In a horizontal water pipe (length L-10 m) inner radius r = 1.25 cm), water flows...
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In a horizontal water pipe (length L-10 m) inner radius r = 1.25 cm), water flows with an inlet temperature of t₁ = 60°C and a velocity of w=0.3 m/s. The water cools down by transferring heat to the inner wall of the pipe. The temperature difference of the water and the wall of the pipe AT = 3K is constant over the length of the pipe. Determine the outlet temperature tour of the water at the end of the pipe. W mx Ki = 4.18. p=983.2- n = 466.03 x 10-6 Pax s; λ = 0.651- kg ma kJ kg. K In a horizontal water pipe (length L-10 m) inner radius r = 1.25 cm), water flows with an inlet temperature of t₁ = 60°C and a velocity of w=0.3 m/s. The water cools down by transferring heat to the inner wall of the pipe. The temperature difference of the water and the wall of the pipe AT = 3K is constant over the length of the pipe. Determine the outlet temperature tour of the water at the end of the pipe. W mx Ki = 4.18. p=983.2- n = 466.03 x 10-6 Pax s; λ = 0.651- kg ma kJ kg. K In a horizontal water pipe (length L-10 m) inner radius r = 1.25 cm), water flows with an inlet temperature of t₁ = 60°C and a velocity of w=0.3 m/s. The water cools down by transferring heat to the inner wall of the pipe. The temperature difference of the water and the wall of the pipe AT = 3K is constant over the length of the pipe. Determine the outlet temperature tour of the water at the end of the pipe. W mx Ki = 4.18. p=983.2- n = 466.03 x 10-6 Pax s; λ = 0.651- kg ma kJ kg. K In a horizontal water pipe (length L-10 m) inner radius r = 1.25 cm), water flows with an inlet temperature of t₁ = 60°C and a velocity of w=0.3 m/s. The water cools down by transferring heat to the inner wall of the pipe. The temperature difference of the water and the wall of the pipe AT = 3K is constant over the length of the pipe. Determine the outlet temperature tour of the water at the end of the pipe. W mx Ki = 4.18. p=983.2- n = 466.03 x 10-6 Pax s; λ = 0.651- kg ma kJ kg. K
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Related Book For
Fundamentals of Investments, Valuation and Management
ISBN: 978-1259720697
8th edition
Authors: Bradford Jordan, Thomas Miller, Steve Dolvin
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