Simultaneous 36 kHz PLIF/chemiluminescence imaging of fuel, CH 2 O and combustion in a PPC engine
Articolo
Data di Pubblicazione:
2019
Abstract:
The requirements on high efficiency and low emissions of internal combustion engines (ICEs) raise the
research focus on advanced combustion concepts, e.g., premixed-charge compression ignition (PCCI), par-
tially premixed compression ignition (PPCI), reactivity controlled compression ignition (RCCI), partially
premixed combustion (PPC), gasoline compression ignition (GCI) etc. In the present study, an optically accessible
engine is operated in PPC mode, featuring compression ignition of a diluted, stratified charge of
gasoline-like fuel injected directly into the cylinder. A high-speed, high-power burst-mode laser system in
combination with a high-speed CMOS camera is employed for diagnostics of the autoignition process which
is critical for the combustion phasing and efficiency of the engine. To the authors' best knowledge, this work
demonstrates for the first time the application of the burst-system for simultaneous fuel tracer planar laser
induced fluorescence (PLIF) and chemiluminescence imaging in an optical engine, at 36 kHz repetition rate.
In addition, high-speed formaldehyde PLIF and chemiluminescence imaging are employed for investigation
of autoignition events with a high temporal resolution (5 frames/CAD). The development of autoignition
together with fuel or CH 2 O distribution are simultaneously visualized using a large number of consecutive
images. Prior to the onset of combustion the majority of both fuel and CH 2 O are located in the recirculation
zone, where the first autoignition also occurs. The ability to record, in excess of 100 PLIF images, in a single
cycle brings unique possibilities to follow the in-cylinder processes without the averaging effects caused by
cycle-to-cycle variations.
Tipologia CRIS:
01.01 Articolo in rivista
Keywords:
PPC; Autoignition; Ultra-high speed diagnostics; Burst-mode laser; Planar laser induced fluorescence
Elenco autori:
Vaglieco, BIANCA MARIA
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