科技报告详细信息
Advanced fuel chemistry for advanced engines.
Taatjes, Craig A. ; Jusinski, Leonard E. ; Zador, Judit ; Fernandes, Ravi X. ; Miller, James A.
Sandia National Laboratories
关键词: Pressure Dependence;    02 Petroleum;    Autoignition;    Engines;    Oxidation;   
DOI  :  10.2172/993879
RP-ID  :  SAND2009-6051
RP-ID  :  AC04-94AL85000
RP-ID  :  993879
美国|英语
来源: UNT Digital Library
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【 摘 要 】

Autoignition chemistry is central to predictive modeling of many advanced engine designs that combine high efficiency and low inherent pollutant emissions. This chemistry, and especially its pressure dependence, is poorly known for fuels derived from heavy petroleum and for biofuels, both of which are becoming increasingly prominent in the nation's fuel stream. We have investigated the pressure dependence of key ignition reactions for a series of molecules representative of non-traditional and alternative fuels. These investigations combined experimental characterization of hydroxyl radical production in well-controlled photolytically initiated oxidation and a hybrid modeling strategy that linked detailed quantum chemistry and computational kinetics of critical reactions with rate-equation models of the global chemical system. Comprehensive mechanisms for autoignition generally ignore the pressure dependence of branching fractions in the important alkyl + O{sub 2} reaction systems; however we have demonstrated that pressure-dependent 'formally direct' pathways persist at in-cylinder pressures.

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