Answer:
A) 12,960 J
B) 1178.9 W/m³
C)171⁰C
Step-by-step explanation:
A)
The energy balance equation of the process is "Rate of heat dissipated from the element = Rate of heat energy coming out of the system".
Q = Q' t
where Q' = 0.15 W, and t = 24 hour = 86,400sec
Q = 0.15W x 86,400sec = 12,960J
B)
heat flux is q' = Q'/A
Where A = πDL + 2(πD²/4) given that L = 0.3cm, D = 1.2cm.
Q' = 0.15 W
substituting all parameters into the bellow equation.
q' = Q'/[πDL + 2(πD²/4)]
q' = 1178.9W/m³
C)
Surface temperature q' = h (Tₐ-Tₙ) where:
h = combined heat transfer coefficient, Tₐ = Surface Temperature, Tₙ = Surrounding Temperature.
substituting for q' = 1178.9W/m³, h = 9 W/m2 ·K, Tₙ = 40°C in the above equation.
Tₐ = 171°C