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Development of Novel Direct-injection Diesel Engine Combustion Chamber Designs Using Computational Fluid Dynamics University of Wisconsin-Madison
- Format:
- Conference/Event
- Author/Creator:
- Senecal, P. K., author.
- Conference Name:
- International Spring Fuels & Lubricants Meeting & Exposition (1997-05-05 : Dearborn, Michigan, United States)
- Language:
- English
- Physical Description:
- 1 online resource
- Place of Publication:
- Warrendale, PA SAE International 1997
- Summary:
- AbstractA, three-dimensional CFD code, based on the KIVA code, is used to explore alternatives to conventional DI diesel engine designs for reducing NOx and soot emissions without sacrificing engine performance. The effects of combustion chamber design and fuel spray orientation are investigated using a new proposed GAMMA engine concept, and two new multiple injector combustion system (MICS) designs which utilize multiple injectors to increase gas motion and enhance fuel/air mixing in the combustion chamber. From these computational studies, it is found that both soot and nitrous oxide emissions can be significantly reduced without the need for more conventional emission control strategies such as EGR or ultra high injection pressure. The results suggest that CFD models can be a useful tool not only for understanding combustion and emissions production, but also for investigating new design concepts
- Notes:
- Vendor supplied data
- Publisher Number:
- 971594
- Access Restriction:
- Restricted for use by site license
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