A tvolayer wall is made of two metal plates, with surface roughness of about 25 μ m , pressed together at an average pressure of 10 MPa. The first layer isa stainless steel plate with a thickness of 5 mm and a thcnnal conductivity of 14 W/mK. The second layer is an aluminum plate with a thickness of 15 mm and a thermal conductivity of 237 W/mK. On the stainless steel side of the wall, the surface is subjected to a heat flux of 800 Wm 2 . On the aluminum side of the wall, the surface experiences convection heat transfer at an ambient temperature of 20°C. where the convection coefficient is 12 W/m 2 K. Detemiine the surface temperature of the stainless steel plate.
A tvolayer wall is made of two metal plates, with surface roughness of about 25 μ m , pressed together at an average pressure of 10 MPa. The first layer isa stainless steel plate with a thickness of 5 mm and a thcnnal conductivity of 14 W/mK. The second layer is an aluminum plate with a thickness of 15 mm and a thermal conductivity of 237 W/mK. On the stainless steel side of the wall, the surface is subjected to a heat flux of 800 Wm 2 . On the aluminum side of the wall, the surface experiences convection heat transfer at an ambient temperature of 20°C. where the convection coefficient is 12 W/m 2 K. Detemiine the surface temperature of the stainless steel plate.
Solution Summary: The author explains that the surface temperature of stainless-steel plate is 87.27 0 C.
A tvolayer wall is made of two metal plates, with surface roughness of about 25
μ
m
, pressed together at an average pressure of 10 MPa. The first layer isa stainless steel plate with a thickness of 5 mm and a thcnnal conductivity of 14 W/mK. The second layer is an aluminum plate with a thickness of 15 mm and a thermal conductivity of 237 W/mK. On the stainless steel side of the wall, the surface is subjected to a heat flux of 800 Wm2 . On the aluminum side of the wall, the surface experiences convection heat transfer at an ambient temperature of 20°C. where the convection coefficient is 12 W/m2 K. Detemiine the surface temperature of the stainless steel plate.
It is designed in such a way that the internal temperature of a commercial heat treatment furnace can reach up to 165 oC. All surfaces of the furnace consist of firebrick (10 cm), insulation material and sheet metal (3mm) from the inside out. Given that the outdoor temperature is 22 oC, the outer sheet will be allowed to go up to 35 oC, which is a temperature that will not be disturbed by hand contact. In this case, determine the insulation material thickness to be used. Insulation material thermal conductivity coefficient is 0.066 insulation W / m oC, 60 W / m oC for sheet metal and 115 W / m oC for firebrick. Indoor heat transfer coefficient will be accepted as 25 W / m2 oC and 12 W / m2 oC for outdoor environment.
The wall of a house is 7m wide and 6m high and is made from 0.3 m thick brick with a coefficient of thermal conductivity k = 0.6 W/m-K. The surface temperature inside the house is 6°C and that on the outside is 18°C. Find the amount of heat flow on the wall.
It is designed in such a way that the internal temperature of a commercial heat treatment furnace can reach up to 165 oC. All surfaces of the furnace consist of firebrick (10 cm), insulation material and sheet metal (3mm) from the inside out. Given that the outdoor temperature is 22 oC, the outer sheet will be allowed to go up to 35 oC, which is a temperature that will not disturb in contact with hands. In this case, determine the insulation material thickness to be used. The thermal conductivity coefficient of the insulation material is insulation 0.066 W / m oC, 60 W / m oC for sheet metal and 115 W / m oC for firebrick. Indoor heat transfer coefficient will be accepted as 25 W / m2 oC and 12 W / m2 oC for outdoor environment.
Chapter 3 Solutions
Heat and Mass Transfer: Fundamentals and Applications
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