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ENGINEERING MANUAL OF AUTOMATIC CONTROL
CHILLER, BOILER, AND DISTRIBUTION SYSTEM CONTROL APPLICATIONS
356
Fig. 79. Variable Speed Pump Control
Fig. 80. Fixed Setpoint with PI,
Variable Speed Pumping Control
DP
DP
C
H
I
L
L
E
R
1
C
H
I
L
L
E
R
2
HEAT/
COOL
COIL
1
V1
B1
HEAT/
COOL
COIL
2
V2
B2
HEAT/
COOL
COIL
3
V3
B3
HEAT/
COOL
COIL
4
V4
B4
HEAT/
COOL
COIL
5
V5
B5
HEAT/
COOL
COIL
6
V6
B6
3
VARIABLE
SPEED
DRIVE
2
1
DP
M15066
AHU 1 requires a 28 foot differential pressure (8 feet for the
coil, 8 feet for the valve, and 12 feet for the balancing valve),
for full flow. If 28 feet is available at AHU 1, all other AHUs
will have at least the required design differential pressure.
Controlling the pump with a sensor positioned as shown for
DP-2 set for 28 feet is acceptable.
Locating the sensor (DP-3) at AHU 6 and set for the 16 feet
required by AHU 6 will not work when only AHU 1 is operating.
With these conditions DP-3 maintains a maximum drop of only
16 feet across AHU 1 which needs a 28 ft differential pressure
because of the balancing valve. If the sensor is positioned at
AHU 6, the setpoint must still be 28 feet if the system is to
operate satisfactorily with non-symmetrical loading.
DP-1 located at the variable speed drive (VSD) is the most
convenient place. It requires the DP-2 setpoint plus the friction
losses between the pump and AHU 1.
Figure 80 shows the operating curve of the system with the
differential pressure sensor located in the DP-2 position and
set for 28 feet. With each AHU at one-third flow, the speed is
1412 RPM, which produces a 28 foot differential pressure at
AHU 1 with 400 gpm system flow. When the coils are equally
loaded at one-third flow, each control valve takes a 26 foot
drop. In this configuration the pump never operates much below
the 1400 rpm speed because of the 28 ft head setpoint.
HEAD IN FEET
FULL LOAD
OPERATING POINT
PUMP CURVE
@ 1750 RPM
48
42
36
30
24
18
12
6
0
0
200
400
600
800
1000
SYSTEM CURVE FOR STATIC
ELEMENTS OF SYSTEM (CHILLER,
PIPING, FITTINGS, BALANCING
COCKS, COILS, STRAINERS, ETC.)
OPERATING POINT @
400 GPM & 1750 RPM
OPERATING POINTS LINE AS FLOW
VARIES FROM 1200 GPM TO ZERO
GPM WITH 28 FT HEAD MAINTAINED
ACROSS AHU 1
PUMP CURVE
@ 1412 RPM
1200
OPERATING POINT
WITH EACH
CONTROL VALVE
AT ONE THIRD
FLOW AND PUMP
AT 1412 RPM
EACH CONTROL
VALVE @ ONE
THIRD FLOW
(PRESSURE
DROP ACROSS
VALVES 26 FT)
EACH
CONTROL
VALVE FULL
OPEN AT
200 GPM &
8FT DROP
PUMP REQUIRED:
1200 GPM @ 36' HEAD
M15067
FLOW IN GPM
Summary of Contents for AUTOMATIC CONTROL
Page 4: ...ENGINEERING MANUAL OF AUTOMATIC CONTROL iv ...
Page 6: ...ENGINEERING MANUAL OF AUTOMATIC CONTROL vi ...
Page 11: ...ENGINEERING MANUAL OF AUTOMATIC CONTROL CONTROL FUNDAMENTALS 1 CONTROL SYSTEMS FUNDMENTALS ...
Page 12: ......
Page 46: ...ENGINEERING MANUAL OF AUTOMATIC CONTROL CONTROL FUNDAMENTALS 36 ...
Page 66: ...PSYCHROMETRIC CHART FUNDAMENTALS 56 ENGINEERING MANUAL OF AUTOMATIC CONTROL ...
Page 128: ...ENGINEERING MANUAL OF AUTOMATION CONTROL ELECTRIC CONTROL FUNDAMENTALS 118 ...
Page 158: ...MICROPROCESSOR BASED DDC FUNDAMENTALS 148 ENGINEERING MANUAL OF AUTOMATIC CONTROL ...
Page 210: ...ENGINEERING MANUAL OF AUTOMATIC CONTROL BUILDING MANAGEMENT SYSTEM FUNDAMENTALS 200 ...
Page 440: ...ENGINEERING MANULA OF AUTOMATIC CONTROL INDIVIDUAL ROOM CONTROL APPLICATIONS 430 ...
Page 516: ...ENGINEERING MANUAL OF AUTOMATIC CONTROL GENERAL ENGINEERING DATA 506 Notes ...
Page 517: ...ENGINEERING MANUAL OF AUTOMATIC CONTROL GENERAL ENGINEERING DATA 507 Notes ...
Page 518: ...ENGINEERING MANUAL OF AUTOMATIC CONTROL GENERAL ENGINEERING DATA 508 ...