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Evaluation of the effects of injection timing and rate-shape on diesel low temperature combustion using advanced CFD modeling

Authors
Shuai, ShijinAbani, NeeravYoshikawa, TakeshiReitz, Rolf D.Park, Sung Wook
Issue Date
Jul-2009
Publisher
ELSEVIER SCI LTD
Keywords
Low temperature combustion; Injection timing; Injection rate-shape
Citation
FUEL, v.88, no.7, pp.1235 - 1244
Indexed
SCIE
SCOPUS
Journal Title
FUEL
Volume
88
Number
7
Start Page
1235
End Page
1244
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/176566
DOI
10.1016/j.fuel.2009.01.012
ISSN
0016-2361
Abstract
It is well known that injection strategies including the injection timing and the injection rate-shape play an important role in determining engine performance, especially pollutant emissions. But how the injection timing and the injection rate-shape quantitatively affect the performance of diesel low temperature combustion (LTC) is still not well understood. In this paper, the KIVA-CHEMKIN computational fluid dynamics (CFD) code with an improved spray model is used to simulate the spray and combustion processes of diesel LTC with early and late injection timings and seven different injection rate-shapes. The validation of the models is based on comparisons with laser diagnostic and in-cylinder pressure data under a low load operating condition. It is concluded that the use of early injection provides lower soot, HC and CO emissions but higher NOx emissions Than the late injection. A rectangular-type (case l) and boot-type (case 4) injection rate-shape displays the potential to reduce the soot, HC and CO emissions compared the other generic rate-shapes considered.
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