Question

k elbow 0.9 600mm oppe- L loodels m K 10m 5m Pune Relative Raghness Sump Pipe k 0.0001 Dlamets Legth 500mm 10m 600mm 1000mm P

mechanical efficiency is 80% . Calculate the required pump power

0 0
Add a comment Improve this question Transcribed image text
Answer #1

0 ellow A pl b B²600 0.9 Q = 1000kg/s 12.525m) K 1200 M elbow (0.9 given values are Pelative Roughmess Pipe k El Dia 500 MB=0@ Leto find regono Ids no - for flow Rek = p VE Dk ML Mo=1.002 pais - TD00 X0S -X103 1.002 x103 Dynamic Viscosity Rex = 25423 fk friction ( 290 ) factor pipe K = 0.0230 fl, friction factor pipe L=0.02234 by Net head required by pump = elavation +friNet head = 4+2.3815+ 0.6332 H = 9.9511 Net power required for 8011. Efficient pump S Рg x QXPHI 08 1000X 9.81 X1 X 9.9517 0.8

Add a comment
Know the answer?
Add Answer to:
mechanical efficiency is 80% . Calculate the required pump power k elbow 0.9 600mm oppe- L...
Your Answer:

Post as a guest

Your Name:

What's your source?

Earn Coins

Coins can be redeemed for fabulous gifts.

Not the answer you're looking for? Ask your own homework help question. Our experts will answer your question WITHIN MINUTES for Free.
Similar Homework Help Questions
  • Water is to be transferred within the pump system. Calculate the required pump power if the...

    Water is to be transferred within the pump system. Calculate the required pump power if the mechanical efficiency is 80%. k ellow -0.9 appe=600mm L a loodgl, m K 12m 10m 5m Pune Relative Raghness Sump Pipe k Pipe L 0.0001 Dlanetor Length 500mm 10m 600mm 1000mm 0.0001

  • (b) If the pump efficiency in the above question 4(a) is 80%, calculate the power input...

    (b) If the pump efficiency in the above question 4(a) is 80%, calculate the power input (Pin) to the pump. (4 points)

  • 1 A pump delivers water from the lower reservoir to the upper reservoir at a rate of 60 L/s. Both...

    1 A pump delivers water from the lower reservoir to the upper reservoir at a rate of 60 L/s. Both the suction and discharge pipes are DN 150 schedule 40steel pipe. The length of the suction pipe leading to the pump is 3.5 m, and 7 m of discharge pipe extend from the pump outlet to the upper tank. There are three standard 900 elbows and a fully open gate valve. The depth of the fluid level inside the lower...

  • please solve it step by step with details thank you!!!!! Water is to be pumped from...

    please solve it step by step with details thank you!!!!! Water is to be pumped from one large, open tank to a second large open tank as shown in Figure 1. The pipe diameter throughout is 15 cm and the total length of the pipe between the pipe entrance and exit is 60 m. Minor loss coefficient for the entrance, exit and the elbow are shown, and the Darcy friction factor for the pipe can be assumed constant and equal...

  • Problem 3. Find the required power to pump 0.1 m/s of liquid. (s = 0,85, v...

    Problem 3. Find the required power to pump 0.1 m/s of liquid. (s = 0,85, v = 10m2/s). The pump is operating at an efficiency n = 0.75 Line 1 : L1 = 10 m, D=0.20 m, f = 0.03, K1 = 0.5, Ky = 1 Line 2: L2 = 500 m, D=0.25 m, f = 0.03, Ke = 0.25, K2 = 2 el 20 m Line 2 el 10 m Line 1 Problem 5. A 20-inch steel pipe that...

  • Water at 50 °F is pumped from pond 1 to pond 2. Calculate the volumetric flow...

    Water at 50 °F is pumped from pond 1 to pond 2. Calculate the volumetric flow rate and pump power for the following given information Patm h Opump Patm ... Total pipe length: /=500 ft Pipe diameter: d=8 in Pipe material: new cast iron Elbow type: flanged, 90° regular Valve type: globe, flanged, fully open Inlet and Exit type: sudden, Fig. 6.22 Pump head: hp 250 ft Pump efficiency: np=0.85 h-200 ft F (velocity, ft/s x diameter. (Vd) for water...

  • Water at 50 °Fis circulated from a large tank, through a filter, and back to the...

    Water at 50 °Fis circulated from a large tank, through a filter, and back to the tank Calculate the volumetric flow rate through the filter for the following given information: Patm V.. Valve Pump Filter Pump power: W=200 lbf.ft/s Pump efficiency: 1p-0.9 Total pipe length: /= 200 ft Pipe diameter: d=0.1 ft Pipe surface relative roughness: /d=0.01 Elbow loss factor (each): Kelbow=1.5 Valve loss factor: Kvalve-6 Inlet and Exit type: sudden, Fig. 6.22 Filter loss factor Kriter=12 F (velocity, ft/s...

ADVERTISEMENT
Free Homework Help App
Download From Google Play
Scan Your Homework
to Get Instant Free Answers
Need Online Homework Help?
Ask a Question
Get Answers For Free
Most questions answered within 3 hours.
ADVERTISEMENT
ADVERTISEMENT
ADVERTISEMENT