Background: Water towers are elevated water storage construction that are built at a certain height to provide for sufficient water pressure to serve as potable water distribution units. Consider the following case and answer the questions below the image: Reguired : Find: O Horse = |-minor bsses (m) -major lases (m) GRven: Mu = loo2 Ns Suzo = 998-2 k m2 D= 2ocm Ppes 3 PNC - é = 0-0015 mm Honse - lom Abung gramd KYom. 印由 Ball Val ue I Undey gainel. q0° elbow D=Ycom Contrafion Figure 3: Schematic diagram of water distribution unit

Structural Analysis
6th Edition
ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
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dont use row g h to find the hight huse bernouli 

 

 

Background: Water towers are elevated water storage construction that are built at a certain height to provide
for sufficient water pressure to serve as potable water distribution units. Consider the following case and
answer the questions below the image:
Reguired :
é Hose = 3s0Ka -h
Find:
|-minor bsses (m)
-major lases (m)
GRven:
Meno = lco2 Ns
Suzo = 998-2 k
D-locm Ppes ? PNC - e= 00015 mm
m2
Honse
- lam
gramd
印由
KYom.
Ball
Val ue
Unday
gainel
90° elbow
D2=10cm
Contra fion
Figure 3: Schematic diagram of water distribution unit
More information provided:
- The pipe is buried 1.5 [m] below the ground level.
The mass flow rate as it comes out of the reservoir is 9.5 L/s.
Any other distances not given in the problem statement and Figure 3 can be neglected as they are considered very
small compared to other dimensions.
What is the minor head loss in the system (in meters)?
What is the major head loss in the system (in meters)?
What is the required height (h) to have a pressure reaching the house (P howse- 350 [kPa]) ?
Transcribed Image Text:Background: Water towers are elevated water storage construction that are built at a certain height to provide for sufficient water pressure to serve as potable water distribution units. Consider the following case and answer the questions below the image: Reguired : é Hose = 3s0Ka -h Find: |-minor bsses (m) -major lases (m) GRven: Meno = lco2 Ns Suzo = 998-2 k D-locm Ppes ? PNC - e= 00015 mm m2 Honse - lam gramd 印由 KYom. Ball Val ue Unday gainel 90° elbow D2=10cm Contra fion Figure 3: Schematic diagram of water distribution unit More information provided: - The pipe is buried 1.5 [m] below the ground level. The mass flow rate as it comes out of the reservoir is 9.5 L/s. Any other distances not given in the problem statement and Figure 3 can be neglected as they are considered very small compared to other dimensions. What is the minor head loss in the system (in meters)? What is the major head loss in the system (in meters)? What is the required height (h) to have a pressure reaching the house (P howse- 350 [kPa]) ?
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