Solutions for EBK APPLIED FLUID MECHANICS
Problem 14.1PP:
Compute the hydraulic radius for a circular drain pipe running half full if its inside diameter is...Problem 14.2PP:
A rectangular channel has a bottom width of 2.75 m. Compute the hydraulic radius when the fluid...Problem 14.3PP:
A drainage structure for an industrial park has a trapezoidal cross-section similar to that shown in...Problem 14.4PP:
Repeat Problem 14.3 lO if the side slope is 45Problem 14.5PP:
Compute the hydraulic radius for a trapezoidal channel with a bottom width of 150 mm and with sides...Problem 14.6PP:
Compute the hydraulic radius for the section shown in Fig. 14.19 if water flows at a depth of 2.0...Problem 14.7PP:
Repeat Problem 14.6 for a depth of 3.50 in.Problem 14.8PP:
Compute the hydraulic radius for the channel shown in Fig. 14.20 if the water depth is 0.50 mProblem 14.9PP:
Compute the hydraulic radius for the channel shown in Fig. 14.20 if the water depth isProblem 14.10PP:
Water is flowing in a formed, unfinished concrete rectangular channel 3.5 m wide. For a depth of 2.0...Problem 14.11PP:
Determine the normal discharge for an aluminum rain spout with the shape shown in Fig. 14.19 that...Problem 14.12PP:
A circular culvert under a highway is 6 ft in diameter and is made of corrugated metal. It drops 1...Problem 14.13PP:
A wooden flume is being built to temporarily carry 5000 L/min of water until a permanent drain can...Problem 14.14PP:
A storm drainage channel in a city where heavy sudden rains occur has the shape shown in Fig. 14.20....Problem 14.15PP:
Figure 14.21 represents the approximate shape of a natural stream channel with levees built on...Problem 14.16PP:
Calculate the depth of flow of water in a rectangular channel 10 ft wide, made of brick in cement...Problem 14.17PP:
Calculate the depth of flow in a trapezoidal channel with a bottom width of 3 m and whose walls...Problem 14.18PP:
A rectangular channel must carry 2.0m3/s of water from a water-cooled refrigeration condenser to a...Problem 14.19PP:
The channel shown in Fig. 14.22 has a surface of float-finished concrete and is laid on a slope that...Problem 14.20PP:
A square storage room is equipped with automatic sprinklers for fire protection that spray 1000...Problem 14.21PP:
The flow from two of the troughs described in Problem 14.20 passes into a sump, from which a round...Problem 14.22PP:
For a rectangular channel with a bottom width of 1.00 m, compute the flow area and hydraulic radius...Problem 14.23PP:
It is desired to carry 2.00m3/s of water at a velocity of 3.0 m/s in a rectangular open channel. The...Problem 14.24PP:
For the channel designed in Problem 14.23, compute the required slope if the channel is...Problem 14.27PP:
A trapezoidal channel has a bottom width of 2.00 ft and a pitch of its sides of z=1.50 Compute the...Problem 14.28PP:
For the channel described in Problem 14.27, compute the normal discharge that would be expected for...Problem 14.30PP:
A trapezoidal channel has a bottom width of 2.00 ft and a pitch of its sides of z=1.50. Compute the...Problem 14.32PP:
Compute the flow area and hydraulic radius for a circular drain pipe 375 mm in diameter for a depth...Problem 14.39PP:
A rectangular channel 2.00 m wide carries 5.5m3/s of water and is made of formed unfinished...Problem 14.41PP:
A triangular channel with side slopes having a ratio of 1:1.5 carries 0.68ft3/s of water and is made...Problem 14.42PP:
A trapezoidal channel with a bottom width of 3.0 ft and side slopes having a ratio of 1:0.75 carries...Problem 14.44PP:
Determine the required length of a contracted weir similar to that shown in Fig. 14.17 to pass...Problem 14.47PP:
Compare the discharges over the following weirs when the head His 18 in Full-width rectangular :...Problem 14.49PP:
For a Parshall flume with a throat width of 9 in, calculate the head H corresponding to the minimum...Problem 14.51PP:
A flow rate of 50ft3/s falls within the range of both the 4-ft- and the 10-ft-wide Parshall flume....Problem 14.53PP:
A long-throated flume is installed in a trapezoidal channel using design B from Table 14.5. Compute...Problem 14.58PP:
For a long-throated flume of design B in a rectangular channel, compute the head corresponding to a...Browse All Chapters of This Textbook
Chapter 1 - The Nature Of Fluids And The Study Of Fluid MechanicsChapter 2 - Viscosity Of FluidsChapter 3 - Pressure MeasurementChapter 4 - Forces Due To Static FluidsChapter 5 - Buoyancy And StabilityChapter 6 - Flow Of Fluids And Bernoulli’s EquationChapter 7 - General Energy EquationChapter 8 - Reynolds Number, Laminar Flow, Turbulent Flow, And Energy Losses Due To FrictionChapter 9 - Velocity Profiles For Circular Sections And Flow In Noncircular SectionsChapter 10 - Minor Losses
Chapter 11 - Series Pipeline SystemsChapter 12 - Parallel And Branching Pipeline SystemsChapter 13 - Pump Selection And ApplicationChapter 14 - Open-channel FlowChapter 15 - Flow MeasurementChapter 16 - Forces Due To Fluids In MotionChapter 17 - Drag And LiftChapter 18 - Fans, Blowers, Compressors, And The Flow Of GasesChapter 19 - Flow Of Air In Ducts
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Pearson eText Applied Fluid Mechanics -- Instant Access (Pearson+)
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Applied Fluid Mechanics
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Applied Fluid Mechanics (7th Edition)
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Applied Fluid Mechanics (7th Edition)
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Applied Fluid Mechanics
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ISBN: 9780135577158
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