Question

Assuming that the fluid enters to the pump with no shock / no swirl, construct the...

Assuming that the fluid enters to the pump with no shock / no swirl, construct the

velocity triangles at both inner and outer diameters of the impeller for the case where the

blade angle at the outlet is:

a. β2 = 90o , and

b. β2 = 130o

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

Assuming fluid enters to pump with no shock no whird, ( for blade angle at outlet, B2 = 90° 90 B-0-90 We vra Vro Ire, V. B=0(b) for black angle at outlet , ß2 = 1300 Vwz H Voz ver Vri u Dif Bar = 130, then Ving fine. Outlet flow relative vel velocitFor any doubt ask in comment box.

Add a comment
Know the answer?
Add Answer to:
Assuming that the fluid enters to the pump with no shock / no swirl, construct the...
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
  • The rotor shown below rotates with an angular velocity of 2000 rpm. Assume that the fluid...

    The rotor shown below rotates with an angular velocity of 2000 rpm. Assume that the fluid enters in the radial direction and the relative velocity is tangent to the blades across the entire rotor. Find the exit normal velocity (ft/s) and exit velocity of the blade in terms of inlet. Draw the inlet and outlet velocity triangles. Is the device a pump or a turbine? Explain. Hint: create a velocity triangle at (1) and (2) and compare them. Does the...

  • The centrifugal pump as described in Q5.8 is operating with a pre-whirl of 10° (i.e. Ui is inclin...

    The centrifugal pump as described in Q5.8 is operating with a pre-whirl of 10° (i.e. Ui is inclined by 10° from the radial axis in the rotational direction). The centrifugal pump delivers 0.45 m3/s ofwater when it is running at the angular velocity of ω-1200 rpm Sketch the velocity triangles at inlet and exit of the impeller and hence determine the following items by assuming (a) negligible losses; and (b) Vi enters the impeller with θ| and V2 leaves with...

  • Question 3 Show that the pressure head rise in the impeller of a centrifugal pump when...

    Question 3 Show that the pressure head rise in the impeller of a centrifugal pump when frictional and other losses in the impeler are neglected, is given by (a) where Vni is the velocity of flow at the inlet, while at the outlet of the backward curved blades, u2, m2, and ßz are the blade velocity, velocity of flow and blade angle, respectively. (4 marks) A centrifugal pump rotating at 1450 rpm discharges 0.015 m'ls of water. Its impeller has...

  • 4. The following table shows data for a commercial centrifugal water pump where the symbols have...

    4. The following table shows data for a commercial centrifugal water pump where the symbols have the usual meanings: Dimension Inlet Outlet Radius (r) 100 mm 180 mm Impeller Width (b) 45 mm 45 mm Impeller Blade Angle (B) 30° 20° Speed = 1440 rpm Determine the following, drawing the relevant velocity triangles where appropriate: (a) The Design-point discharge [13 marks] (b) The water power requirement [10 marks) (c) The head [2 marks]

  • (b) A centrifugal pump rotates at 750 rpm. Water enters the impeller normal to the blades...

    (b) A centrifugal pump rotates at 750 rpm. Water enters the impeller normal to the blades (GJ 0°) and exits at an angle of 35° from radial (α,- 35°). The inlet radius is r12.0 cm, at which the blade width bi 18.0 cm. The outlet radius is r2 24.0 cm, at which the blade width b 16.2 cm. The volume flow rate is 0.573 m/s. Assuming 100 percent efficiency. Given density of water to be 998 kg/m3 i Calculate the...

  • Please answer question 7: A centrifugal pump discharges 500 GPM through a 12-inch diameter impeller.  The fluid...

    Please answer question 7: A centrifugal pump discharges 500 GPM through a 12-inch diameter impeller.  The fluid leaves the impeller with a tangential velocity of 17 ft/sec.  If water, @ 68°F, enters the impeller via radial flow (I.E. no whirl), and the inner radius and thickness of the impeller are 1.75-inches.  (Assume a constant thickness of the impeller) and if the pump speed is 1775 rpm, with a head loss of 4.5-feet.  What is the horsepower input to the flow by the pump? QUESTION...

  • QUESTION 3 n angle of 220 to the tangent as shown in the figure 1. The area of the outer periphery is 0.65 m, the pump...

    QUESTION 3 n angle of 220 to the tangent as shown in the figure 1. The area of the outer periphery is 0.65 m, the pump discharges Centrifugal pump impeller has an outer diameter of 15 m and rotating at 210 RPM The outlet vane angle 1550 L/s and the flow at inlet is radial. The exit velocity triangle of this question is shown in Figure 2. set back at Centrifugal impeller with backward facing vane Figure (ы 2 W....

  • QUESTION 3 shown in the figure 1. The area of the outer periphery is 0.65 m, the pump discharges 1550 L/s and the o st...

    QUESTION 3 shown in the figure 1. The area of the outer periphery is 0.65 m, the pump discharges 1550 L/s and the o st inlet is radial The exit velocity trianosie of thie quectin is shoun in Eiour h outlet vane angle is set back at an angle of 220 to the tangent a Fiqure 1: Centri fugal impeller with backward facing vane (b) (a) W2 (d) (c) U, Figure 2: Valocity triangles of a centrifugal impeller with velocily)...

  • please solve 5(b) and 6 (a and b) fluid machinery b)An inward flow reaction turbine works under a head of 100m. The inlet and outlet diameters of the runner are 1.2 m and 0.6 m, respectively. The...

    please solve 5(b) and 6 (a and b) fluid machinery b)An inward flow reaction turbine works under a head of 100m. The inlet and outlet diameters of the runner are 1.2 m and 0.6 m, respectively. The width of the runner is 150 mm, which is constant throughout. The velocity of flow at the outlet is 6 m/s. The blade angle at the outlet is 15. The hydraulic efficiency is 0.9. Calculate the following: ) The speed of the Turbine...

  • just now i sent this questions. this is the answer given. however the answer i afraid...

    just now i sent this questions. this is the answer given. however the answer i afraid that he used formula that is not for constant surface temperature and noncircular formula. this is the formula foe the noncircular tube. because the question ask about triangle. my problem is, i cannot answer question 1(b) that ask the heat transfer coefficient, h. please help me. thank you. this pic is a note on constant surface temperature. page 482 ref: HEAT AND MASS TRANSFER:...

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