Fluid Mechanics: Fundamentals and Applications
Fluid Mechanics: Fundamentals and Applications
4th Edition
ISBN: 9781259696534
Author: Yunus A. Cengel Dr., John M. Cimbala
Publisher: McGraw-Hill Education
bartleby

Concept explainers

bartleby

Videos

Textbook Question
Book Icon
Chapter 5, Problem 88P

Underground water is to be pumped by a 78 percent efficient 5-kW submerged pump to a pool whose free surface is 30 m above the underground water level. The diameter of the pipe is 7 cm on the intake side and 5 cm on the discharge side. Detennine (a) the maximum flow rate of water and (b) the pressure difference across the pump. Assume the elevation difference between the pump inlet and the outlet and the effect of the kinetic energy correction factors to be negligible.

Expert Solution
Check Mark
To determine

(a)

The maximum discharge of water.

Answer to Problem 88P

The rate of flow of water is 0.01325m3/s.

Explanation of Solution

Given information:

The efficiency of the pump is 78%, rated power is 5kW, head required to develop is 30m, diameter of the suction pipe is 7cm, and diameter of the delivery pipe is 5cm.

Write the expression for the maximum discharge.

  Q˙=η×Pρ×g×h...........................................................................(I)

Here, discharge is Q˙, efficiency is η, rated power is P, density of water is ρ, acceleration due to gravity is g, and required head is h.

Calculation:

Substitute 78% for η, 5kW for P, 1000kg/m3 for ρ, 9.81m/s2 for acceleration due to gravity and 30m for head required.

  Q˙=78%×5kW( 1000 kg/ m 3 )×( 9.81m/ s 2 )×( 30m)=78%( 1 100 )×5kW×( 1000W 1kW )( 1000 kg/ m 3 )×( 9.81m/ s 2 )×( 30m)=0.78×5000kg m 2/ s 3( 1000 kg/ m 3 )×( 9.81m/ s 2 )×( 30m)=0.01325m3/s

Conclusion:

The maximum rate of flow of water is 0.01325m3/s.

Expert Solution
Check Mark
To determine

(b)

The pressure difference across the pump.

Answer to Problem 88P

The pressure difference across the pump is

Explanation of Solution

Given information:

The efficiency of the pump is 78%, rated power is 5kW, head required to develop is 30m, diameter of the suction pipe is 7cm, and diameter of the delivery pipe is 5cm.

Write the expression for the pressure difference across the pump.

  p2p1=ρ[PρQ˙( V 2 2 V 1 22)]  .......(I)

Here, pressure at suction side is p1, pressure at delivery side is p2. density is ρ, velocity in delivery pipe is V2, velocity in suction pipe is V1, and discharge is Q˙.

  V=4×Q˙π×d2  .......(II)

Here, discharge is Q˙, velocity is V, and diameter of the pipe is d.

Calculation:

Velocity in the suction pipe.

Substitute 0.01325m3/s for Q˙ and 7cm for d in Equation (II).

  V1=4×( 0.01325 m 3 /s )π× ( 7cm )2× ( 1m 100cm )2=3.443m/s

Velocity in the delivery pipe.

Substitute 0.01325m3/s for Q˙ and 5cm for d in Equation (II)

  V2=4×( 0.01325 m 3 /s )π× ( 5cm )2× ( 1m 100cm )2=6.748m/s

Substitute 1000kg/m3 for ρ, 0.78×5kW for P, 0.01325m3/s for Q˙, 3.443m/s for V1 and 6.748m/s for V2.

  p2p1=(1000kg/ m 3)[ 0.78×5kW ( 1000 kg/ m 3 )×( 0.01325 m 3 /s )( ( 6.748 2 m 2 / s 2 )( 3.443 m 2 / s 2 ) 2 )]=(1000kg/ m 3)[ 0.78×5kW( 1000W 1kw ) ( 1000 kg/ m 3 )×( 0.01325 m 3 /s )( ( 6.748 2 m 2 / s 2 )( 3.443 m 2 / s 2 ) 2 )]=(1000kg/ m 3)[ 0.78×5000W ( 1000 kg/ m 3 )×( 0.01325 m 3 /s )( ( 6.748 2 m 2 / s 2 )( 3.443 m 2 / s 2 ) 2 )]=277.5kPa

Conclusion:

The pressure difference across the pump is 277.5kPa.

Want to see more full solutions like this?

Subscribe now to access step-by-step solutions to millions of textbook problems written by subject matter experts!
Students have asked these similar questions
1. A water from Agno River is pumped at 13.3 L/s using a submerged pump at an efficiency of 78% that is discharged to a swimming pool in Itogon which has a free surface of 30 m above the Agno River water level. The pipe that was used has a diameter of 7 cm on the suction line and 5 cm on the discharge line from the pump. Assuming that the elevation difference between the pump inlet and outlet and the effect of the kinetic energy correction factors and frictional losses in piping are negligible, calculate for the following a) Power requirement by the pump in kW b) Pressure difference across the pump c) Pumping cost/day(24 hour) if the electricity cost is P2.00/kW-hr
In rural housing the water source is obtained through groundwater pumped upwards. Suppose the groundwater source has a depth of 60 m from the surface. The water will be lifted as far as 5 m above ground level with a pump. The diameter of the pipe inlet is 10 cm and the outlet is 15 cm.By ignoring the interaction of heat with the environment and heat due to friction, determine the input work (Watt) required by the pump for the water to flow stable at a rate of 15 liters / s. (Water type mass 1000 kg / m ^ 3).  (Application of the 1st Law of Thermodynamics to open systems)
A pump is used to fill a reservoir at an elevation of 40m with a water flow rate of 2 m3 /s. The pump inlet diameter is 40 cm and outlet diameter is 60 cm. The combined pump–motor is 75 percent, and the motor efficiency is 90 percent. Determine the Electrical Power drawn by the motor and the Shaft Power.

Chapter 5 Solutions

Fluid Mechanics: Fundamentals and Applications

Ch. 5 - A desktop computer is to be cooled by a fan whose...Ch. 5 - The minimum fresh air requirement of a residential...Ch. 5 - The ventilating fan of the bathroom of a building...Ch. 5 - Air enters a nozzle steadily at 2.21 kg/m3 and 20...Ch. 5 - Air at 40°C flow steadily through the pipe shown...Ch. 5 - In climates with low night-time temperatures, an...Ch. 5 - What is mechanical energy? How does it differ from...Ch. 5 - Define turbine efficiency, generator efficiency,...Ch. 5 - What is mechanical efficiency? What does a...Ch. 5 - How is the combined pump-motor efficiency of a...Ch. 5 - Prob. 21PCh. 5 - A differential thermocouple with sensors at the...Ch. 5 - Electric power is to be generated by installing a...Ch. 5 - Consider a river flowing toward a lake at an...Ch. 5 - Express the Bernoulli equation in three different...Ch. 5 - What are the three major assumptions used in the...Ch. 5 - Define static, dynamic, and hydrostatic pressure....Ch. 5 - What is streamwise acceleration? How does it...Ch. 5 - What is stagnation pressure? Explain how it can be...Ch. 5 - Define pressure head, velocity head, and elevation...Ch. 5 - How is the location of the hydraulic grade line...Ch. 5 - Prob. 33CPCh. 5 - What is the hydraulic grade line? How does it...Ch. 5 - A glass manometer with oil as the working fluid is...Ch. 5 - The velocity of a fluid flowing in a pipe is to be...Ch. 5 - The water level of a tank on a building roof is 20...Ch. 5 - Prob. 38CPCh. 5 - Prob. 39CPCh. 5 - In a hydroelectric power plant, water enters the...Ch. 5 - A Pitot-static probe is used to measure the speed...Ch. 5 - The air velocity in the duct of a heating system...Ch. 5 - A piezometer and a Pitot tube are tapped into a...Ch. 5 - The diameter of a cylindrical water tank is D0and...Ch. 5 - A siphon pumps water from a large reservoir to a...Ch. 5 - Water flows through a horizontal pipe at a rate of...Ch. 5 - An airplane is flying at an altitude of 10.500 m....Ch. 5 - While traveling on a dirt road, the bottom of a...Ch. 5 - The water in an 8-rn-diameter, 3-rn-high...Ch. 5 - Reconsider Prob. 5-49. Determine how long it will...Ch. 5 - Air at 105 kPa and 37°C flows upward through a...Ch. 5 - Water at 20°C is siphoned from a reservoir as...Ch. 5 - The water pressure in the mains of a city at a...Ch. 5 - A pressurized tank of water has a 10-cm-diameter...Ch. 5 - Air is flowing through a venturi meter whose...Ch. 5 - The water level in a tank is 20 m above the...Ch. 5 - The air velocity in a duct is measured by a...Ch. 5 - In cold climates, water pipes may freeze and burst...Ch. 5 - Prob. 61PCh. 5 - A fluid of density and viscosity flows through a...Ch. 5 - What is the minimum diameter at section (1) to...Ch. 5 - What is irreversible head loss? How is it related...Ch. 5 - What is useful pump head? How is it related to the...Ch. 5 - Consider the steady adiabatic flow of an...Ch. 5 - Consider the steady adiabatic flow of an...Ch. 5 - What is the kinetic energy correction factor? Is...Ch. 5 - The water level in a tank is 20 m above the...Ch. 5 - A 3-rn-high tank filled with water has a discharge...Ch. 5 - A person is filling a knee-high bucket with water...Ch. 5 - Tater is being pumped from a large lake to a...Ch. 5 - A 15-hp (shaft) pump is used to raise water to a...Ch. 5 - Water flows at a rate of 0.040 m3/s in a...Ch. 5 - The water level in a tank is 20 m above the...Ch. 5 - A hydraulic turbine has 50 m of head available at...Ch. 5 - In a hydroelectric power plant, water flows from...Ch. 5 - Reconsider Prob. 5-78E. Determine the flow rate of...Ch. 5 - A fan is to be selected to ventilate a bathroom...Ch. 5 - Water flows at a rate of 20 L/s through a...Ch. 5 - The water level in a tank is 34 ft above the...Ch. 5 - A large tank is initially filled with water 4 m...Ch. 5 - Water enters a hydraulic turbine through a...Ch. 5 - A 78-percent efficient 12-hp pump is pumping water...Ch. 5 - Water is pumped from a lower reservoir to a higher...Ch. 5 - Water in a partially filled large tank is to be...Ch. 5 - Underground water is to be pumped by a 78 percent...Ch. 5 - Reconsider Prob. 5-88. Determine the flow rate of...Ch. 5 - The velocity profile for turbulent flow in a...Ch. 5 - The demand for electric power is usually much...Ch. 5 - Prob. 92PCh. 5 - Consider a fully filled hemisphere shaped tank...Ch. 5 - The velocity of a liquid flowing in a circular...Ch. 5 - Air at 250 kgrn3 enters a nozzle that has an...Ch. 5 - The air in a 5m5-m3-m hospital room is to be...Ch. 5 - The water level in a tank is 70 ft above the...Ch. 5 - A pressurized 2-rn-diameter tank of water has a...Ch. 5 - Underground water is being pumped into a pool...Ch. 5 - Prob. 100PCh. 5 - A very large tank contains air at 102 kPa at a...Ch. 5 - Water is flowing through a Venturi meter whose...Ch. 5 - Water flows at a rate of 0.011 m3/s in a...Ch. 5 - Air flows through a pipe at a rate of 120 L/s. The...Ch. 5 - A 3-rn-high large tank is initially filled with...Ch. 5 - Reconsider Prob. 5-105. In order to dram the tank...Ch. 5 - A D0= 1 2-rn-diameter tank is initially filled...Ch. 5 - An oil pump is drawing 18 kW of electric power...Ch. 5 - A wind tunnel draws atmospheric air at 20°C and...Ch. 5 - Consider a spherical tank containing compressed...Ch. 5 - A tank with openings 1,2, and 3 is moving to left...Ch. 5 - Two dimensionally identical containers are...Ch. 5 - A circular thin plate is placed on the top of a...Ch. 5 - A pump-storage plant uses a turbine to generate...Ch. 5 - A diffuser in a pipe flow is basically a slow...Ch. 5 - Prob. 117PCh. 5 - Prob. 118PCh. 5 - Prob. 119PCh. 5 - Air enters a steady-flow compressor at 1 atm and...Ch. 5 - A 7$-m-high water body that is open to the...Ch. 5 - Prob. 122PCh. 5 - Prob. 123PCh. 5 - A hydraulic turbine is used to generate power by...Ch. 5 - The efficiency of a hydraulic turbine-generator...Ch. 5 - Which one is not an assumption involved with the...Ch. 5 - Consider incompressible, frictionless flow of a...Ch. 5 - Consider incompressible, frictionless flow of...Ch. 5 - Consider water flow in a piping network. The...Ch. 5 - The static and stagnation pressures of a fluid in...Ch. 5 - The static and stagnation pressures of a fluid in...Ch. 5 - The difference between the heights of energy grade...Ch. 5 - Water at 120 kPa (gage) is flowing in a horizontal...Ch. 5 - Water is withdrawn a the bottom of a large tank...Ch. 5 - Water at 80 kPa (gage) enters a horizontal pipe at...Ch. 5 - Liquid ethanol (p = 783 kg/m3) at a pressure of...Ch. 5 - Seawater is to be pumped into a large tank at a...Ch. 5 - An adiabatic pump is used to increase the pressure...Ch. 5 - The shaft power from a 90 percent-efficient...Ch. 5 - Using a 1are bucket whose volume is known and...Ch. 5 - Your company is setting up an experiment that...Ch. 5 - Computer-aided designs, the use of better...Ch. 5 - Using a handheld bicycle pump to generate an air...Ch. 5 - Using a flexible drinking straw and a ruler,...Ch. 5 - The power generated by a wind turbine is...
Knowledge Booster
Background pattern image
Mechanical Engineering
Learn more about
Need a deep-dive on the concept behind this application? Look no further. Learn more about this topic, mechanical-engineering and related others by exploring similar questions and additional content below.
Similar questions
SEE MORE QUESTIONS
Recommended textbooks for you
Text book image
Elements Of Electromagnetics
Mechanical Engineering
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Oxford University Press
Text book image
Mechanics of Materials (10th Edition)
Mechanical Engineering
ISBN:9780134319650
Author:Russell C. Hibbeler
Publisher:PEARSON
Text book image
Thermodynamics: An Engineering Approach
Mechanical Engineering
ISBN:9781259822674
Author:Yunus A. Cengel Dr., Michael A. Boles
Publisher:McGraw-Hill Education
Text book image
Control Systems Engineering
Mechanical Engineering
ISBN:9781118170519
Author:Norman S. Nise
Publisher:WILEY
Text book image
Mechanics of Materials (MindTap Course List)
Mechanical Engineering
ISBN:9781337093347
Author:Barry J. Goodno, James M. Gere
Publisher:Cengage Learning
Text book image
Engineering Mechanics: Statics
Mechanical Engineering
ISBN:9781118807330
Author:James L. Meriam, L. G. Kraige, J. N. Bolton
Publisher:WILEY
Fluid Mechanics - Viscosity and Shear Strain Rate in 9 Minutes!; Author: Less Boring Lectures;https://www.youtube.com/watch?v=_0aaRDAdPTY;License: Standard youtube license