Consider the network for a two-dimensional system without internal volumetric generation having nodal temperatures shown below. If the grid spacing is 125 mm and the thermal conductivity of the material is 50 W/m-K, calculate the heat rate per unit length normal to the page from the isothermal surface (Ts). + + 20 3 3. T₁ = 100°C Node T; (°C) 1 120.55 2 120.64 3 121.29 4 123.89 5 134.57 6 150.49 7 147.14 6.70 q' = i W/m

Practical Management Science
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Chapter10: Introduction To Simulation Modeling
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Consider the network for a two-dimensional system without internal volumetric generation having nodal temperatures shown below.
If the grid spacing is 125 mm and the thermal conductivity of the material is 50 W/m-K, calculate the heat rate per unit length normal
to the page from the isothermal surface (Ts).
+
+
20
3
3.
T₁ = 100°C
Node T; (°C)
1
120.55
2
120.64
3
121.29
4
123.89
5
134.57
6
150.49
7
147.14
6.70
q' =
i
W/m
Transcribed Image Text:Consider the network for a two-dimensional system without internal volumetric generation having nodal temperatures shown below. If the grid spacing is 125 mm and the thermal conductivity of the material is 50 W/m-K, calculate the heat rate per unit length normal to the page from the isothermal surface (Ts). + + 20 3 3. T₁ = 100°C Node T; (°C) 1 120.55 2 120.64 3 121.29 4 123.89 5 134.57 6 150.49 7 147.14 6.70 q' = i W/m
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