The radiation contributions to heat transfer in circulating fluidized beds are investigated based on a simple model involving clusters and dilute suspension. Local and length-averaged cluster transfer coefficients are derived based on a cluster renewal model with combined transient conduction and radiation. A three-component network is analyzed leading to a concise relation for the suspension-to-wall radiative transfer. Previous experimental data for heat transfer to a membrane wall with bed temperatures of 407 and 860°C (Wu et al., 1989) are in good agreement with model predictions.
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Acad of Sciences of the Byelorussian, SSR, Minsk, USSR, Acad of Sciences of the Byelorussian SSR, Minsk, USSRAcad of Sciences of the Byelorussian, SSR, Minsk, USSR, Acad of Sciences of the Byelorussian SSR, Minsk, USSR
Borodulya, V.A.
Ganzha, V.L.
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Acad of Sciences of the Byelorussian, SSR, Minsk, USSR, Acad of Sciences of the Byelorussian SSR, Minsk, USSRAcad of Sciences of the Byelorussian, SSR, Minsk, USSR, Acad of Sciences of the Byelorussian SSR, Minsk, USSR
Ganzha, V.L.
Teplitskii, Yu.S.
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Acad of Sciences of the Byelorussian, SSR, Minsk, USSR, Acad of Sciences of the Byelorussian SSR, Minsk, USSRAcad of Sciences of the Byelorussian, SSR, Minsk, USSR, Acad of Sciences of the Byelorussian SSR, Minsk, USSR
Teplitskii, Yu.S.
Epanov, Yu.G.
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Acad of Sciences of the Byelorussian, SSR, Minsk, USSR, Acad of Sciences of the Byelorussian SSR, Minsk, USSRAcad of Sciences of the Byelorussian, SSR, Minsk, USSR, Acad of Sciences of the Byelorussian SSR, Minsk, USSR