A series of composite wall of a furnace consists of 20cm of firebrick, 15cm of a  high temperature insulating material, 12cm of ordinary brick, and lastly, 8mm of  asbestos cement board. The inside of the furnace wall is 100C. Determine the heat  transfer through the wall per m². Firebrick k=1.4W/m-K High temperature insulation k = 0.22 W/m-K Ordinary brick k = 0.90 W/m-K Asbestos k = 0.39 W/m-K

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Chapter14: Heat And Heat Transfer Methods
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A series of composite wall of a furnace consists of 20cm of firebrick, 15cm of a  high temperature insulating material, 12cm of ordinary brick, and lastly, 8mm of  asbestos cement board. The inside of the furnace wall is 100C. Determine the heat  transfer through the wall per m².

Firebrick k=1.4W/m-K

High temperature insulation k = 0.22 W/m-K

Ordinary brick k = 0.90 W/m-K

Asbestos k = 0.39 W/m-K

3. A series of composite wall of a furnace consists of 20cm of firebrick, 15cm of a
high temperature insulating material, 12 cm of ordinary brick, and lastly, 8mm of
asbestos cement board. The inside of the furnace wall is 100C. Determine the heat
transfer through the wall per m².
Firebrick
k=1.4W/m-K
High temperature insulation k = 0.22 W/m-K
Ordinary brick
k = 0.90 W/m-K
Asbestos
k = 0.39 W/m-K
Transcribed Image Text:3. A series of composite wall of a furnace consists of 20cm of firebrick, 15cm of a high temperature insulating material, 12 cm of ordinary brick, and lastly, 8mm of asbestos cement board. The inside of the furnace wall is 100C. Determine the heat transfer through the wall per m². Firebrick k=1.4W/m-K High temperature insulation k = 0.22 W/m-K Ordinary brick k = 0.90 W/m-K Asbestos k = 0.39 W/m-K
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