Calculate the actual velocity of the jet

Assignment Help Mechanical Engineering
Reference no: EM13745922

Question 1. It is found experimentally that the terminal velocity ut art of a spherical particle in a fluid depends upon the diameter d of particle, the dynamic viscosity p of fluid and the buoyancy weight W of the particle [given by the difference in density between the particle and the fluid (op) x gravitational acceleration (g)]. Determine the nature of the relationship between these variables.

Question 2. (a) Water (density 1000 kg m-3) is maintained at a gauge pressure of 4 MPa in a horizontal pipe of diameter 100 mm. It is passed through a nozzle of diameter 15 mm which discharges a horizontal jet into the atmosphere. If the frictional losses reduce the theoretical discharge velocity by 6% in this process, calculate the actual velocity of the jet and its flow rate in kg s-1 .

(b) This jet strikes an upward curved vane moving at 15 m s-1 in a horizontal direction away from the jet, which deflects the water through an angle of 120°. The impact is shockless. Calculate:

(i) the magnitude and direction of the velocity of the fluid leaving the vane
(ii) the thrust on the vane in a horizontal direction
(iii) the thrust on the vane in a vertical direction
(iv) the power generated by the impact in the horizontal direction.

Question 3. (a) Distinguish, with the aid of simple sketches where appropriate, between the construction, operation and applications of the Pelton wheel, Francis turbine and Kaplan turbine.

(b) In a Francis turbine, the supply head (H) is 20 m of water (density 1000 kg m-3). The discharge rate to atmosphere is 600 kg s-1. The external radius of the runner (R1) is 0.43 in and the internal radius (R2) is 0.20 m. The runner blades are radial at inlet and they rotate at 300 revs min-1. The blades occupy 5% of the circumferential area and are shaped to ensure that the radial velocity (u1R) is kept constant and equal to 0.2√2gH.

If the shaft power is 80% of the water power, determine the:

(i) guide vane angle

(ii) blade exit angle

(iii) water power

(iv) diagram power

(v) shaft power

(vi) height of runner blade at inlet and outlet.

Question 4. A centrifugal pump has the following pressure - capacity characteristics:

 

Pressure (kPa)

500

495

490

480

465

455

420

395

360

325

285

Capacity (m3h-1)

0

25

50

75

100

125

150

175

200

225

250

It is planned to use this for a process having the following system characteristic:

 

Pressure (kPa)

350

370

400

435

465

505

545

595

660

725

800

Capacity (m3 h-1 )

0

25

50

75

100

125

150

175

200

225

250


(a) Determine the operating point for this pump with this system.

(b) The actual flowrate required by the process is 50 m3 h-1. If the overall efficiency of the pump at this flowrate is 70%, determine the power consumed when the liquid being pumped has a density of 1200 kg m-3.

(c) A second pump is available which has the following characteristics:

 

Pressure (kPa)

400

395

390

380

370

360

345

320

305

280

255

Capacity (n3 VI )

0

25

50

75

100

125

150

175

200

225

250

For the same flowrate (50 m3 h-1), this pump has an overall efficiency of 80%.

(i) Determine the power used by this pump at a flowrate of 50 m h-1.

(ii) Would it be a better choice? Give reasons for your answer.

(iii) What other factors should be considered before a final choice is made?

Question 5. A process requires the precise control of the flow of a fluid to a reactor operating at 100 bar pressure (I bar = 100 kPa). The flowrate may need to change to match the required reactor output. The flow should be relatively non-pulsating.

(i) Suggest a suitable pump for this duty. Give reasons for your choice.

(ii) Describe, with the aid of a suitable diagram, the construction and operation of your chosen pump.

Question 6. It is proposed to pump 1500 m3 of a liquid (density 1100 kg m-3) each day through a total head of 10 m (including all losses) by using either a centrifugal pump or a reciprocating pump.

The centrifugal pump discharges 2.0 m3 min-1 when driven by an electric motor supplying a power of 5 kW.

The reciprocating pump has a discharge rate of 1.75 m3 min-1 when driven by an electric motor supplying 3.5 kW.

(a) Calculate the efficiency of each pump.

(b) If electricity costs 8p per kWh, select the most economical pump and determine the cost saving over 300 days of operation.

(c) State two other factors which should be considered before a final choice of pump is made.

Reference no: EM13745922

Questions Cloud

How does kinematic viscosity differ from dynamic viscosity : How does kinematic viscosity differ from dynamic viscosity and explain why viscosity is an important property in Fluid Mechanics.
How michelangelo represent principle of renaissancesculpture : how does michelangelo's David represent the principles of High Renaissance sculpture? How do these principles work today? 200-300 words.
Calculate reynolds number for the process : Calculate Reynolds number for the process and hence the head loss due to friction. State any assumptions made and calculate the minor head losses for the system using both the equivalent length method and the number of velocity heads method.
The dark matter of the genome : Topic-The Dark matter of the Genome: Operating Instructions for the Tool Kit
Calculate the actual velocity of the jet : Determine the nature of the relationship between these variables - calculate the actual velocity of the jet and its flow rate in kg s-1 .
What choices architects make when designing a building : Architects make many artistic choices when designing a building.What are some of these choices? Describe In 200-300 words.
Assignment on strategic management and project selection : Strategically, what must Pan-Europa do to keep from becoming the victim of a hostile takeover? What should· Pan-Europa do now that they have won the price war? Who should lead the way for Pan-Europa?
Where the dragon laid her eggs : Where the Dragon Laid Her Eggs
Describe the event and speculate about the purpose of attack : Describe the event and speculate about the purpose of the attack. How has the event changed behaviors or policies within the country attacked or its neighbors and allies?

Reviews

Write a Review

Mechanical Engineering Questions & Answers

  Calculate the power output of the engine

A water brake is used to measure the power output of an engine, ?W . The water mass flow rate through the brake is m? = 7 kg s?1. Water temperatures at the brake inlet and outlet are T1 = 290K and T2 = 305K, respectively. The heat loss from the engin..

  What is the k.e. of the satellite

A satellite has been placed in a circular, sun-synchronous orbit at an altitude of 1300.0 km. The satellite has a mass of 5,000.0 kg. What is the K.E. of the satellite?

  A gas-turbine power plant operates on a simple ideal

a gas-turbine power plant operates on a simple ideal brayton cycle with air as the working fluid. the air enters the

  Calculate the average heat transfer coefficient over

Atmospheric air at T = 40°C with a free stream velocity u = 8 m/s flows along a flat plate L = 3 m long which is maintained at a uniform temperature of 100°C. Calculate the average heat transfer coefficient over t

  Assuming cold air standard assumptions for a spark ignition

assuming cold air standard assumptions for a spark ignition engine cycle otto and given the following data compression

  Calculate the heat involved in the process

A disc 40 cm in diameter and 5 cm thick is to be cast using pure aluminium in an open mould operation. The melting point of aluminium is 660°C, and the pouring temperature will be 800°C.

  Nitrogen at 900 kpa and 300 degree c is expanded

nitrogen at 900 kpa and 300 degree c is expanded adiabatically in a closed system to 100 kpa. determine the minimum

  If b maintains its constant speed while a begins to

when two cars a and b are next to one another they are traveling in the same direction with speeds va and vb

  Calculate valve overlap in crank angle for operational speed

A small five-cylinder CI automobile engine operates with a variable valve timing control system without a camshaft. At operational speed of 3500rpm the intake valve opens 32deg bTDC and closes 57deg aBDC. The exhaust valve opens 52deg bBDC and closes..

  The humidity ratio leaving the cooling coil

Hot, moist outside air passes over a cooling coil, from which it exits in a saturated state at p=14.7lbf/in^2 and T=65F. The air is then mixed adiabatically with room air at p=14.7lbf/in^2, T=75F, phi=25%.

  Determine the mass of the refrigerant in kilogram

A 2-m^3 rigid tank contains refrigerant-134a vapor at 1.4 MPa, 180C. Determine the mass of the refrigerant in kilogram using:

  Roast can be considered as a spherical shape and it is

a 5-lb roast initial at 70degf is placed in an oven at 350degf. you may assume the heat transfer coefficient is 2.5

Free Assignment Quote

Assured A++ Grade

Get guaranteed satisfaction & time on delivery in every assignment order you paid with us! We ensure premium quality solution document along with free turntin report!

All rights reserved! Copyrights ©2019-2020 ExpertsMind IT Educational Pvt Ltd