Rifat Keribar
Purdue University
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Featured researches published by Rifat Keribar.
SAE transactions | 1985
Thomas Morel; Rifat Keribar
A new model for convective in-cylinder heat transfer has been developed which calculates heat transfer coefficients based on a description of the in-cylinder flow field. The combustion chamber volume is divided into three regions in which differential equations for angular momentum, turbulent kinetic energy and turbulent dissipation are solved. The resultant heat transfer coefficients are strongly spatially non-uniform, unlike those calculated from standard correlations, which assume spatial uniformity. When spatially averaged, the heat transfer coefficient is much more peaked near TDC of the compression stroke as compared to that predicted by standard correlations. This is due to the models dependence on gas velocity and turbulence, both of which are amplified near TDC. The new model allows a more accurate calculation of the spatial distribution of the heat fluxes. This capability is essential for calculation of heat transfer and of component thermal loading and temperatures.
SAE 2000 World Congress | 2000
Christopher Ciesla; Rifat Keribar; Thomas Morel
Journal of Tribology-transactions of The Asme | 1994
Zafer Dursunkaya; Rifat Keribar; Venkatesh Ganapathy
SAE 2003 World Congress & Exhibition | 2003
Thomas Morel; Rifat Keribar; Andy Leonard
SAE International Congress and Exposition | 1988
Thomas Morel; Rifat Keribar; Paul N. Blumberg
SAE transactions | 1986
Thomas Morel; Rifat Keribar; Paul N. Blumberg; Edward F. Fort
SAE transactions | 1987
Rifat Keribar; Thomas Morel
SAE International Congress and Exposition | 1985
Thomas Morel; Rifat Keribar; Paul N. Blumberg
SAE transactions | 1986
Thomas Morel; Rifat Keribar
Archive | 1988
Rifat Keribar; Thomas Morel