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    In-cylinder visualization and engine out emissions from CI to PPC for fuels with different properties

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    Type
    Article
    Authors
    An, Yanzhao cc
    Vallinayagam, R.
    Vedharaj, S.
    Masurier, Jean-Baptiste cc
    Najafabadi, Mohammad Izadi
    Somers, Bart
    Johansson, Bengt cc
    KAUST Department
    Clean Combustion Research Center
    Mechanical Engineering Program
    Physical Science and Engineering (PSE) Division
    Date
    2018-02-27
    Online Publication Date
    2018-02-27
    Print Publication Date
    2017
    Permanent link to this record
    http://hdl.handle.net/10754/627451
    
    Metadata
    Show full item record
    Abstract
    This study investigated the transition from conventional Compression Ignition (CI) to Partially Premixed Combustion (PPC) in an optical engine for fuels with differing properties. Combustion stratification and emissions were measured with diesel, naphtha and their corresponding surrogate fuels, N-heptane and PRF50. The aim of the study is to link the combustion images with engine out emissions and mixture homogeneity. Single injection strategy with the change of start of injection (SOI) from late to early injections was employed. Results show that combustion phasing trend is similar for diesel/N-heptane as well as for naphtha/PRF50 as the SOI moved from late injection timing to early injection timing. However, there is a significant difference in combustion phasing behavior for gasoline like fuels (naphtha and PRF50) and diesel fuels (diesel and N-heptane). CO emissions show an inverted V-shaped trend with one single peak in the transition zone. A “W” shape trend, with two bottoms at various dilution rates is observed for the UHC emissions. NOX emissions are high in the transition zone and decreased to lower levels in CI and PPC zones. NOX emissions are significantly reduced by reducing the intake O2 concentration with nitrogen. Except for diesel, the other three fuels show lower soot emissions. When compared to diesel like fuels, the natural luminosity of the images are lower for gasoline like fuels, indicating better premixed combustion. As the SOI is changed from CI to PPC mode, the combustion stratification increases towards a peak value in the transition zone and then decreases to a low level in PPC zone. A competition exists between the intake temperature and the dilution rate for the combustion stratification. The level of stratification is higher for real fuels (diesel and naphtha) when compared to surrogate fuel (N-heptane and PRF50).
    Citation
    An Y, Vallinayagam R, Vedharaj S, Masurier J-B, Najafabadi MI, et al. (2017) In-cylinder visualization and engine out emissions from CI to PPC for fuels with different properties. The Proceedings of the International symposium on diagnostics and modeling of combustion in internal combustion engines 2017.9: C310. Available: http://dx.doi.org/10.1299/jmsesdm.2017.9.c310.
    Publisher
    Japan Society of Mechanical Engineers
    Journal
    The Proceedings of the International symposium on diagnostics and modeling of combustion in internal combustion engines
    DOI
    10.1299/jmsesdm.2017.9.c310
    Additional Links
    https://www.jstage.jst.go.jp/article/jmsesdm/2017.9/0/2017.9_C310/_article
    ae974a485f413a2113503eed53cd6c53
    10.1299/jmsesdm.2017.9.c310
    Scopus Count
    Collections
    Articles; Physical Science and Engineering (PSE) Division; Mechanical Engineering Program; Clean Combustion Research Center

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