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Published in: Experiments in Fluids 1/2015

01-01-2015 | Research Article

Laser-induced incandescence measurements in a fired diesel engine at 3 kHz

Authors: I. G. Boxx, O. Heinold, K. P. Geigle

Published in: Experiments in Fluids | Issue 1/2015

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Abstract

Laser-induced incandescence (LII) was performed at 3 kHz in an optically accessible cylinder of a fired diesel engine using a commercially available diode-pumped solid-state laser and an intensified CMOS camera. The resulting images, acquired every 3° of crank angle, enabled the spatiotemporal tracking of soot structures during the expansion/exhaust stroke of the engine cycle. The image sequences demonstrate that soot tends to form in thin sheets that propagate and interact with the in-cylinder flow. These sheets tend to align parallel to the central axis of the cylinder and are frequently wrapped into conical spirals by aerodynamic swirl. Most of the soot is observed well away from the cylinder walls. Quantitative soot measurements were beyond the scope of this study but the results demonstrate the practical utility of using kHz-rate LII to acquire ensemble-averaged statistical data with high crank angle resolution over a complete engine cycle. Based on semi-quantitative measures of soot distribution, it was possible to identify soot dynamics related to incomplete charge exchange. This study shows that long-duration, multi-kHz acquisition rate LII measurements are viable in a fired diesel engine with currently available laser and camera technology, albeit only in the expansion and exhaust phase of the cycle at present. Furthermore, such measurements yield useful insight into soot dynamics and therefore constitute an important new tool for the development and optimization of diesel engine technology.

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Metadata
Title
Laser-induced incandescence measurements in a fired diesel engine at 3 kHz
Authors
I. G. Boxx
O. Heinold
K. P. Geigle
Publication date
01-01-2015
Publisher
Springer Berlin Heidelberg
Published in
Experiments in Fluids / Issue 1/2015
Print ISSN: 0723-4864
Electronic ISSN: 1432-1114
DOI
https://doi.org/10.1007/s00348-014-1865-7

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