EBK APPLIED FLUID MECHANICS
7th Edition
ISBN: 9780100668348
Author: UNTENER
Publisher: YUZU
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Chapter 15, Problem 10RQ
To determine
TO DESCRIBE:
Discharge Coefficient
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1. Why is discharge coefficient always less than 1.
2. What is the difference between discharge coefficient of Orifice Plate Meter and Venturi Meter if both have the same internal diameter and experience the same flow rate. Which one has a higher loss of energy?
3. What would you expect on the effect of changing the diameter (Larger and smaller) of the orifice on the discharge coefficient?
the hydraulic radius of a pipe with a diameter of 12mm is
Hydraulics
Differentiate the relationship of discharge and head loss between series and parallel piping network. Provide necessary equations.
Chapter 15 Solutions
EBK APPLIED FLUID MECHANICS
Ch. 15 - List six factors that affect the selection and use...Ch. 15 - Define range as it relates to flowmeters.Ch. 15 - Describe three methods for calibrating flowmeters.Ch. 15 - Prob. 4RQCh. 15 - Prob. 5RQCh. 15 - Prob. 6RQCh. 15 - Prob. 7RQCh. 15 - What is the nominal included angle of the...Ch. 15 - Why is there such a difference between the angles...Ch. 15 - Prob. 10RQ
Ch. 15 - Prob. 11RQCh. 15 - Describe an orifice meter and how it is used.Ch. 15 - Describe a flow tube and how it is used.Ch. 15 - Of the venturi, the flow nozzle, the flow tube,...Ch. 15 - Describe pressure loss as it relates to flowmetersCh. 15 - Rank the venturi, the flow nozzle, the orifice,...Ch. 15 - Prob. 17RQCh. 15 - Prob. 18RQCh. 15 - Prob. 19RQCh. 15 - Describe a magnetic flowmeter and how it is usedCh. 15 - Describe how mass flow irate can be measuredCh. 15 - Describe a pitot tube and how it is used.Ch. 15 - Prob. 23RQCh. 15 - Prob. 24RQCh. 15 - Prob. 25RQCh. 15 - Prob. 26RQCh. 15 - Describe the method used to measure the average...Ch. 15 - Prob. 28RQCh. 15 - Describe a hot-wire anemometer and how it is usedCh. 15 - Prob. 30RQCh. 15 - A venturi meter similar to the one in Fig. 15.2has...Ch. 15 - Air with a specific weight of 12.7N/m3 and a...Ch. 15 - Prob. 15.3PPCh. 15 - Prob. 15.4PPCh. 15 - Prob. 15.5PPCh. 15 - Prob. 15.6PPCh. 15 - Prob. 15.7PPCh. 15 - An orifice meter is to be used to measure the flow...Ch. 15 - A flow nozzle is to be installed in a 5-in Type K...Ch. 15 - An orifice meter is to be installed in a 12-in...Ch. 15 - A pitot-static tube is inserted into a pipe...Ch. 15 - A pitot-static tube is connected to a differential...Ch. 15 - A pitot-static tube is inserted in a pipe carrying...Ch. 15 - A pitot-static tube is inserted into a duct...Ch. 15 - A pitot-static tube is inserted into a duct...
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- CHOICES FOR PIPE 3: A. 733, B.373, C. 133, D. 311 Determine the discharge at pipeline 3 in lit/sec assuming f=0.02 for all pipes. AND PIPE 2arrow_forwardWhat is a Venturimeter ? Derive an expression for the discharge through a Venturimeter.arrow_forwardEnumerate the different classifications of pumpsarrow_forward
- 1) Which of the following statement is NOT correct about piping network? a) In parallel pipes, the flow rate is proportional to its diameter and inversely proportional to its length and friction factor. b) When analyzing the piping network, conservation of mass throughout the system must be satisfied. c) In piping systems with pumps, the Bernoulli equation should be corrected by introducing a kinetic energy correction factor. d) The algebraic sum of head losses for all loops equal to zero. 2) The EGL is always a distance V2/2g above the HGL. True or Falsearrow_forwardWrite relation of flow rate with total head in bernoulli's equationarrow_forwardDetermine the pump head (unit: meter or kPa), using the following parametersarrow_forward
- What are the few factor that can influence the magnitude of discharge coefficient C beside diameter. Explain why the factor(s) are able to affect the magnitude.arrow_forwardDiscuss the relation between the head pressure and flow rate for the benefits of connecting the pumps in series?arrow_forwardA pipe experienced a total head loss of 15 m, determine thepressure difference from its starting point to discharge point inkPa.arrow_forward
- Determine the smallest metric hydraulic copper tube size that will carry 4L/min of the following fluids while maintaining laminar flow: (a) water at 40°C, (b) gasoline (SG=0.68) 25°C, (c) ethyl alcohol (SG=0.79) at 0°C, and (d) heavy fuel oil at 25°C.arrow_forwardDetermine the smallest metric hydraulic copper tube size that will carry 4L/min of the following fluids while maintaining laminar flow: (a) water at 40°C, (b) gasoline (SG=0.68) 25°C, (c) ethyl alcohol (SG=0.79) at 0°C, and (d) heavy fuel oil at 25°C. answer the last part only thankyouarrow_forwardQ:/ Discuss the relation betwveen the head pressure and flow rate for the benefits of connecting the pumps in parallel ?arrow_forward
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