TECHNICAL PAPERS

Development, Implementation, and Validation of a Fuel Impingement Model for Direct Injected Fuels with High Enthalpy of Vaporization

Date Published: 2009-04-20
Paper Number: 2009-01-0306
DOI: 10.4271/2009-01-0306

Citation:

Marriott, C., Wiles, M., and Rouse, B., "Development, Implementation, and Validation of a Fuel Impingement Model for Direct Injected Fuels with High Enthalpy of Vaporization," SAE Technical Paper 2009-01-0306, 2009, doi:10.4271/2009-01-0306.

Author(s):

Abstract:

Due to their superior enthalpy of vaporization, the charge cooling benefits of oxygenated fuels have been widely reported in the literature. Spark Ignition Direct Injection (SIDI) engines have the opportunity to maximize this charge cooling effect by controlling the phasing of the in-cylinder fuel vaporization, thus increasing charge density and suppressing auto ignition. Existing fuel vaporization models often over-predicted this charge cooling effect for SIDI applications when heat transfer effects related to impingement of the liquid fuel on combustion chamber surfaces are not considered.

File Size: 561K

Product Status: In Stock

See papers presented at SAE World Congress & Exhibition, April 2009, Detroit, MI, USA, Session: Modeling of SI and Diesel Engines (Part 1 of 7) Engine Breathing, Boosting and NVH

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