on ignition, and it is known that the DCN correlation breaks down for certain conditions and fuels. The structure of chemical components mainly affects combustion pathways by fuel breakdown, hydrogen abstraction, and isomerization. The results provide a guideline for practical experiments to evaluate the impact of CN on com-bustion characteristics.
引用
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页数:11
相关论文
共 44 条
[1]   Ignition behavior and surrogate modeling of JP-8 and of camelina and tallow hydrotreated renewable jet fuels at low temperatures [J].
Allen, Casey ;
Valco, Daniel ;
Toulson, Elisa ;
Edwards, Tim ;
Lee, Tonghun .
COMBUSTION AND FLAME, 2013, 160 (02) :232-239
[2]   Application of a novel charge preparation approach to testing the autoignition characteristics of JP-8 and camelina hydroprocessed renewable jet fuel in a rapid compression machine [J].
Allen, Casey ;
Toulson, Elisa ;
Edwards, Tim ;
Lee, Tonghun .
COMBUSTION AND FLAME, 2012, 159 (09) :2780-2788
[3]   An aerosol rapid compression machine for studying energetic-nanoparticle-enhanced combustion of liquid fuels [J].
Allen, Casey ;
Mittal, Gaurav ;
Sung, Chih-Jen ;
Toulson, Elisa ;
Lee, Tonghun .
PROCEEDINGS OF THE COMBUSTION INSTITUTE, 2011, 33 :3367-3374
[4]  
ASTM, 2002, ASTM Int, V1, P1, DOI [DOI 10.1520/D3529M-10.2, DOI 10.1520/D4318-17E01]
[5]   Detailed chemical kinetic models for the low-temperature combustion of hydrocarbons with application to gasoline and diesel fuel surrogates [J].
Battin-Leclerc, F. .
PROGRESS IN ENERGY AND COMBUSTION SCIENCE, 2008, 34 (04) :440-498
[6]   Ignition delay times for jet and diesel fuels: Constant volume spray and gas-phase shock tube measurements [J].
Burden, Sean ;
Tekawade, Aniket ;
Oehlschlaeger, Matthew A. .
FUEL, 2018, 219 :312-319
[7]   Understanding Ignition Delay Effects With Pure Component Fuels in a Single-Cylinder Diesel Engine [J].
Caton, Patrick A. ;
Hamilton, Leonard J. ;
Cowart, Jim S. .
JOURNAL OF ENGINEERING FOR GAS TURBINES AND POWER-TRANSACTIONS OF THE ASME, 2011, 133 (03)
[8]   Sustainable Aviation Fuels: the challenge of decarbonization [J].
Chiaramonti, David .
INNOVATIVE SOLUTIONS FOR ENERGY TRANSITIONS, 2019, 158 :1202-1207
[9]   Overview of the National Jet Fuels Combustion Program [J].
Colket, Meredith ;
Heyne, Joshua ;
Rumizen, Mark ;
Gupta, Mohan ;
Edwards, Tim ;
Roquemore, William M. ;
Andac, Gurhan ;
Boehm, Randy ;
Lovett, Jeffery ;
Williams, Randy ;
Condevaux, Jamey ;
Turner, David ;
Rizk, Nader ;
Tishkoff, Julian ;
Li, Chiping ;
Moder, Jeff ;
Friend, Daniel ;
Sankaran, Vaidya .
AIAA JOURNAL, 2017, 55 (04) :1087-1104
[10]  
Farrell J., 2016, Co-optimization of fuels engines