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Combustion 2 Retarded injection timing 2 Biodiesel 1 Diesel 1 Diesel and B20 pilot fuels 1 Diesel engine 1 Dual-fuel engine 1 EGR 1 Emission 1 Emissions 1 Hydrogen 1 Performance 1 Retarded injection 1 Waste plastic oil 1 Water injection 1
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Chintala, V. 1 Mani, M. 1 Megaritis, A. 1 Nagarajan, G. 1 Subramanian, K.A. 1 Theinnoi, K. 1 Tsolakis, A. 1 Wyszynski, M.L. 1
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Energy 2 Applied Energy 1
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RePEc 3
Showing 1 - 3 of 3
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An effort to enhance hydrogen energy share in a compression ignition engine under dual-fuel mode using low temperature combustion strategies
Chintala, V.; Subramanian, K.A. - In: Applied Energy 146 (2015) C, pp. 174-183
) and B20 dual-fuel mode (BDM); and LTC strategies of retarded injection timing dual-fuel mode (RDM) and water injected dual …
Persistent link: https://www.econbiz.de/10011263340
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Influence of injection timing on performance, emission and combustion characteristics of a DI diesel engine running on waste plastic oil
Mani, M.; Nagarajan, G. - In: Energy 34 (2009) 10, pp. 1617-1623
° BTDC the retarded injection timing of 14° bTDC resulted in decreased oxides of nitrogen, carbon monoxide and unburned …
Persistent link: https://www.econbiz.de/10011055692
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Engine performance and emissions of a diesel engine operating on diesel-RME (rapeseed methyl ester) blends with EGR (exhaust gas recirculation)
Tsolakis, A.; Megaritis, A.; Wyszynski, M.L.; Theinnoi, K. - In: Energy 32 (2007) 11, pp. 2072-2080
The effects of biodiesel (rapeseed methyl ester, RME) and different diesel/RME blends on the diesel engine NOx emissions, smoke, fuel consumption, engine efficiency, cylinder pressure and net heat release rate are analysed and presented. The combustion of RME as pure fuel or blended with diesel...
Persistent link: https://www.econbiz.de/10010808419
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