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- W2753222020 endingPage "120" @default.
- W2753222020 startingPage "107" @default.
- W2753222020 abstract "Use of lean or ultra-lean air-fuel ratios is an efficient and proven strategy to reduce fuel consumption and pollutant emissions. Previous works indicate that lean burn mixtures improves engine thermal efficiency by improving combustion quality, reducing heat transfer losses and increasing the possibility of apply higher compression ratios. However, lower fuel concentration in cylinder hinders mixture ignition, requiring greater energy to start combustion. To favor the ignition process, several high energy providers methods have been studied. Between them, prechamber ignition system presents potential reductions in emission levels and fuel consumption, operating with lean burn mixtures and expressive combustion stability. In this paper, a literature review has been made about prechamber ignition systems as lean combustion technology, focusing in the several investigations regarding combustion and emissions characteristics and presenting the key advantages and challenges in prechamber ignition technology application. From this review can be observed that the pre-chamber ignition system is an important way to increase thermal efficiency, reduce fuel consumption and emissions in spark ignition engines." @default.
- W2753222020 created "2017-09-15" @default.
- W2753222020 creator A5011528084 @default.
- W2753222020 creator A5036972419 @default.
- W2753222020 creator A5052326887 @default.
- W2753222020 creator A5076368731 @default.
- W2753222020 creator A5083396836 @default.
- W2753222020 date "2018-01-01" @default.
- W2753222020 modified "2023-10-18" @default.
- W2753222020 title "A review of prechamber ignition systems as lean combustion technology for SI engines" @default.
- W2753222020 cites W130107515 @default.
- W2753222020 cites W1482184935 @default.
- W2753222020 cites W1496099166 @default.
- W2753222020 cites W1502281984 @default.
- W2753222020 cites W1506196967 @default.
- W2753222020 cites W1508259903 @default.
- W2753222020 cites W1509604450 @default.
- W2753222020 cites W1509919236 @default.
- W2753222020 cites W1520846971 @default.
- W2753222020 cites W1522070760 @default.
- W2753222020 cites W1524171411 @default.
- W2753222020 cites W1526890799 @default.
- W2753222020 cites W1556729763 @default.
- W2753222020 cites W1564324799 @default.
- W2753222020 cites W1564487912 @default.
- W2753222020 cites W1568452607 @default.
- W2753222020 cites W1572417785 @default.
- W2753222020 cites W1579422736 @default.
- W2753222020 cites W1581924711 @default.
- W2753222020 cites W1587456735 @default.
- W2753222020 cites W1589766133 @default.
- W2753222020 cites W1607703519 @default.
- W2753222020 cites W1964170778 @default.
- W2753222020 cites W196622999 @default.
- W2753222020 cites W1966443904 @default.
- W2753222020 cites W1970694385 @default.
- W2753222020 cites W1983182502 @default.
- W2753222020 cites W1984557426 @default.
- W2753222020 cites W1984827721 @default.
- W2753222020 cites W1986235872 @default.
- W2753222020 cites W1990345520 @default.
- W2753222020 cites W1991449843 @default.
- W2753222020 cites W1997557453 @default.
- W2753222020 cites W2001596782 @default.
- W2753222020 cites W2016105852 @default.
- W2753222020 cites W2030030342 @default.
- W2753222020 cites W2030300935 @default.
- W2753222020 cites W2033559858 @default.
- W2753222020 cites W2036434871 @default.
- W2753222020 cites W2036763588 @default.
- W2753222020 cites W2045999181 @default.
- W2753222020 cites W2056139319 @default.
- W2753222020 cites W2056373974 @default.
- W2753222020 cites W2057935732 @default.
- W2753222020 cites W2063156767 @default.
- W2753222020 cites W2073157816 @default.
- W2753222020 cites W2079467738 @default.
- W2753222020 cites W2080509640 @default.
- W2753222020 cites W2081981664 @default.
- W2753222020 cites W2084795145 @default.
- W2753222020 cites W2094276037 @default.
- W2753222020 cites W2118569634 @default.
- W2753222020 cites W2136323975 @default.
- W2753222020 cites W2145501833 @default.
- W2753222020 cites W2222357056 @default.
- W2753222020 cites W2225506445 @default.
- W2753222020 cites W2235195110 @default.
- W2753222020 cites W2236351244 @default.
- W2753222020 cites W2239841358 @default.
- W2753222020 cites W2242881139 @default.
- W2753222020 cites W2243391909 @default.
- W2753222020 cites W2247000306 @default.
- W2753222020 cites W2247297882 @default.
- W2753222020 cites W2252467471 @default.
- W2753222020 cites W2271652248 @default.
- W2753222020 cites W2272505931 @default.
- W2753222020 cites W2272708729 @default.
- W2753222020 cites W2276193312 @default.
- W2753222020 cites W2277235283 @default.
- W2753222020 cites W2282787506 @default.
- W2753222020 cites W2285852300 @default.
- W2753222020 cites W2294113725 @default.
- W2753222020 cites W2294985245 @default.
- W2753222020 cites W2295731487 @default.
- W2753222020 cites W2297112530 @default.
- W2753222020 cites W2300393054 @default.
- W2753222020 cites W2302201967 @default.
- W2753222020 cites W2306398686 @default.
- W2753222020 cites W2346503194 @default.
- W2753222020 cites W2432383803 @default.
- W2753222020 cites W2520861683 @default.
- W2753222020 cites W2558175547 @default.
- W2753222020 cites W335202 @default.
- W2753222020 cites W4246018115 @default.
- W2753222020 cites W4361804392 @default.
- W2753222020 cites W560343910 @default.
- W2753222020 cites W2231574234 @default.
- W2753222020 doi "https://doi.org/10.1016/j.applthermaleng.2017.08.118" @default.