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Reference Number C5/P42
Title Investigation of 2/4 stroke switching for optimised downsized gasoline engines (2/4 SIGHT)
Status Completed
Energy Categories Energy Efficiency(Transport) 90%;
Hydrogen and Fuel Cells(Hydrogen, Hydrogen end uses (incl. combustion; excl. fuel cells)) 5%;
Renewable Energy Sources(Bio-Energy, Other bio-energy) 5%;
Research Types Applied Research and Development 100%
Science and Technology Fields ENGINEERING AND TECHNOLOGY (Mechanical, Aeronautical and Manufacturing Engineering) 100%
UKERC Cross Cutting Characterisation Sociological economical and environmental impact of energy (Environmental dimensions) 40%;
Not Cross-cutting 50%;
Sociological economical and environmental impact of energy (Technology acceptance) 10%;
Principal Investigator Project Contact
Ricardo Consulting Engineers Ltd
Award Type Standard
Funding Source DfT
Start Date 31 January 2003
End Date 31 March 2004
Duration 14 months
Total Grant Value £199,766
Industrial Sectors Transport
Region South East
Programme DfT Transport Technology and Standards
 
Investigators Principal Investigator Project Contact , Ricardo Consulting Engineers Ltd
Web Site
Objectives The project objectives are to: * identify the optimum combination of cycles and combustion regimes for fuel economy, emissions and driveability * investigate potential mechanisms to facilitate the desired switching of modes in a gasoline engine for passenger car use * quantify the potential benefits of the technology * identify the technology gaps that must be addressed to realise the benefits * define a research programme required to demonstrate the feasibility of the system.
Abstract This project is to undertake a detailed investigation of an engine system capable of switching between 2 and 4 stroke operation and also between spark ignition and homogeneous charge compression ignition (HCCI). Such an engine would address several key technology gaps associated with the use of downsized gasoline engines to meet agreed EU targets for CO2 emissions whilst providing acceptable driveability. The good fuel economy, low emissions and compact proportions of this engine would also make it suitable for hybrid systems integration.
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Added to Database 07/02/08