A composite wall, measuring 8m width by 2.5m height, consists of 3 layers of different materials. These layers are constructed as shown in the diagram below. The external surface temperatures of layer 1 and layer 3 are 32°C and minus 6°C respectively. The thermal conductivities of layer 1, 2 and 3 are 0.3, 0.05 and 0.2 W/mK respectively. If the temperatures are at thermal equilibrium, calculate temperatures T2 & T3, heat flux through the material layers and the total heat transfer rate through the composite wall.

College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter11: Energy In Thermal Processes
Section: Chapter Questions
Problem 48P: A thermopane window consists of two glass panes, each 0.50 cm thick, with a 1.0-cm-thick sealed...
icon
Related questions
icon
Concept explainers
Question
11. A composite wall, measuring 8m width by 2.5m height, consists of 3 layers of
different materials. These layers are constructed as shown in the diagram
below. The external surface temperatures of layer 1 and layer 3 are 32°C
and minus 6°C respectively. The thermal conductivities of layer 1, 2 and 3
are 0.3, 0.05 and 0.2 W/mK respectively. If the temperatures are at thermal
equilibrium, calculate temperatures T2 & T3, heat flux through the material
layers and the total heat transfer rate through the composite wall.
2.5 m
T₁ = 32°C
60 mm-
8m
Layer 1
Layer 2
100 mm
Layer 3
T₂
20 mm
T3
T4 = -6°C
(Ans: T2= 28.7°C, T3= -4.35°C, q-16.52W/m², Q-330.4W)
Transcribed Image Text:11. A composite wall, measuring 8m width by 2.5m height, consists of 3 layers of different materials. These layers are constructed as shown in the diagram below. The external surface temperatures of layer 1 and layer 3 are 32°C and minus 6°C respectively. The thermal conductivities of layer 1, 2 and 3 are 0.3, 0.05 and 0.2 W/mK respectively. If the temperatures are at thermal equilibrium, calculate temperatures T2 & T3, heat flux through the material layers and the total heat transfer rate through the composite wall. 2.5 m T₁ = 32°C 60 mm- 8m Layer 1 Layer 2 100 mm Layer 3 T₂ 20 mm T3 T4 = -6°C (Ans: T2= 28.7°C, T3= -4.35°C, q-16.52W/m², Q-330.4W)
Expert Solution
steps

Step by step

Solved in 3 steps with 3 images

Blurred answer
Knowledge Booster
Energy transfer
Learn more about
Need a deep-dive on the concept behind this application? Look no further. Learn more about this topic, physics and related others by exploring similar questions and additional content below.
Similar questions
  • SEE MORE QUESTIONS
Recommended textbooks for you
College Physics
College Physics
Physics
ISBN:
9781305952300
Author:
Raymond A. Serway, Chris Vuille
Publisher:
Cengage Learning
Physics for Scientists and Engineers, Technology …
Physics for Scientists and Engineers, Technology …
Physics
ISBN:
9781305116399
Author:
Raymond A. Serway, John W. Jewett
Publisher:
Cengage Learning
College Physics
College Physics
Physics
ISBN:
9781285737027
Author:
Raymond A. Serway, Chris Vuille
Publisher:
Cengage Learning
Principles of Physics: A Calculus-Based Text
Principles of Physics: A Calculus-Based Text
Physics
ISBN:
9781133104261
Author:
Raymond A. Serway, John W. Jewett
Publisher:
Cengage Learning
University Physics Volume 2
University Physics Volume 2
Physics
ISBN:
9781938168161
Author:
OpenStax
Publisher:
OpenStax
College Physics
College Physics
Physics
ISBN:
9781938168000
Author:
Paul Peter Urone, Roger Hinrichs
Publisher:
OpenStax College