Find the speed of flow (a) in the lower section and (b) in the upper section. (c) Find the volume flow rate through the pipe. Ans. ( (a) 0.638 m/s (b) 2.55 m/s (c) 1.80 x 10-3 m3

Principles of Heat Transfer (Activate Learning with these NEW titles from Engineering!)
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Author:Kreith, Frank; Manglik, Raj M.
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Chapter5: Analysis Of Convection Heat Transfer
Section: Chapter Questions
Problem 5.3P: Evaluate the Nusselt number for flow over a sphere for the following conditions: D=0.15m,k=0.2W/mK,...
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Water moves through a constricted pipe in steady,
ideal flow. At the lower point shown in the figure, the
pressure is P1 = 1.75x104
Pa and the pipe diameter is
6.00 cm. At another point y = 0.250 m higher, the
pressure is P2 = 1.20 x 104
Pa and the pipe diameter is
3.00 cm. Find the speed of flow (a) in the lower section
and (b) in the upper section.
(c) Find the volume flow rate through the pipe.
Ans. ( (a) 0.638 m/s (b) 2.55 m/s (c) 1.80 x 10-3 m3
/s ).

Water moves through a constricted pipe in steady,
ideal flow. At the lower point shown in the figure, the
pressure is P1 = 1.75x10' Pa and the pipe diameter is
6.00 cm. At another point y = 0.250 m higher, the
pressure is P2 = 1.20 x 10ª Pa and the pipe diameter is
3.00 cm. Find the speed of flow (a) in the lower section
and (b) in the upper section.
(c) Find the volume flow rate through the pipe.
Figure P14.42
1:51 PM
A 9 4) ENG
4/20/2021
11
Transcribed Image Text:Water moves through a constricted pipe in steady, ideal flow. At the lower point shown in the figure, the pressure is P1 = 1.75x10' Pa and the pipe diameter is 6.00 cm. At another point y = 0.250 m higher, the pressure is P2 = 1.20 x 10ª Pa and the pipe diameter is 3.00 cm. Find the speed of flow (a) in the lower section and (b) in the upper section. (c) Find the volume flow rate through the pipe. Figure P14.42 1:51 PM A 9 4) ENG 4/20/2021 11
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