Aliquid with density 1010 kg/m³ and viscosity 1.2 mPa.s drains from a building through commercial steel pipe (I.D. 2.54 cm) to a pond as shown in the following Figure. The pipe is made of three segments as shown in the following Figure. (P1) 21 m Segment A L-25 m 6422 8551 8963 7532 17 m Segment B L=40 m Oh = 4m. 6 m Segment C L=7 m Iculate the Reynold's number for this flow. (P3) (P4) The pressures are measured at points P1, P2, P3, and P4. The pressure at the inlet 1) is 141 kPa and Patm = 101 kPa. The speed of the liquid through Segment A is 0.40 v/s. Pond

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A liquid with density 1010 kg/m³ and viscosity 1.2 mPa.s drains from a building through
a commercial steel pipe (I.D. 2.54 cm) to a pond as shown in the following Figure. The
pipe is made of three segments as shown in the following Figure.
(P1)
T
21 m
17 m
O
6422
8551
8963
7532
Segment A
L-25 m
Segment B
L=40 m
-Oh = 4m.
6 m
Segment C
L=7 m
Calculate the Reynold's number for this flow.
(P3) (P4)
The pressures are measured at points P1, P2, P3, and P4. The pressure at the inlet
(P1) is 141 kPa and Patm = 101 kPa. The speed of the liquid through Segment A is 0.40
m/s.
Pond
Transcribed Image Text:A liquid with density 1010 kg/m³ and viscosity 1.2 mPa.s drains from a building through a commercial steel pipe (I.D. 2.54 cm) to a pond as shown in the following Figure. The pipe is made of three segments as shown in the following Figure. (P1) T 21 m 17 m O 6422 8551 8963 7532 Segment A L-25 m Segment B L=40 m -Oh = 4m. 6 m Segment C L=7 m Calculate the Reynold's number for this flow. (P3) (P4) The pressures are measured at points P1, P2, P3, and P4. The pressure at the inlet (P1) is 141 kPa and Patm = 101 kPa. The speed of the liquid through Segment A is 0.40 m/s. Pond
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