High-speed imaging, spectroscopy and thermodynamical characterization are applied to an optically accessible, heavy-duty diesel engine in order to compare sooting and chemiluminescence behaviour of bio-derived, oxygenated fuels and various reference fuels. The fuels concerned include the bio-derived fuels Jatropha oil (pure), Jatropha-methylester (JME) and rapeseed-methylester (RME), all containing ??10%mass oxygen, and fossil oxygenated fuels tripropyleneglycolmonomethylether (TPGME) and cyclohexanone, both mixed with synthetic fuel to have similar total oxygen content. Commercial diesel, model fuel IDEA, a Fischer-Tropsch synthetic fuel (FT) and a blend containing cyclohexane serve as reference fuels. The start of hot combustion is derive...
High-speed imaging and thermodynamical characterization are applied to an optically accessible, heav...
Contains fulltext : 75850.pdf (publisher's version ) (Closed access)9 p
Global climate change drives research and implementation of low-carbon fuels. Engine combustion imag...
High-speed imaging, spectroscopy and thermodynamical characterization are applied to an optically ac...
High-speed imaging, spectroscopy and thermodynamical characterization are applied to an optically ac...
High-speed imaging, spectroscopy and thermodynamical characterization are applied to an optically ac...
High-speed imaging, spectroscopy and thermodynamical characterization are applied to an optically ac...
High-speed imaging, spectroscopy and thermodynamical characterization are applied to an optically ac...
High-speed imaging, spectroscopy and thermodynamical characterization are applied to an optically ac...
High-speed imaging, spectroscopy and thermodynamical characterization are applied to an optically ac...
High-speed imaging and thermodynamical characterization are applied to an optically accessible, heav...
High-speed imaging and thermodynamical characterization are applied to an optically accessible, heav...
High-speed imaging and thermodynamical characterization are applied to an optically accessible, heav...
High-speed imaging and thermodynamical characterization are applied to an optically accessible, heav...
High-speed imaging and thermodynamical characterization are applied to an optically accessible, heav...
High-speed imaging and thermodynamical characterization are applied to an optically accessible, heav...
Contains fulltext : 75850.pdf (publisher's version ) (Closed access)9 p
Global climate change drives research and implementation of low-carbon fuels. Engine combustion imag...
High-speed imaging, spectroscopy and thermodynamical characterization are applied to an optically ac...
High-speed imaging, spectroscopy and thermodynamical characterization are applied to an optically ac...
High-speed imaging, spectroscopy and thermodynamical characterization are applied to an optically ac...
High-speed imaging, spectroscopy and thermodynamical characterization are applied to an optically ac...
High-speed imaging, spectroscopy and thermodynamical characterization are applied to an optically ac...
High-speed imaging, spectroscopy and thermodynamical characterization are applied to an optically ac...
High-speed imaging, spectroscopy and thermodynamical characterization are applied to an optically ac...
High-speed imaging and thermodynamical characterization are applied to an optically accessible, heav...
High-speed imaging and thermodynamical characterization are applied to an optically accessible, heav...
High-speed imaging and thermodynamical characterization are applied to an optically accessible, heav...
High-speed imaging and thermodynamical characterization are applied to an optically accessible, heav...
High-speed imaging and thermodynamical characterization are applied to an optically accessible, heav...
High-speed imaging and thermodynamical characterization are applied to an optically accessible, heav...
Contains fulltext : 75850.pdf (publisher's version ) (Closed access)9 p
Global climate change drives research and implementation of low-carbon fuels. Engine combustion imag...