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Commissioning Of Commissioning Of Mission Critical FacilitiesTrey KingProject ManagerE Cube, Inc.
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AIA Quality Assurance
Learning Objectives
1. Given the commissioning requirement to assist in the pre-certification of a bio-safety laboratory, hospital operating room, or isolation room, the attendee will be able to develop and execute a pre-certification script, helping to assure a smooth certification processhelping to assure a smooth certification process.
2. Given the commissioning requirement to assist in the pre-certification of a bio-safety laboratory, hospital operating room, or isolation room, the attendee will be able to establish a detailed Roles and Responsibilities Matrix that will document the activities and level of involvement of all personnel involved in the certification of the laboratory and its systems.
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Cx of Mission Critical Facilities
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Cx Of Mission Critical Facilities
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Cx Of Mission Critical Facilities
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Example Script from a Certifying AgencySystems Failure Testing
Performance acceptance criterion is there are no airflow reversals.
a) Normal operations -> emergency power ❑Pass ❑ Fail ❑ N/Aa) Normal operations emergency power ❑Pass ❑ Fail ❑ N/Ab) Emergency power -> normal operations ❑Pass ❑ Fail ❑ N/Ac) Loss of supply fans (individual, in combination and all) ❑Pass ❑ Fail ❑ N/A
i) Fail AHU-2ii) Fail AHU-3iii) F il AHU 2 & AHU 3iii) Fail AHU-2 & AHU-3iv) Start system
d) Loss of exhaust fans (individual, in combination and all) ❑Pass ❑ Fail ❑ N/Ai) Fail EF-7ii) Fail EF-8)iii) Fail EF-7 & EF-8iv) Start system
e) Verify that upon system failure backdraft/isolation dampers close ❑Pass ❑ Fail ❑ N/A
f) Building automation system maintains operational set points during all failuref) Building automation system maintains operational set points during all failuretesting scenarios and returns to normal operations ❑Pass ❑ Fail ❑ N/Ag) Upon reboot BAS and controllers must retain operational set points
❑Pass ❑ Fail ❑ N/Ah) BAS uninterrupted power supply (UPS) installed ❑Yes ❑ No ❑ N/Ai) R d HVAC/ h t t d if it i t i di ti l i fli) Remove pressure sensor and HVAC/exhaust system and verify it maintains directional airflow
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Cx Script from same Project
# ACTION EXPECTED REACTION OK COMMENTS2 Simulation - 2: Generator Test- Fail normal power
Cx Expansion of lines a & b of Certifying Agency’s script
a Fail normal power to building AH-2, 3, 7, and 8 lose powerUpon sensing pressure loss of AH-7 & 8, Pressure set point =__________the supply valves to BSL close.Exhaust valves to BSL remain open.AH 7 & 8 stack velocity dampers closeAH-7 & 8 stack velocity dampers close.
b Emergency power established AH-2, 3, 7 & 8 ramp to static stpts. Time delay toSupply valves remain closed, Emergency Power _______ sec.
BSL-3 rooms remain under negative pressure at all times.
pp y g y _______Exhaust valves modulate to set point.Supply valves modulate open w/time delay. Time delay+ ________ secondsSteady airflow, exhaust & supply, is estab.
Record room Dp's on separate sheet: Sim 2BSL-3 rooms remain under negative pressure t ll ti Record room Dp s on separate sheet: Sim-2
3 Return to normal power AH-2, 3, 7, and 8 continue to oper. @ Stpts.
Lab exhaust valves remain at setpointsLab supply valves remain at setpoint.
Simulation - 3: Generator Test- Return to normal powerat all times.
pp y pRecord room Dp's on separate sheet: Sim-3BSL-3 rooms remain under negative pressure
at all times.
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Cx Script from same Project (cont.)Cx Expansion of line c of Certifying Agency’s script
# ACTION EXPECTED REACTION OK COMMENTS4
Disconnect power to AH-7 VFD. BAS alarm shows AH-7 failure Both Local & Remote OWSAH 7 OSA stack velocity dampers closes
Simulation - 4: Fail AH-7
AH-7 OSA stack velocity dampers closesDischarge air damper closesAH-8 continues to operate.
VFD @ _____Hz.Duct static pressure. ______VFDs @ _____Hz. _____HzDuct static pressure. ______
AH-8 VFD increases output to maintain static setpoint.AH-2 and AH-3 continue to operate & maintain duct static pressure setpoint. BSL 3 i d ti
Record room Dp's on separate sheet: Sim-45
Disconnect power to AH-8 VFD. BAS alarm shows AH-7 & AH-8 failure Both Local & Remote OWSAH-8 OSA stack velocity dampers closesExhaust Air valves remain open.
Pressure set point =__________S l V l t L b lUpon loss of exhaust duct static pressure
Simulation - 5: Failure of AH-7 and AH-8 (AH-7 has not been restarted)
BSL-3 rooms remain under negative pressure at all times.
Supply Valves to Labs close. BAS stops AH-2 & AH-3, controls operating.
Exhaust valves remain openRecord room Dp's on separate sheet: Sim-5
6Restore power to AH-7 and 8
Simulation - 6: Restore power to AH-7 and AH-8
BSL-3 rooms remain under negative pressure at all times.
AH-7 & 8 stack velocity dampers remain
BAS confirms 7 & 8 start, starts AH-2 & 3.Lab supply valves remain closed.
Time delay= ________ seconds
BSL-3 rooms remain under negative pressure at all times.
closed.
Exhaust valves stage open with 15 second time delays per stpt.
Record room Dp's on separate sheet: Sim-6AF-7 & 8 return to normal operating set points
Lab supply valves stage open at 15 second intervals after a 30 second delay.
Labs return to operating pressure setpoints.
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Importance of Scripting
Why is scripting important?Why is scripting important?
S t C l it• System Complexity • Contractor Buy-in• Documentation• Save Time and Money
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Importance of Scripting
• System complexity○A systematic approach to verify proper
system integrationsystem integration○Multiple players with multiple responsibilities○Advance notice to participants○Establish criteria and identify conflicts early
• Contractor Buy-in○A sense of ownership from the beginning○Leverage their knowledge base
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Importance of Scripting
• Documentation○Contractor’s pre-functional and start-up○Contractor s pre-functional and start-up
documents○Owner’s O&M staff○Future RCx○Facility Baseline
• Save Time and Money○Solve problems prior to actual testing
L D O '○Less Do-Over's
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Scripting for Smoke Evacuation Systems
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Scripting for Black-Out Tests
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Failure Mode Testing of Labs
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Data Center Integrated Systems Tests
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Script Development
Divide the Script into 3 major sectionsDivide the Script into 3 major sections
Contractor Roles and Responsibilities (Pre Testing)Contractor Roles and Responsibilities (Pre-Testing)Failure Mode SimulationsDocumentation
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Script Development
C t t R l & R ibiliti• Contractor Roles & Responsibilities○ Clear delineation of tasks○ Each participant knows and understands their expected level of
involvement○ Established as a part of the overall Script, and as a supplement to
the Cx Plan.- More detail than the Cx Plan- Broken down by specific contractors
» Mechanical and Sheet Metal» Electrical and Lighting» Controls» TAB» CM/GC» CxA
○ Detail installation and pre-testing requirements to be p g qcompleted prior to Cx
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Contractor Roles & Responsibilities
Atrium Smoke Exhaust Pre-Testing Requirements
# Description Type Resp Party Due Done Status
1 Verify that all 8 sets of blow open doors are fully operational Cx Func
CM/GC, Door
Installer08/10/07
Verify that all 8 sets of blow open doors can be opened at same time with one command Cx Func
CM/GC, Door
Installer08/10/07
Installer
2 Verify door end switches confirm open status for each blow open door Cx Func Controls 08/10/07
3 Verify three Relief Air dampers open 100%, and make end switches Cx Func Controls 08/10/07
4 Verify RF-1, RF-2, RF-3 start and ramp up to C F Electrician, 08/10/074 Verify RF 1, RF 2, RF 3 start and ramp up to 100% Cx Func Electrician,
Controls 08/10/07
5 Verify if any RF, (RF-1, RF-2, RF-3) fail, an alarm is sent to the OWS Cx Func Controls 08/10/07
6 Verify the OSA dampers on AH-1 are 100% open and the MA dampers are 100% closed Cx Func Controls 08/10/07
7 Verify that SF-1 and SF-2 are commanded on to 90% on the VFD Cx Func Electrician,
Controls 08/10/07
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Script Development
• Failure Modes sectionFailure Modes section○Most important part of the Script to “get right”○Divide the modes into Simulations and return the
Baseline Simulation when practical - Some modes may have several different simulations
○List the “Action” and “Expected Reaction” of every○List the Action and Expected Reaction of every device involved in a failure mode
○Record actual results in this section also
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Failure Modes Section# ACTION EXPECTED REACTION OK COMMENTS4
Disconnect power to AH-7 VFD. BAS alarm shows AH-7 failure Both Local & Remote OWSAH 7 OSA stack velocity dampers closes
Simulation - 4: Fail AH-7
AH-7 OSA stack velocity dampers closesDischarge air damper closesAH-8 continues to operate.
VFD @ _____Hz.Duct static pressure. ______VFDs @ Hz Hz
AH-8 VFD increases output to maintain static setpoint.AH 2 and AH 3 contin e to operate & VFDs @ _____Hz. _____Hz
Duct static pressure. ______
Record room Dp's on separate sheet: Sim-45
Disconnect power to AH 8 VFD BAS alarm shows AH 7 & AH 8 failure Both Local & Remote OWSSimulation - 5: Failure of AH-7 and AH-8 (AH-7 has not been restarted)
AH-2 and AH-3 continue to operate & maintain duct static pressure setpoint. BSL-3 rooms remain under negative pressure at all times.
Disconnect power to AH-8 VFD. BAS alarm shows AH-7 & AH-8 failure Both Local & Remote OWSAH-8 OSA stack velocity dampers closesExhaust Air valves remain open.
Pressure set point =__________Supply Valves to Labs close.BAS stops AH 2 & AH 3 controls operating
Upon loss of exhaust duct static pressure
BAS stops AH-2 & AH-3, controls operating.Exhaust valves remain open
Record room Dp's on separate sheet: Sim-5BSL-3 rooms remain under negative pressure at all times.
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Script Development
• Documentation○ Especially important to document the Baseline p y p○ NO SAMPELING○ Don’t assume that because a room controls in one Failure Mode, it
will control in similar modes○ Changes to the Sequence of Operation (SoO) in one space may○ Changes to the Sequence of Operation (SoO) in one space may
disrupt the SoO control in adjacent spaces○ The Certifying Authority will measure and record every space
pressure relationship in every failure mode and include this in their reportreport
○ Remember to document System control info:- Pressures and Differentials- Frequencies, Hertz, Amps- Program setpoints and actual control points- Program setpoints and actual control points - Reaction times- Alarm points
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Script Documentation
Room No, BaselineSim-1 Sim-2 Sim-3 Sim-4 Sim-5 Sim-6 Sim-7 Sim-8 Sim-9a Sim-9b Sim-10a Sim-10b Sim-11a Sim-11b Sim-12a Sim-12b
300K to 300S
300S to
ROOM PRESSURES DURING SIMULATIONS
300S to 300M
300R to 318A
318A to318
300R to 300 to318B
Room #300 M Main BSL-3 Corridor300S N th Ai l k
Room Name
300S North Airlock300N South Airlock300K North Exterior Corridor300R West Exterior Corridor318 Vestibule
318A North Shower Out318A North Shower Out318B Gown-In318C South Shower Out319 Support Lab320 Procedure Room321 Animal Holding Roomg322 Animal Holding Room323 Animal Holding Room
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Script Development
Most important lesson from today’s lecture
START EARLYS
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AIA Quality Assurance
Portland Energy Conservation, Inc is a registered provider with The American Institute of Architects Continuing Education Systems. Credit
d l i f hi ill b d CES R dearned on completion of this program will be reported to CES Records for AIA members. Certificates of Completion for non-AIA members are available on request.
Thi i i t d ith th AIA/CES f ti iThis program is registered with the AIA/CES for continuing professional education. As such, it does not include content that may be deemed or construed to be an approval or endorsement by the AIA of any material of construction or any method or manner of handling,
i di t ib ti d li i t i l d t Q tiusing, distributing, or dealing in any material or product. Questions related to specific materials, methods, and services will be addressed at the conclusion of this presentation.
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Thank-you Trey King
Project ManagerE Cube, Inc.