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ENGINEERING MANUAL OF AUTOMATIC CONTROL
CHILLER, BOILER, AND DISTRIBUTION SYSTEM CONTROL APPLICATIONS
333
Figure 46 shows how flame safeguard controls are integrated
with combustion controls on a small oil fired steam boiler. The
ultraviolet (UV) flame detector is located where it can see the
flame and will shutdown the burner when no flame is present.
Fig. 45. Simple Flame Safeguard for a Gas Furnace.
MAIN BURNER
HI LIMIT
OPERATING
CONTROLLER
POWER
GAS
FLOW
SHUTOFF
VALVE
THERMO-
COUPLE
PILOT
BURNER
PILOT
GAS LINE
AUTOMATIC
VALVE
PILOTSTAT
PRESSURE
REGULATOR
VALVE
M15050
HI LIMIT
OPERATING
CONTROL
FLAME SAFEGUARD
CONTROL
RELAY
UV FLAME
DETECTOR
C2930
BURNER
WITH
ELECTRIC
IGNITION
LOW WATER
CUT-OFF
Fig. 46. Combustion Controls with
Flame Safeguard Circuit.
FLAME SAFEGUARD INSTRUMENTATION
In addition to the combustion, safety, and flame safeguard
controls shown in Figure 46, additional instrumentation often
provided on larger burners measures:
–
Percent of O2 or CO2 in flue gas (to monitor combustion
efficiency).
–
Flue gas temperature.
–
Furnace draft in inches of water column.
–
Steam flow with totalizer or hot water Btu with totalizer.
–
Oil and/or gas flow with totalizer.
–
Stack smoke density.
APPLICATION OF BOILER CONTROLS
Boilers have to provide steam or hot water whenever heat is
needed. A conventional BMCS is often set to provide a
continuous hot water or steam supply between October and
May at anytime the OA temperature drops to 60F for more
than 30 minutes and an AHU is calling for heat. The BCMS
should include a software ON-OFF-AUTO function. Unlike
chillers, boilers can be left enabled at no-load conditions, during
which time the water temperature will be held at the design
temperature. Frequent warm-up and shutdown of boilers causes
stress buildup. Boiler manufacturers recommendations provide
specific guidelines.
Unless a water temperature low limit is used, hot water boiler
burners are not controlled to provide water temperatures based
on outdoor temperatures because the reset schedules require
water temperatures to be supplied below the dew point
temperature of the flue gas. Some boilers require entering water
temperatures to be above 140F before going to high fire. In this
case, if a building is using hot water and the boiler is locked
into low-fire because the entering water is too cold, the system
may never recover.
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 ...