Electric current of 200 A is carried through a 5 mm diameter cylindrical wire which has a resistance of 0.003 ohm per meter length. The wire is exposed to a cross flow of air at 24°C and its surface temperature is measured as 40°C. In your calculations, take air properties at 300 K and use the following correlation and constants: Rep m 0.4-4 0.989 0.330 hD 4-40 0.911 0.385 Nup k = C Re, Pr 40-4000 0.683 0.466 4000– 40,000 0.193 0.618 40,000 – 400,000 0.027 0.805 Calculate the average heat transfer coefficient in W/m2K Calculate the air velocity in m/s

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Electric current of 200 A is carried through a 5 mm diameter cylindrical wire which has a
resistance of 0.003 ohm per meter length. The wire is exposed to a cross flow of air at
24°C and its surface temperature is measured as 40°C. In your calculations, take air
properties at 300 K and use the following correlation and constants:
Rep
C
m
0.4-4
0.989
0.330
Nup
hD
C Re, Pr3
0.911
0.385
4-40
k
40–4000
0.683
0.466
4000– 40,000
0.193
0.618
40,000– 400,000
0.027
0.805
Calculate the average heat transfer coefficient in W/m2K
Calculate the air velocity in m/s
358.3 397.6|| 429.9|| 477.7
537.4
587.9|| 612.1
43.4
50.8
68.2
80.9
92.3
97.9
113.2
Transcribed Image Text:Electric current of 200 A is carried through a 5 mm diameter cylindrical wire which has a resistance of 0.003 ohm per meter length. The wire is exposed to a cross flow of air at 24°C and its surface temperature is measured as 40°C. In your calculations, take air properties at 300 K and use the following correlation and constants: Rep C m 0.4-4 0.989 0.330 Nup hD C Re, Pr3 0.911 0.385 4-40 k 40–4000 0.683 0.466 4000– 40,000 0.193 0.618 40,000– 400,000 0.027 0.805 Calculate the average heat transfer coefficient in W/m2K Calculate the air velocity in m/s 358.3 397.6|| 429.9|| 477.7 537.4 587.9|| 612.1 43.4 50.8 68.2 80.9 92.3 97.9 113.2
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