M909 - BUILDING 1 PRESSURIZATION CONTROL SEQUENCES - AHU-26.pdf
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- Z2DA--Remediate Temperature Controls 539-21-108 Federal contract opportunity
- Solicitation number
- 36C25026B0002
About this file
This document is a technical control diagram and sequence of operations for AHU-26 at the Cincinnati VA Medical Center, prepared by Heapy Engineering and Levin Porter Architects. The detailed drawing provides comprehensive instructions for air handling unit control modifications, focusing on specific operational requirements such as supply fan speed control, air static pressure setpoint reset, and temperature reset mechanisms.
Key technical specifications include modulating variable speed drives using a static pressure sensor, implementing a dynamic reset algorithm for VAV box dampers, and establishing a temperature reset protocol based on ASHRAE 36.2 standards. The scope of work involves commissioning the air handling unit, recalibrating pressure transducers, performing preventative maintenance on dampers and actuators, and implementing advanced control sequences that optimize energy efficiency and zone temperature management. The document includes provisions for detecting and managing "rogue zones" and adjusting control responses based on humidity levels, with specific attention to maintaining appropriate space pressure and environmental conditions.
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Text version
P ro je ct
N o.
F
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D
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B
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1 2 3 4 5 6 7 8 9 10
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D
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VA FORM 08 - 6231
321 4 5 6 7 8 9 10
Project Number
Building Number
Drawing Number
Project Title
Location
Issue Date Checked Drawn
Drawing Title
Approved: Project Manager
Cincinnati V.A Medical Center
U.S. Department of Veterans Affairs
F
Phase
ARCHITECT/ENGINEER OF RECORDCONSULTANT
32 4 5 6 7 8 9 10
CONSTRUCTION
DOCUMENTS
FULLY SPRINKLEREDKEVIN HENDERSONPROJECT NO. STATE COA FIRM NO.
/1
/2
:1
:3
A
M -2
-1
BUILDING 1 PRESSURIZATION
CONTROL SEQUENCES - AHU-26
10/23/25 GSE WJS
REMEDIATE TEMPERATURE
CONTROLS
M909
539-21-108
CINCINNATI, OHIO
2020-05099 01528
SCALE: NONE
AHU-26 CONTROLS - EXISTING CONTROL DIAGRAM
EXISTING SEQUENCES
AHU-26 SEQUENCE OF OPERATIONS
1. SAFETY CONTROLS
A. GENERAL WIRING INSTRUCTIONS
1) THE LOW/HIGH PRESSURE CUT-OUTS AND FREEZESTAT SAFETY CIRCUITS WILL BE
HARDWIRED IN SERIES WITH THE SUPPLY AIR FAN MOTOR STARTER CONTROL
CIRCUIT.
2) HARDWIRE INTERLOCK RETURN AIR FAN STARTER CIRCUIT TO SUPPLY AIR FAN
STARTER CIRCUIT VIA NO AUXILIARY CONTACTS ON SUPPLY AIR FAN MOTOR
STARTER.
B. FIRE ALARM RELAY
1) THE BMCS WILL STOP THE SUPPLY/RETURN FAN(S) AND DRIVE ALL CONTROL
DAMPERS TO THEIR FAILED POSITIONS WHENEVER THE EXISTING FIRE ALARM RELAYS
ARE ACTIVATED BY THE FIRE ALARM PANEL.
C. FREEZESTATS
1) ALL UNITS ARE EQUIPPED WITH LOW LIMIT THERMOSTAT(S) WITH MANUAL RESET
DOWNSTREAM OF THE HEATING COIL.
2) WHEN THE LOW LIMIT THERMOSTAT SENSES A TEMPERATURE LESS THAN 38 DEGF
(ADJ.), THE SUPPLY AND RETURN FANS WILL STOP.
D. SAF DISCHARGE PRESSURE SWITCH
1) THE UNIT IS EQUIPPED WITH SAF DISCHARGE PRESSURE SWITCH WITH MANUAL
RESET TO SHUT DOWN SUPPLY AND RETURN FANS IF SUPPLY FAN DISCHARGE STATIC
PRESSURE EXCEEDS SWITCH SETPOINT.
E. RAF DISCHARGE HIGH PRESSURE SWITCH
1) PROVIDE RETURN AIR FAN HIGH DISCHARGE PRESSURE LIMIT SWITCH WITH
MANUAL RESET TO SHUT DOWN SUPPLY AND RETURN FANS IF RETURN FAN
DISCHARGE STATIC PRESSURE EXCEEDS SWITCH SETPOINT.
2. SUPPLY FAN CONTROL
A. SAF VARIABLE AIR VOLUME UNITS
1) IF SAFETY CONTROLS ARE NORMAL, THE VFD(S) FOR THE SUPPLY FAN(S) WILL BE
ENABLED BY THE BMCS AND WILL RUN CONTINUOUSLY.
2) THE VFD(S) WILL VARY THE SPEED OF THE FAN MOTOR(S) AS REQUIRED TO
MAINTAIN THE SUPPLY DUCT STATIC PRESSURE SENSOR SETTING (ADJ.).
3) FOR DUAL SUPPLY FANS, THE FANS WILL OPERATE IN UNISON AT THE SAME SPEED.
4) PROVIDE SUPPLY FAN(S) WITH CURRENT SWITCH FOR FAN STATUS.
3. SAF STATIC LOAD REDUCTION
A. THE BCMS WILL PROVIDE AUTOMATIC REMOTE STATIC RESET FUNCTIONALITY TO
RESETS THE AIR HANDLER STATIC PRESSURE SETPOINT BASED ON TIME OF DAY,
OUTSIDE AIR TEMPERATURE OR NIGHT SETBACK ROUTINE.
B. THE CONTRACTOR WILL PROVIDE A RESET TABLE GRAPHIC THAT PROVIDES THE
FOLLOWING POINTS FOR EACH AIR HANDLER:
1) AHU REMOTE STATIC PRESSURE
2) REMOTE STATIC SETPOINT
3) TIME OF DAY MULTIPLIER SETPOINT
4) TEMPERATURE MULTIPLIER SETPOINT
5) NIGHT SETBACK MULTIPLIER SETPOINT
6) PERCENT REMOTE STATIC RESET
7) CURRENT REMOTE STATIC RESET VALUE
C. THE BCMS WILL MULTIPLY THE AHU REMOTE STATIC PRESSURE SET POINT BY THE TIME
OF DAY MULTIPLIER SETPOINT, TEMPERATURE MULTIPLIER SETPOINT, AND THE NIGHT
SETBACK MULTIPLIER SETPOINT TO GENERATE A MODIFIED AHU REMOTE STATIC
SETPOINT FOR THE AIR HANDLER.
1) THE CONTRACTOR IS RESPONSIBLE FOR ALL PROGRAMMING NECESSARY TO
IMPLEMENT THE CONTROL LOGIC IN THE BCMS. THE OWNER WILL BE RESPONSIBLE
FOR FINE ADJUSTMENT OF ALL PARAMETER SETTINGS ONCE THE CONTROL LOGIC
HAS BEEN COMMISSIONED AND FOUND SATISFACTORY BY THE BO ENGINEER.
4. RETURN FAN CONTROL
A. RAF TRACKING, OBC
1) IF SAFETY CONTROLS ARE NORMAL, THE VFD(S) FOR THE RETURN FAN(S) WILL BE
ENABLED BY THE BMCS AND WILL RUN CONTINUOUSLY.
2) THE VFD(S) WILL VARY THE SPEED OF THE FAN MOTOR(S) AS REQUIRED TO
MAINTAIN A RETURN FAN DISCHARGE STATIC PRESSURE SETPOINT PER THE
SPECIFIED STATIC PRESSURE RESET SCHEDULE. FOR DUAL RETURN FANS, THE FANS
WILL OPERATE IN UNISON AT THE SAME SPEED.
3) THE RETURN AIR PLENUM PRESSURE SETPOINT WILL BE RESET BASE ON RS-4
OUTDOOR AIR ENTHALPY RESET SCHEDULE AS FOLLOWS:
4) AT OR BELOW 17.5 BTU’S PER LB, THE RETURN AIR PLENUM PRESSURE WILL
INITIALLY BE SET AT 0.0 IN WC BY THE BMS CONTRACTOR. FINAL STATIC SETTING WILL
BE DETERMINED BY BO ENGINEER AFTER FIELD ANALYSIS.
5) THE RETURN AIR PLENUM PRESSURE WILL BE LINEARLY RESET UPWARDS AS THE
OUTDOOR AIR ENTHALPY INCREASES FROM 17.5 TO 25.0 BTU’S PER LB. THE INITIAL
BMS CONTRACTOR SETTING OF THIS RESET WILL BE 0.0 IN WC AT 17.5 BTU’S PER LB
AND BE 0.40 IN WC AT 25.0 BTU’S PER LB. FINAL RESET SCHEDULE STATIC SETTING
WILL BE DETERMINED BY BO ENGINEER AFTER FIELD ANALYSIS.
6) THE RETURN AIR PLENUM PRESSURE WILL BE +/- 2.5 IN WC WHEN IN THE
ECONOMIZER IS IN THE OUTSIDE AIR LOCK-OUT MODE AND THE AIR HANDLERS
EXHAUST AIR DAMPERS WILL BE 100% CLOSED. FINAL STATIC PRESSURE RESET
SETTINGS WILL BE DETERMINE BY BO ENGINEER AFTER FIELD ANALYSIS.
B. ALL RETURN AIR FANS:
1) THE BMCS WILL MONITOR RETURN FAN(S) STATUS WITH CURRENT SWITCH(S) AND
ISSUE ALARMS TO THE OPERATOR ON FAN FAILURE.
5. OUTSIDE AIR AND RETURN AIR DAMPER CONTROL
A. ECONOMIZER, OBC (RA AND SINGLE OSA DAMPER)
1) PROVIDE VARYING SUPPLY AIR TEMPERATURE PID CONTROL LOOP SPEEDS FOR
SUMMER AND WINTER COOLING PERIODS. THE SUPPLY AIR CONTROL LOOP WILL
REACT VERY SLOWLY IN THE COLDEST MONTHS, AND THEN GRADUALLY INCREASE IN
SPEED AS THE OUTDOOR AIR TEMPERATURES INCREASE. THE CONTROL LOOPS MUST
BE FAST ENOUGH TO MAINTAIN SUPPLY TEMPERATURE SETPOINT AT ALL TIMES BUT
SLOW ENOUGH TO PREVENT RESENT FREEZESTAT TRIPS IN THE WINTER.
2) WHEN THE ECONOMIZER CONTROL IS INACTIVE, MODULATE THE OUTSIDE AIR
DAMPER AS REQUIRED TO MAINTAIN THE SCHEDULED MINIMUM OUTSIDE AIR
QUANTITY AS MEASURED BY THE OUTSIDE AIRFLOW STATION.
3) DURING NORMAL OCCUPIED MODES OF OPERATION, THE RETURN AIR DAMPER
CONTROL SIGNAL WILL BE RESET WHEN REQUIRED TO ASSIST IN MAINTAINING
MINIMUM OUTSIDE AIRFLOW. THE BMCS WILL COMPARE THE NORMAL RETURN AIR
DAMPER POSITION COMMAND SIGNAL TO THE MINIMUM OUTSIDE AIR RESET
SCHEDULE RS-1 (SEE RESET SCHEDULE TABLE) AND MAINTAIN THE RETURN AIR
DAMPER IN THE MOST CLOSED POSITION REQUEST BY THE BMCS.
4) WHEN THE ECONOMIZER CONTROL IS ACTIVE, THE OSA DAMPER AND RETURN AIR
DAMPER WILL BE SEQUENCE TO CONTROL THE AIR HANDLERS SUPPLY AIR
TEMPERATURE WHILE MAINTAINING MINIMUM OSA FLOW REQUIREMENTS AT ALL TIME
AS FOLLOWS:
A) THE OUTSIDE AIR DAMPER WILL REFERENCE A MAXIMUM SIGNAL SELECTOR
OUTPUT TO DETERMINE ITS DAMPER POSITION. THIS MAXIMUM SIGNAL SELECTOR
WILL COMPARE THE MINIMUM OSA REQUIREMENTS CONTROL LOOP SIGNAL
STRENGTH TO THE COOLING CONTROL LOOP SIGNAL STRENGTH AND SELECT THE
MAXIMUM CONTROL SIGNAL TO CONTROL THE OSA DAMPER POSITION.
B) IF THE COOLING DEMAND IS GREATER THAN THE MINIMUM OSA REQUIREMENT
DEMAND, THE BMCS WILL IGNORE THE MINIMUM OSA CONTROL SIGNAL AND
MODULATE THE OSA DAMPER AS THE FIRST STAGE OF COOLING.
C) IF THE MINIMUM OSA REQUIREMENT DEMAND IS GREATER THAN THE COOLING
DEMAND, THE BMCS WILL IGNORE THE COOLING DEMAND CONTROL SIGNAL AND
MODULATE THE OSA DAMPER TO MAINTAIN MINIMUM OSA FLOW.
5) THE ECONOMIZER CONTROL WILL BE ACTIVATED WHEN THE OUTSIDE AIR
ENTHALPY IS LESS THAN 25 BTU'S.
6) WHEN THE SUPPLY AND RETURN FANS ARE OFF, THE NORMALLY CLOSED OUTSIDE
AIR DAMPER WILL BE CLOSED, AND THE NORMALLY OPEN RETURN AIR DAMPER WILL
BE OPEN.
7) THE BMCS WILL USE RAMPING LOGIC TO SLOWLY ENTER OR EXIT THE ECONOMIZER
CYCLE.
8) THE ECONOMIZER CONTROL DAMPERS SHALL BE RAMPED OPEN OR CLOSED NOT
MORE THAN 1% PER 9 SECONDS WHEN ENTERING OR EXITING THE ECONOMIZER
CYCLE (0-100 % = 15-MINUTES RAMP TIME).
9) DURING START-UP PERIODS, THE BMCS SHALL USE THE FOLLOWING RAMPING-UP
LOGIC TO SLOWLY DECREASES THE AIR HANDLERS SUPPLY AIR TEMPERATURE TO
SETPOINT:
A) ABOVE 40 DEGF, THE OSA DAMPER(S) SHALL BE SEQUENCED OPEN USING A
MINIMUM OF 15-MINUTES RAMP PERIOD TO GO FROM 0 TO 100% OPEN.
B) BELOW 40 DEGF, THE OSA DAMPER(S) SHALL BE SEQUENCED OPEN USING A
MINIMUM OF 30-MINUTES RAMP PERIOD TO GO FROM 0 TO 100% OPEN. GREATER
RAMP PERIODS MAY BE REQUIRED TO PREVENT NUISANCE FREEZESTAT SHUT-
DOWNS.
C) THE MINIMUM OSA FLOW SHALL BE SET TO ZERO (0) CFM UNTIL THE UNIT HAS
REACHED SA TEMPERATURE SETPOINT.
D) BELOW 25 DEGF, THE OSA DAMPER(S) SHALL BE SEQUENCED OPEN USING A
MINIMUM OF 45-MINUTES RAMP PERIOD TO GO FROM 0 TO 100% OPEN.
E) GREATER RAMP PERIODS MAY BE REQUIRED TO PREVENT NUISANCE
FREEZESTAT SHUT-DOWNS. ALWAYS USE THE SLOWEST RAMP TIMES POSSIBLE
DURING COLD WEATHER OPERATIONS. IN MOST CASES, EVEN A 1-HOUR RAMP
TIME WILL ALLOW THE AIR HANDLER TO COME TO SETPOINT WITHIN 15-MINUTES
BECAUSE THE DAMPER WILL NEVER DRIVE TO 100% DURING START-UP.
6. PREHEAT CONTROL
A. PREHEAT COIL CONTROL WITH INTEGRAL FACE AND BYPASS DAMPER
1) THE IFBC DAMPERS SHALL BE FULLY OPEN TO BYPASS WHEN THE PREHEAT COIL
CONTROL IS DISABLED.
2) WHEN THE SUPPLY FAN IS OFF AND THE OUTDOOR AIR TEMPERATURE IS 40 DEGF
(ADJ.) OR BELOW, THE NORMALLY-OPEN CONTROL VALVE SHALL BE 100% OPEN.
3) IF THE OUTDOOR AIR TEMPERATURE IS ABOVE 40 DEGF (ADJ), THE FACE AND
BYPASS SHALL BE OPEN TO THE COIL. THE NORMALLY OPEN CONTROL VALVE SHALL
BE CLOSED AND NOT BEGIN TO MODULATE OPEN UNTIL THE ECONOMIZER OSA
DAMPER(S) HAVE BEEN DRIVEN TO MINIMUM POSITION AND THE CHILLED WATER
VALVE IS 100% CLOSED. ONCE THE ALL PREREQUISITE ARE MET, MODULATE CONTROL
VALVE AS REQUIRED TO MAINTAIN A DISCHARGE AIR SENSOR
SETPOINT OF 55 DEG F (ADJ.).
4) IF THE OUTDOOR AIR TEMPERATURE IS BELOW 40 DEGF (ADJ.), THE BMCS SHALL
CLOSE THE FACE AND BYPASS DAMPERS AND OPEN THE CONTROL VALVE TO A 100%
OPEN POSITION.
5) FOR AIR HANDLERS EQUIPPED WITH ECONOMIZERS, THE FACE AND BYPASS
DAMPER(S) SHALL NOT OPEN UNTIL THE ECONOMIZER OSA DAMPER(S) HAVE BEEN
DRIVEN TO MINIMUM POSITION AND THE CHILLED WATER CONTROL VALVE IS 100%
CLOSED. ONCE THE ALL PREREQUISITE ARE MET, MODULATE THE FACE AND BYPASS
DAMPER(S) AS REQUIRED TO MAINTAIN A DISCHARGE AIR SENSOR SETPOINT OF55
DEG F (ADJ.).
7. CHILLED WATER COOLING COIL CONTROL
A. CHILLED WATER COOLING COIL CONTROL
1) WHEN OUTSIDE AIR TEMPERATURE IS ABOVE 55 DEGF (ADJ.) AND CHILLED WATER
IS AVAILABLE, THE CHILLED WATER COOLING COIL CONTROL SHALL BE ENABLED AND
MODULATE TO MAINTAIN THE SUPPLY AIR TEMPERATURE AT 55 DEGF (ADJ.).
2) ON ECONOMIZER EQUIPPED UNITS, THE CHILLED WATER CONTROL VALVE SHALL BE
SEQUENCED WITH THE OSA CONTROL DAMPER(S) AS THE FINAL STAGE OF COOLING.
THE CHILLED WATER CONTROL VALVE SHALL NOT BEGIN TO MODULATE OPEN UNTIL
ALL ECONOMIZER DAMPERS HAVE BEEN SEQUENCED OPEN TO THE FULL 100% OPEN
POSITION BY THE COOLING PID CONTROL LOOP.
3) THE CHILLED WATER CONTROL VALVE SHALL NOT MODULATE OPEN UNTIL ALL
PREHEAT DEVICES HAVE BEEN DISABLED FOR A CONTINUOUS 30 MINUTES.
8. DIRECT INJECTION STEAM HUMIDIFIER CONTROL
A. DIRECT INJECTION STEAM HUMIDIFIER CONTROL:
1) WHEN OUTDOOR AIR TEMPERATURE IS BELOW 50 DEGF (ADJ.), THE HUMIDIFIER
CONTROL SHALL BE ENABLED AND THE NORMALLY-CLOSED TWO POSITION JACKET
STEAM CONTROL VALVE SHALL BE OPEN.
2) IF ALL SPACES SERVED BY THE HUMIDIFIER ARE UNOCCUPIED, THE HUMIDIFIER
SHALL BE OFF.
3) WHEN THE SUPPLY FAN AND RETURN FANS ARE PROVED TO BE ON, THE
HUMIDIFIER CONTROL VALVE (FURNISHED WITH HUMIDIFIER) SHALL MODULATE AS
REQUIRED TO MAINTAIN A RETURN PLENUM RELATIVE HUMIDITY OF 30% (ADJ.).
4) THE HUMIDIFIER CONTROL VALVE SHALL NOT BE ALLOWED TO OPEN UNLESS
TEMPERATURE SWITCH (FURNISHED WITH HUMIDIFIER) IS SATISFIED.
5) THE TEMPERATURE SWITCH SHALL BE INTERFACED DIRECTLY TO THE HUMIDIFIER
CONTROL VALVE INDEPENDENT OF THE BMCS.
6) IF SUPPLY DUCT RELATIVE HUMIDITY EXCEEDS 85% (ADJ.) AS SENSED BY HUMIDITY
SENSOR LOCATED IN THE AIR HANDLING UNIT SUPPLY PLENUM DOWNSTREAM OF
FINAL FILTERS, THE HUMIDIFIER CONTROL VALVE SHALL BE SUPPRESSED.
7) UNITS SHALL HAVE RETURN RELATIVE HUMIDITY SENSOR REGARDLESS OF
WHETHER OR NOT IT HAS A HUMIDIFIER.
10. MISCELLANEOUS
A. POWER MONITORING
1) THE BMCS SHALL MONITOR THE KWH POWER CONSUMPTION OF ALL AIR HANDLER
SUPPLY, RETURN AND EXHAUST AIR FANS OF THE FOLLOWING AIR HANDLER FANS:
A) SUPPLY AIR FANS:
B) RETURN AIR FANS:
C) EXHAUST AIR FANS:
2) CHILLED WATER SUB-METERING: (TBD)
3) HOT WATER SUB-METERING: (TBD)
B. FILTRATION MONITORING:
1) MONITOR PRE-FILTER STATUS (DI):
A) THE BMCS SHALL MONITOR THE PRE-FILTER STATUS (DI) AND ISSUE AN ALARM
TO THE OPERATOR WHEN ACTIVATED.
2) MONITOR HEPA FILTER STATUS (DI):
A) THE BMCS SHALL MONITOR THE FINAL-FILTER STATUS (DI) AND ISSUE AN ALARM
TO THE OPERATOR WHEN ACTIVATED.
3) MONITOR FINAL FILTER STATUS (DI):
A) THE BMCS SHALL MONITOR THE FINAL-FILTER STATUS (DI) AND ISSUE AN ALARM
TO THE OPERATOR WHEN ACTIVATED.
11. RELIEF AIR DAMPER CONTROL
A. THE RELIEF AIR DAMPER SHALL BE MODULATED AS REQUIRED TO MAINTAIN A
BUILDING STATIC PRESSURE OF 0.05 IN WG (ADJ.) RELATIVE TO THE OUTSIDE AIR
PRESSURE.
B. WHEN THE AIR HANDLER IS OFF, THE RELIEF AIR DAMPER SHALL BE CLOSED.
RESET SCHEDULES
AHU RETURN DAMPER RESET FOR MINIMUM OSA
MINIMUM OSA DAMPER POSITION RETURN AIR DAMPER POSITION
0 TO 95% 100% OPEN
100% OPEN 80% OPEN
RETURN PLENUM PRESSURE SETPOINT RESET
OSA ENTHALPY RETURN AIR PRESSURE SETPOINT
17.5 BTU'S PER Lb 0.0 In WC
25 BTU'S PER Lb 0.1 In WC
BO ENGINEER TO ADJUST AND SET FINAL PLENUM PRESSURE SETPOINTS IN FIELD. BMS
CONTRACTOR SHALL HARD CODE THESE SETTINGS IN AHU PROGRAM ONCE FINAL
PARAMETERS ARE ESTABLISHED BY BO ENGINEER.
TIME OF DAY REMOTE STATIC RESET
PHOTO CELL BREAK (DUSK) SP MULTIPLIER INWC
DAY TIME AHU REMOTE SP
SETPOINT 1.0
DUSK AHU REMOTE SP
SETPOINT (AFTER SPECIFIED DELAY) 1 (ADJ.)
BO ENGINEER TO ADJUST AND SET FINAL PLENUM PRESSURE SETPOINTS IN FIELD. BMS
CONTRACTOR SHALL HARD CODE THESE SETTINGS IN AHU PROGRAM ONCE FINAL
PARAMETERS ARE ESTABLISHED BY BO ENGINEER.
SCOPE OF WORKGENERAL NOTES
1. DIAGRAM AND SEQUENCE OF OPERATION IS INFORMATION FROM ORIGINAL SHOP
DRAWINGS AND IS FOR REFERENCE ONLY.
A. COMMISSION AHU TO VERIFY IT IS OPERATING PER THE WRITTEN SEQUENCE OF
OPERATIONS. MODIFY AS REQUIRED.
B. RECALIBRATE ALL PRESSURE TRANSDUCERS.
C. PROVIDE PREVENTATIVE MAINTENANCE ON ALL DAMPERS AND ACTUATORS. CLEAN,
LUBRICATE AND ENSURE SMOOTH OPERATION OF DAMPERS AND ACTUATUORS. VERIFY
DAMPER IS CLOSING AND SEALING SHUT. REPORT ANY WORN DAMPER SEALS AND/OR
MALFUNCTIONING ACTUATORS TO THE VA.
D. CLEAN AND CALIBRATE ALL AIR FLOW MONITORING STATIONS.
E. REVISE SUPPLY FAN CONTROL AS FOLLOWS:
1. SUPPLY FAN SYSTEM SPEED CONTROL
A. THE VARIABLE SPEED DRIVES SHALL BE MODULATED BY A STATIC PRESSURE
SENSOR LOCATED TWO-THIRDS DOWN THE MAIN SUPPLY DUCT, AND A
PROPORTIONAL PLUS INTEGRAL CONTROL SHALL PROVIDE A SIGNAL TO
MODULATE THE VFD SPEED OF THE SUPPLY FAN SYSTEM TO MAINTAIN THE STATIC
PRESSURE SETPOINT (INITIALLY SET TO 0.75” W.C.).
B. SUPPLY AIR STATIC PRESSURE SETPOINT RESET
i. THE SUPPLY AIR STATIC PRESSURE SETPOINT SHALL BE RESET BY POLLING
ALL VAV BOX DAMPER POSITIONS. IF ALL VAV BOX DAMPERS ARE BELOW 80
PERCENT OF FULL OPEN, RESET THE SUPPLY DUCT STATIC PRESSURE
SETPOINT DOWNWARD 0.05” W.C. EVERY 10 MINUTES UNTIL AT LEAST ONE VAV
BOX DAMPER IS 80 PERCENT OF FULL OPEN. IF ANY BOX DAMPER IS MORE
THAN 90 PERCENT OF FULL OPEN, REVERSE THE SEQUENCE (RESET THE
STATIC SETPOINT UPWARD 0.05” W.C. EVERY 5 MINUTES UNTIL ALL VAV BOX
DAMPERS ARE LESS THAN 90 PERCENT OF FULL OPEN. LOW LIMIT OF THE
SETPOINT SHALL BE 0.25” W.C. AND HIGH LIMIT SETPOINT SHALL BE 1.25” W.C.
AUTOMATICALLY DETECT THOSE ZONES THAT MAY BE EXCESSIVELY DRIVING
THE RESET LOGIC AND GENERATE AN ALARM TO THE SYSTEM OPERATOR.
READILY ALLOW OPERATOR REMOVAL OF ZONE(S) FROM THE RESET
ALGORITHM.
F. REVISE/ADD SUPPLY AIR TEMPERATURE RESET AS FOLLOWS:
1. THE RESET SHALL FOLLOW ASHRAE 36.
2. PROVIDE A REQUEST TABLE GRAPHIC.
A. THE COR WILL PROVIDE AN IMPORTANCE MULTIPLIER FOR EACH ZONE.
B. THE IMPORTANCE MULTIPLIER SHALL BE SHOWN ON THE REQUEST TABLE.
C. A PERCENTAGE OF TIME A ZONE HAS BEEN IN REQUEST FOR THE PAST MONTH
SHALL BE PROVIDED.
D. THIS WILL ASSIST IN IDENTIFYING ROGUE ZONES.
3. ROGUE ZONE ALARMS SHALL BE SENT TO THE ENERGY MANAGER.
A. THE COR WILL PROVIDE THE IGNORE REQUEST SETPOINT (ADJ).
B. THE PROGRAM SHALL ALLOW THE TRIM AND RESPONSE PROGRAM TO DISREGARD
ROGUE ZONES UNTIL THEY ARE FIXED.
4. TEMPERATURE RESET
A. WHEN THE HUMIDITY LEVEL IN THE RETURN, EXHAUST, OR ROOM EXCEEDS 61%,
THE TRIM AND RESPOND COMMAND WILL BE BASED ON THE HUMIDITY LEVEL AND
NOT ON THE ROOM TEMPERATURE IN EACH ZONE. ONCE THE HUMIDITY LEVEL
DROP BELOW 57%, THE TRIM AND RESPOND WILL BE BASED ON ROOM
TEMPERATURE IN EACH ZONE.
G. MODIFY RELIEF AIR DAMPER CONTROL FOR MAX SPACE PRESSURE PER SHEET M900.
# DESCRIPTION DATE
1 ADDENDUM 4 01-12-2026
| Sheets |
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| M902 - BUILDING 1 PRESSURIZATION CONTROL SEQUENCES - AHU-5 |
| M903 - BUILDING 1 PRESSURIZATION CONTROL SEQUENCES - AHU-7 |
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| M908 - BUILDING 1 PRESSURIZATION CONTROL SEQUENCES - AHU-24 |
| M909 - BUILDING 1 PRESSURIZATION CONTROL SEQUENCES - AHU-26 |
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