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Radiative transfer in circulating fluidized bed furnaces

A.P. Baskakov ; Bo Leckner (Institutionen för energiomvandling)
Powder Technology (0032-5910). Vol. 90 (1997), 3, p. 212-218.
[Artikel, refereegranskad vetenskaplig]

Three methods of estimating Ihe effective emissivily of a gas-particle suspension are eoml~ared and the radiative heat transfer coefficient of an isothermal suspension is defined. Heat flux measurements obtained from circulating fluidized bed comhustors are examined. Radiation from a particle suspension with core temperature dominates the radiative heat transfer in the upper part of the furnace, where the particle density is low and no substantial particle boundary layers are formed. Over the lower pails of the heat transfer surfaces, where significant thermal and particle boundary layers are present, the radiative heat flux is dominated by emission from the relatively low temperature particle layer in the vicinity of the heat receiving surface.

Nyckelord: Circulating fluidized beds; Heal transfer; Radialive heal transfer

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Denna post skapades 2016-06-23. Senast ändrad 2016-08-15.
CPL Pubid: 238150


Institutioner (Chalmers)

Institutionen för energiomvandling (1900-2003)


Termisk energiteknik

Chalmers infrastruktur

Chalmers Kraftcentral (CK)