Radiation is considered to be an important mode of heat transfer in diesel
engines, It is mainly caused by a presence of soot particles in combustion
gases. Spatial distribution of radiative heat flux on walls of the combusti
on chamber can be an important factor of thermal load of some parts of the
engine. The paper presents a numerical method used for solution of integral
equations resulting from mathematical description of variation of radiativ
e heal flux on the walls of the combustion chamber. The charge in the chamb
er has been divided into the burned and the unburned zones. Shape and volum
e of the burned zone as well of the combustion chamber are varying accordin
g to variation in a crank angle during the whole combustion process. Compar
ison between numerical results obtained for opaque and semi-transparent bur
ned zone is made. Influence of a degree of the burned zone transparency, th
e crank angle value and wall emissivity variation on the radiative heat flu
x distribution on different parts of the chamber surface has been presented
.