Experimental and computational analysis of the combustion evolution in direct-injection spark-controlled jet ignition engines fuelled with gaseous fuels

被引:11
作者
Boretti, A. [1 ]
Paudel, R. [1 ]
Tempia, A. [2 ]
机构
[1] Univ Ballarat, Sch Sci & Engn, Ballarat, Vic 3353, Australia
[2] Robert Bosch Australia Pty Ltd, Clayton, Vic, Australia
关键词
gas engines; direct injection; jet ignition; lean-burn stratified combustion; bulk ignition and combustion;
D O I
10.1243/09544070JAUTO1465
中图分类号
TH [机械、仪表工业];
学科分类号
120111 [工业工程];
摘要
Jet ignition and direct fuel injection are potential enablers of higher-efficiency, cleaner internal combustion engines (ICEs), where very lean mixtures of gaseous fuels could be burned with pollutants formation below Euro 6 levels, efficiencies approaching 50 per cent full load, and small efficiency penalties operating part load. The lean-burn direct-injection (DI) jet ignition ICE uses a fuel injection and mixture ignition system consisting of one main-chamber DI fuel injector and one small jet ignition pre-chamber per engine cylinder. The jet ignition pre-chamber is connected to the main chamber through calibrated orifices and accommodates a second DI fuel injector. In the spark plug version, the jet ignition pre-chamber includes a spark plug which ignites the slightly rich pre-chamber mixture which then, in turn, bulk ignites the ultra-lean stratified main-chamber mixture through the multiple jets of hot reacting gases entering the in-cylinder volume. The paper uses coupled computer-aided engineering and computational fluid dynamics (CFD) simulations to provide better details of the operation of the jet ignition pre-chamber (analysed so far with downstream experiments or stand-alone CFD simulations), thus resulting in a better understanding of the complex interactions between chemistry and turbulence that govern the pre-chamber flow and combustion.
引用
收藏
页码:1241 / 1261
页数:21
相关论文
共 29 条
[1]
[Anonymous], 2008, NIST Chem Webbook
[2]
*AUSTR GOV DEP CLI, 2009, AUSTR NAT GREENH GAS
[3]
BEER T, 2000, C041111F2 CSIRO AUST
[4]
BEER T, 2008, EV45A2F3C AUSTR GOV
[5]
Computational analysis of the lean-burn direct-injection jet ignition hydrogen engine [J].
Boretti, A. ;
Watson, H. ;
Tempia, A. .
PROCEEDINGS OF THE INSTITUTION OF MECHANICAL ENGINEERS PART D-JOURNAL OF AUTOMOBILE ENGINEERING, 2010, 224 (D2) :261-269
[6]
Boretti A., 2009, P 15 AS PAC AUT ENG
[7]
Boretti A, 2009, IP Australia Provisional Patent Application, Patent No. [SPEP-11865853, 11865853]
[8]
BORETTI A, 2009, P 2009 SAE POW FUELS
[9]
BORETTI AA, 2009, Patent No. 11928154
[10]
BORETTI AA, 2009, P SAE 2009 INT POW F