average temperature average flow velocity of m/s, Is flowing by pipeline with an inner diameter of 35 mm and a length of 15 m. Determine the heat transfer coefficient of the oil to the pipe wall, assuming that the average temperature of the pipe wall is 60°C. Oil properties are known, at 80°C: p=840 kg/m3, c,=1,926 kJ/(kg-K), n=0,233 Pa-s, R=0,179 W/(m-K).

Elements Of Electromagnetics
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Author:Sadiku, Matthew N. O.
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(7) Oil with an average temperature of 80°C at an average flow velocity of 0,5 m/s, is
flowing by pipeline with an inner diameter of 35 mm and a length of 15 m. Determine
the heat transfer coefficient of the oil to the pipe wall, assuming that the average
temperature of the pipe wall is 60°C.
Oil properties are known, at 80°C: p=840 kg/m³, c,=1,926 kJ/(kg-K), n=0,233 Pa-s,
1=0,179 W/(m-K).
Transcribed Image Text:(7) Oil with an average temperature of 80°C at an average flow velocity of 0,5 m/s, is flowing by pipeline with an inner diameter of 35 mm and a length of 15 m. Determine the heat transfer coefficient of the oil to the pipe wall, assuming that the average temperature of the pipe wall is 60°C. Oil properties are known, at 80°C: p=840 kg/m³, c,=1,926 kJ/(kg-K), n=0,233 Pa-s, 1=0,179 W/(m-K).
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