The temperature at the walls of the solid body T(x=0) = T(y=0) = T(z=0) = 100°C. The length of the body is very long in the three directions. The initial temperature of the solid body is 20°C. The solid body is made of materials with the following properties: k = 20 W/m K, p= 900 kg/m', cp 4 kJ/kg K. What will be the temperature at location (x-0.5m, y=lm, z=0.5m) after 5 hours?

Principles of Heat Transfer (Activate Learning with these NEW titles from Engineering!)
8th Edition
ISBN:9781305387102
Author:Kreith, Frank; Manglik, Raj M.
Publisher:Kreith, Frank; Manglik, Raj M.
Chapter5: Analysis Of Convection Heat Transfer
Section: Chapter Questions
Problem 5.67P
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The temperature at the walls of the solid body T(x=0) = T(y=0) = T(z=0) = 100°C. The
length of the body is very long in the three directions. The initial temperature of the solid
body is 20°C. The solid body is made of materials with the following properties: k = 20
W/m K, p = 900 kg/m², cp = 4 kJ/kg K. What will be the temperature at location (x-0.5m,
y=lm, z=0.5m) after 5 hours?
Transcribed Image Text:The temperature at the walls of the solid body T(x=0) = T(y=0) = T(z=0) = 100°C. The length of the body is very long in the three directions. The initial temperature of the solid body is 20°C. The solid body is made of materials with the following properties: k = 20 W/m K, p = 900 kg/m², cp = 4 kJ/kg K. What will be the temperature at location (x-0.5m, y=lm, z=0.5m) after 5 hours?
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