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Page 1: Water Management

Water Management

Water is an important natural resource that requires proper management.

Appropriate flow rate, pressure, and water quality are necessary for effective use.

Page 2: Water Management

Water System

WATER SUPPLY

STORAGE

TREATMENT

CONSUMER

DISTRIBUTION

Page 3: Water Management

Supply

Page 4: Water Management

Treatment

Page 5: Water Management

Storage

Page 6: Water Management

Consumer

1 psi = 2.31 ft of water

35-50 psi

Page 7: Water Management

Terminology

Static pressure (head):No water flowing through the system

Head loss:Pressure loss due to friction

Actual pressure:Static pressure – head loss (all expressed in

psi)

Page 8: Water Management

Hazen-Williams Formula

hf = 10.44 * L * Q1.85

          C1.85 * d4.8655

 Where:      hf = head loss due to friction (ft)                  L = length of pipe (ft)                  Q = flow rate of water through

the pipe (gpm)                  C = Hazen-Williams constant                   d = diameter of the pipe (in.)

Page 9: Water Management

Water Supply ProblemA business’s water supply connection at the street is at elevation 1,257 ft and has a pressure of 55 psi. The first floor fixture elevation is 1,285 ft. Between the connection and a first floor fixture, there are 120 ft of 3 in. copper pipe, 25 ft of ¾ in. copper pipe, and five (5) ¾ in. - 90o elbows. Discharge through the fixture is 10 gpm. The equivalent length for a single ¾ in., 90o elbow is 4 ft. The Hazen-Williams constant for copper pipe is 140.

Page 10: Water Management

Water Supply Problem

What is the pressure loss due to elevation change between the street connection and the first floor fixture?

1st floor elevation – street elevation

1,285 ft – 1,257 ft = 28 ft

Convert to psi:

28 ft ÷ 2.31 ft/psi = 12.12 psi

Page 11: Water Management

Total Equivalent Length of ¾ in. Pipe

= Pipe length + fitting equivalent length

= 25 ft + (5 elbows * 4 ft/elbow)

= 45.00 ft

Page 12: Water Management

Head Loss in ¾ in. Pipe

Friction head loss using Hazen Williams equation

hf = 10.44 * L * Q1.85

C1.85 * d4.8655

hf = 10.44 * 45 ft * (10 gpm)1.85

(140)1.85 * (3/4 in.)4.8655

hf = 14.44 ft

Page 13: Water Management

Head Loss in 3 in. Pipe

hf = 10.44 * L * Q1.85

C1.85 * d4.8655

hf = 10.44 * 120 ft * (10 gpm) 1.85

(140)1.85 * (3 in.) 4.8655

hf = 0.05 ft

Page 14: Water Management

Total Head Loss for ¾ in. & 3 in. Pipe

Total Head Loss (due to friction):

= Head loss, ¾ in. pipe + head loss, 3 in. pipe

= 14.44 ft + 0.05 ft

= 14.49 ft

Convert to psi:

14.49 ft ÷ 2.31 ft/psi = 6.27 psi

Page 15: Water Management

Water Supply Problem

What is the pressure in units of psi at the first floor fixture?

Actual pressure = street pressure – static difference – head loss

= 55 psi – 12.12 psi – 6.27 psi = 36.61 psi


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