TECHNICAL PAPERS

Application of a Flow Field Based Heat Transfer Model to Hydrogen Internal Combustion Engines

Date Published: 2009-04-20
Paper Number: 2009-01-1423
DOI: 10.4271/2009-01-1423

Citation:

Nefischer, A., Hallmannsegger, M., Wimmer, A., and Pirker, G., "Application of a Flow Field Based Heat Transfer Model to Hydrogen Internal Combustion Engines," SAE Int. J. Engines 2(1):1251-1264, 2009, doi:10.4271/2009-01-1423.

Author(s):


Adolf Nefischer - BMW Group Research and Technology
Michael Hallmannsegger - BMW Group Research and Technology
Andreas Wimmer - Graz Univ. of Technology
Gerhard Pirker - Large Engines Competence Center

Abstract:

A realistic modeling of the wall heat transfer is essential for an accurate analysis and simulation of the working cycle of internal combustion engines. Empirical heat transfer formulations still dominate the application in engine process simulations because of their simplicity. However, experiments have shown that existing correlations do not provide satisfactory results for all the possible operation modes of hydrogen internal combustion engines.

File Size: 813K

Product Status: In Stock

Included in: SP-2251

See papers presented at SAE World Congress & Exhibition, April 2009, Detroit, MI, USA, Session: Hydrogen IC Engines

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