the outer surface temperature of the furnace should be kept below 45°C. Based on the above information, determine the number of radiation shield that should be placed in parallel in the surface front. Assume all the surfaces have the same emissivity of 0.1 and

Elements Of Electromagnetics
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(b) Consider a furnace that is situated in a room with
surrounding air temperature of 30°C and an average
Furnace
front
Tsur = 30°C
convection coefficient of 10 W/m2°C. Convection and
2 = 0.1
radiation heat transfer occur between the furnace outer
surface and the surroundings. The furnace front is made
Air, 30°C
h = 10 W/m2-K
of two parallel plates, where the inner plate has a
temperature of 600°C. To ensure safety and prevent
Radiation
shields
thermal burn on the people working around the furnace,
the outer surface temperature of the furnace should be
kept below 45°C. Based on the above information,
determine the number of radiation shield that should be
T= 600°C
T<45°C
placed in parallel in the surface front.
Assume all the surfaces have the same emissivity of 0.1 and show different steps of
calculations with necessary diagrams.
Transcribed Image Text:(b) Consider a furnace that is situated in a room with surrounding air temperature of 30°C and an average Furnace front Tsur = 30°C convection coefficient of 10 W/m2°C. Convection and 2 = 0.1 radiation heat transfer occur between the furnace outer surface and the surroundings. The furnace front is made Air, 30°C h = 10 W/m2-K of two parallel plates, where the inner plate has a temperature of 600°C. To ensure safety and prevent Radiation shields thermal burn on the people working around the furnace, the outer surface temperature of the furnace should be kept below 45°C. Based on the above information, determine the number of radiation shield that should be T= 600°C T<45°C placed in parallel in the surface front. Assume all the surfaces have the same emissivity of 0.1 and show different steps of calculations with necessary diagrams.
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