. Oil enters a 1.25-cm diameter,3-m long tube at 38°C. The tube wall is maintained at 66°C, and flow velocity is 0.3 m/s. What is the total heat transfer to the oil and oil exit temperature? Assume an exit temperature of 50°C. Temperature (°C). p(kg/m³) u (kg/m sec) С, Jhg "C) k(W/m °C) 867.05 0.210 0.0725 0.144 0.140 0.138 40 1964 60 864.04 2047 80 852.02 0.0320 2131
. Oil enters a 1.25-cm diameter,3-m long tube at 38°C. The tube wall is maintained at 66°C, and flow velocity is 0.3 m/s. What is the total heat transfer to the oil and oil exit temperature? Assume an exit temperature of 50°C. Temperature (°C). p(kg/m³) u (kg/m sec) С, Jhg "C) k(W/m °C) 867.05 0.210 0.0725 0.144 0.140 0.138 40 1964 60 864.04 2047 80 852.02 0.0320 2131
Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
Section: Chapter Questions
Problem 1.1MA
Related questions
Question
![. Oil enters a 1.25-cm diameter,3-m long tube at 38°C. The tube wall is maintained at 66°C, and
flow velocity is 0.3 m/s. What is the total heat transfer to the oil and oil exit temperature? Assume
an exit temperature of 50°C.
Temperature (°C)
p(kg/m³)
u (kg/m sec)
Cp J/hg °C)
k(W/m °C)
0.210
0.0725
0.0320
40
0.144
867.05
864.04
1964
60
2047
0.140
80
852.02
2131
0.138](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F426042b7-854b-4316-8bab-10794fa80326%2F2da3342c-a184-40f5-b322-a7e6fdbc435c%2Fnvxw35d_processed.png&w=3840&q=75)
Transcribed Image Text:. Oil enters a 1.25-cm diameter,3-m long tube at 38°C. The tube wall is maintained at 66°C, and
flow velocity is 0.3 m/s. What is the total heat transfer to the oil and oil exit temperature? Assume
an exit temperature of 50°C.
Temperature (°C)
p(kg/m³)
u (kg/m sec)
Cp J/hg °C)
k(W/m °C)
0.210
0.0725
0.0320
40
0.144
867.05
864.04
1964
60
2047
0.140
80
852.02
2131
0.138
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