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Journal article

Modeling the condensation of sulfuric acid and water on the cylinder liner of a large two-stroke marine diesel engine

From

Department of Mechanical Engineering, Technical University of Denmark1

Thermal Energy, Department of Mechanical Engineering, Technical University of Denmark2

MAN Diesel and Turbo3

Corrosive wear of cylinder liners in large two-stroke marine diesel engines that burn heavy fuel oil containing sulfur is coupled to the formation of gaseous sulfur trioxide (SO3) and subsequent combined condensation of sulfuric acid (H2SO4) and water (H2O) vapor. The present work seeks to address how fuel sulfur content, charge air humidity and liner temperature variations affects the deposition of water and sulfuric acid at low load operation.

A phenomenological engine model is applied to simulate the formation of cylinder/bulk gas combustion products and dew points comply with H2O–H2SO4 vapor liquid equilibrium. By assuming homogenous cylinder gas mixtures condensation is modeled using a convective heat and mass transfer analogy combined with realistic liner temperature profiles.

Condensation of water is significantly altered by the liner temperature and charge air humidity while sulfuric acid condensation (the order is a few mg per cylinder every cycle) is proportional to the fuel sulfur content. Condensation takes place primarily in the upper part of the cylinder liner where a reduction of the surface temperature or saturated charge air provides that the deposited acid can be highly diluted with water.

Language: English
Publisher: Springer Japan
Year: 2018
Pages: 178-187
Journal subtitle: Official Journal of the Japan Society of Naval Architects and Ocean Engineers (jasnaoe)
ISSN: 14378213 , 09484280 , 27096998 and 10232796
Types: Journal article
DOI: 10.1007/s00773-017-0455-9
ORCIDs: Cordtz, Rasmus Faurskov and Schramm, Jesper

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