A 12-m-long and 5-m-high wall is constructed of two layers of 1 -cm-thick sheetrock ( k = 0.17 W/m .K ) and spaced 16 cm by wood studs ( k = 0.11 W/m .K ) and whose cross section is 16 cm × 5 cm . The studs are placed vertically 60 cm apart, and the space between them is filled with fiberglass insulation ( k = 0.034 W/m .K ) . and The house is maintained at 20°C and the ambient temperature outside is -9°C. Taking the heat transfer coefficients at the inner and outer surfaces of the house to be 8.3 and 34 W/m 2 -K, respectively, determine (a) the thermal resistance of the wall considering a representative section of it and (b) the rate of heat transfer through the wall.
A 12-m-long and 5-m-high wall is constructed of two layers of 1 -cm-thick sheetrock ( k = 0.17 W/m .K ) and spaced 16 cm by wood studs ( k = 0.11 W/m .K ) and whose cross section is 16 cm × 5 cm . The studs are placed vertically 60 cm apart, and the space between them is filled with fiberglass insulation ( k = 0.034 W/m .K ) . and The house is maintained at 20°C and the ambient temperature outside is -9°C. Taking the heat transfer coefficients at the inner and outer surfaces of the house to be 8.3 and 34 W/m 2 -K, respectively, determine (a) the thermal resistance of the wall considering a representative section of it and (b) the rate of heat transfer through the wall.
Solution Summary: The author explains the thermal resistance of the wall.
A 12-m-long and 5-m-high wall is constructed of two layers of 1 -cm-thick sheetrock
(
k
=
0.17
W/m
.K
)
and spaced 16 cm by wood studs
(
k
=
0.11
W/m
.K
)
and whose cross section is
16 cm
×
5 cm
. The studs are placed vertically 60 cm apart, and the space between them is filled with fiberglass insulation
(
k
=
0.034
W/m
.K
)
.
and The house is maintained at 20°C and the ambient temperature outside is -9°C. Taking the heat transfer coefficients at the inner and outer surfaces of the house to be 8.3 and 34 W/m2 -K, respectively, determine (a) the thermal resistance of the wall considering a representative section of it and (b) the rate of heat transfer through the wall.
2: A rectangular aluminum block is loaded uniformly in three directions. The loadings are as follows:a 50 kN total resulting compressive load in the x-direction, a 200 kPa uniformly distributed tensile load in they-direction, and a 0.03 MN total resulting tensile load in the z-direction. The block has the following dimensions:L = 1 m, b = 20 cm, h = 350 mm. Use E = 70 GPa and ν = 0.25.Determine the strain in the x and y axes respectively. For the strain in the y-direction to be equal to 0, how much uniformly distributed load inthe surface of y-direction should be added? (+ for tensile, - for compressive)
Answers:
5 -1.122 x10-5 / 3 decimals
6 5.102 x10-6 / 3 decimals
7 -0.357 MPa / 3 decimals
A spherical balloon with a diameter of 9 m is filled with water vapour at 200˚C and 200 kPa. Determine the mass of water in the balloon. The R value for water is 0.4615 kJ/kg∙K.
Correct answers are written below. Detailed and correct solution only with fbd. I will upvote.
1: A 3 m alloy shaft fixed at one end has a torsional shearing stress capacity of 55 MPa. Due to improper fabrication, its cross-sectionalarea has become irregularly shaped. Its effective polar moment of inertia has become 2 x10-7 m4, and the maximum torque stress acts at 7.5 cm fromthe center of the shaft.[1]: If the shaft is to be replaced by a properly manufactured solid circular shaft that has a maximumshearing stress capacity of 70 MN/m2, what is the minimum diameter required so it can withstand the sameload? [2]: Calculate the thickness of a hollow circular shaft with the same outside diameter calculated initem [1] that can carry the same load. Limit the maximum shearing stress of the hollow circular shaft to0.09 GPa.Determine the angle of twist on the free end of the shaft. Use G = 150 x103 GPa. [3]: Use the solidcircular shaft from [1] and use the hollow circular shaft from [2].…
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