C04_Attachment 3 - Specifications Vol. 2.pdf
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- Attached to
- Construct Sugarcane Research Laboratory Federal contract opportunity
- Solicitation number
- 1232SA26R0027
About this file
This is a specifications document for the construction of a Sugarcane Research Laboratory and office facility in Houma, Louisiana. The solicitation (1232SA26R0027) is issued as a Request for Proposal by the Department of Agriculture Agricultural Research Service and is set aside exclusively for small business concerns with a size standard of $45 million. The applicable North American Industry Classification Standard Code is 236220 for Commercial and Institutional Building Construction.
The specifications document details the technical and performance requirements for the laboratory construction project, including facility design standards, building systems, laboratory equipment specifications, safety requirements, and compliance standards necessary for a functional research facility. All responsible sources may submit proposals, and this represents the only solicitation announcement for this acquisition. The project is structured as a Total Small Business Set-Aside, ensuring competition is limited to qualifying small business contractors capable of meeting the comprehensive construction and equipment installation specifications outlined in the document.
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| File | Type | Posted |
|---|---|---|
| C05_Sol_1232SA26R0027_Amd_0002.pdf | ||
| C04_Attachment 11 - RFI Questions and Answers.xlsx | XLSX spreadsheet | |
| C04_Attachment 10 -Geotechnical Engineering Report.pdf | ||
| C05_Sol_1232SA26R0027_Amd_0001.pdf | ||
| C04_Solicitation_1232SA26R0027.pdf | ||
| C04_Attachment 4 - Drawings 01 - General-Civil-Structural.pdf | ||
| C04_Attachment 7 - Drawings 04 - Mechanical-Electrical.pdf | ||
| C04_Attachment 2 - Specifications Vol. 1.pdf | ||
| C04_Attachment 8 - Wage Determination LA20260046.pdf | ||
| C04_Attachment 1 - Scope of Work 1232SA26R0027.docx | DOCX document | |
| C04_Attachment 5 - Drawings 02 - Architectural.pdf | ||
| C04_Attachment 6 - Drawings 03 - Fire Protection-Plumbing.pdf | ||
| C04_Site Visit Information 1232SA26R0027.pdf | ||
| C04_Attachment 9 - Schedule of Pricing (MS Excel Interactive Document).xlsx | XLSX spreadsheet |
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Specifications Volume Two
Sugarcane Research Laboratory
USDA-ARS
Houma Laboratory Building 501 Bull Run Road Schriever (Houma), LA 70395
Prepared For:
U.S. Department Of Agriculture Agricultural Research Service (ARS) 141 Experiment Station Road Stoneville, MS 38776
Contract No.
12405B21D0003
Task Order No.
1232SA25F0560
Prepared By:
The Johnson-McAdams Firm, P.A.
Greenwood, Mississippi
May 20, 2026
USDA Sugarcane Research Lab 5825
PROJECT TABLE OF CONTENTS
DIVISION 01 - GENERAL REQUIREMENTS
01 00 11 06/20 GENERAL PARAGRAPHS
01 00 21 01/20 CONTRACTOR QUALITY CONTROL
01 01 00 February 29, 2024 GENERAL REQUIREMENTS
01 14 00 11/22, CHG 5: 05/25 WORK RESTRICTIONS
01 33 00 04/06 SUBMITTAL PROCEDURES
01 35 26 01/20 GOVERNMENTAL SAFETY REQUIREMENTS
01 35 29 04/06 SAFETY AND OCCUPATIONAL HEALTH
REQUIREMENTS
01 42 00 02/19 SOURCES FOR REFERENCE PUBLICATIONS
01 45 00 04/06 CONSTRUCTION QUALITY CONTROL
01 50 00 04/06 TEMPORARY FACILITIES AND CONTROLS
01 57 23.00 10 08/19, CHG 5: 08/22 PROJECT IDENTIFICATION
01 57 50 10/19 TEMPORARY ENVIRONMENTAL CONTROLS
01 62 35 08/19, CHG 5: 08/22 RECYCLED/ RECOVERED MATERIALS
01 77 00.00 20 08/19, CHG 5: 08/22 CLOSEOUT PROCEDURES
01 78 00 05/19, CHG 1: 08/21 CLOSEOUT SUBMITTALS
01 78 23 04/06 OPERATION AND MAINTENANCE DATA
01 80 00 05/23, CHG 1: 11/23 GEOTECHNICAL ENGINEERING REPORT
01 91 00.15 05/23, CHG 3: 08/24 BUILDING COMMISSIONING
01 91 19 05/2023 BUILDING ENCLOSURE COMMISSIONING
DIVISION 03 - CONCRETE
03 30 00 02/19, CHG 10: 08/25 CAST-IN-PLACE CONCRETE
03 42 13.00 10 05/16 PLANT-PRECAST CONCRETE PRODUCTS FOR
BELOW GRADE CONSTRUCTION
DIVISION 04 - MASONRY
04 20 00 11/15, CHG 2: 05/19 UNIT MASONRY
DIVISION 05 - METALS
05 05 23.16 08/18 STRUCTURAL WELDING
05 12 00 08/18, CHG 2: 05/21 STRUCTURAL STEEL
05 21 00 05/15, CHG 1: 08/18 STEEL JOIST FRAMING
05 30 00 05/15, CHG 2: 08/18 STEEL DECKS
05 40 00 05/15, CHG 1: 08/18 COLD-FORMED METAL FRAMING
05 50 13 08/24, CHG 1: 08/25 MISCELLANEOUS METAL FABRICATIONS
05 51 00 08/23 ALUMINUM STAIR SYSTEM
05 51 33 02/16, CHG 2: 02/18 METAL LADDERS
05 52 00 02/18, CHG 1: 02/20 METAL RAILINGS
DIVISION 06 - WOOD, PLASTICS, AND COMPOSITES
06 10 00 08/16, CHG 2: 11/18 ROUGH CARPENTRY
06 41 16 08/10, CHG 1: 11/18 PLASTIC-LAMINATE-CLAD ARCHITECTURAL
CABINETS
06 61 16 08/20 SOLID SURFACING FABRICATIONS
06 82 00 08/23 ARCHITECTURAL FIBERGLASS REINFORCED
POLYESTER COLUMN COVERS
DIVISION 07 - THERMAL AND MOISTURE PROTECTION
07 21 16 11/11, CHG 4: 08/18 MINERAL FIBER BLANKET INSULATION
PROJECT TABLE OF CONTENTS Page 1
(ACOUSTICAL INSULATION)
07 27 10 08/19, CHG 1: 02/20 BUILDING AIR BARRIER SYSTEM
07 27 36 05/17, CHG 3: 02/23 SPRAY FOAM AIR BARRIERS
07 41 63 08/25 FABRICATED ROOF PANEL ASSEMBLIES (FOR
CANOPY BID OPTION #1)
07 42 63 05/11, CHG 4: 08/20 FABRICATED WALL PANEL ASSEMBLIES
07 53 23 05/12, CHG 2: 08/18 ETHYLENE-PROPYLENE-DIENE-MONOMER
ROOFING
07 60 00 05/17 FLASHING AND SHEET METAL
07 61 14 08/16 STEEL STANDING SEAM ROOFING
07 84 00 05/10, CHG 1: 08/13 FIRESTOPPING
07 92 00 08/16, CHG 3: 11/18 JOINT SEALANTS
DIVISION 08 - OPENINGS
08 11 13 08/20 STEEL DOORS AND FRAMES
08 11 16 05/17, CHG 2: 11/18 ALUMINUM DOORS AND FRAMES
08 14 00 08/16, CHG 1: 08/18 WOOD DOORS
08 31 00 05/17, CHG 1: 08/18 ACCESS DOORS AND PANELS
08 33 23 08/20, CHG 1: 02/22 OVERHEAD COILING DOORS
08 44 00 05/19 CURTAIN WALL AND GLAZED ASSEMBLIES
08 51 13 05/19 ALUMINUM WINDOWS
08 71 00 02/16, CHG 4: 02/22 DOOR HARDWARE
08 81 00 05/19 GLAZING
08 91 00 08/20 METAL WALL AND DOOR LOUVERS
DIVISION 09 - FINISHES
09 06 00 08/22 SCHEDULES FOR FINISHES
09 22 00 02/10, CHG 2: 08/18 SUPPORTS FOR GYPSUM BOARD
09 29 00 08/16, CHG 4: 02/20 GYPSUM BOARD
09 30 10 08/20 CERAMIC, QUARRY, AND GLASS TILING
09 51 00 08/20 ACOUSTICAL CEILINGS
09 65 00 08/10, CHG 3: 08/18 RESILIENT FLOORING
09 81 16 07/23 ACOUSTIC BLANKET INSULATION
09 90 00 02/21 PAINTS AND COATINGS
09 97 13.00 40 11/19 STEEL COATINGS (STRUCTURAL STEEL)
DIVISION 10 - SPECIALTIES
10 14 10 08/17, CHG 1: 11/18 EXTERIOR SIGNAGE
10 14 20 08/17 INTERIOR SIGNAGE
10 21 13 08/20 TOILET COMPARTMENTS
10 26 00 08/20 WALL PROTECTION
10 28 13 08/20 TOILET ACCESSORIES
10 44 16 11/19 FIRE EXTINGUISHERS
DIVISION 11 - EQUIPMENT
11 53 00 05/11, CHG 1: 11/17 LABORATORY EQUIPMENT AND FUMEHOODS
11 71 00 05/20 STERILIZERS AND ASSOCIATED EQUIPMENT
DIVISION 21 - FIRE SUPPRESSION
21 13 13 08/20 WET PIPE SPRINKLER SYSTEMS, FIRE
PROTECTION
DIVISION 22 - PLUMBING
PROJECT TABLE OF CONTENTS Page 2
22 00 00 05/24, CHG 1: 11/24 PLUMBING, GENERAL PURPOSE
DIVISION 23 - HEATING, VENTILATING, AND AIR CONDITIONING (HVAC)
23 05 15 03/13 COMMON PIPING FOR HVAC
23 05 93 11/15 TESTING, ADJUSTING, AND BALANCING FOR
HVAC
23 07 00 02/13, CHG 7: 05/20 THERMAL INSULATION FOR MECHANICAL
SYSTEMS
23 08 00 05/23, CHG 1: 08/24 COMMISSIONING OF MECHANICAL AND
PLUMBING SYSTEMS
23 09 00 02/19, CHG 3: 05/21 INSTRUMENTATION AND CONTROL FOR HVAC
23 09 13 11/15, CHG 2: 05/21 INSTRUMENTATION AND CONTROL DEVICES
FOR HVAC
23 09 23 02/19, CHG 1: 02/20 BACNET DIRECT DIGITAL CONTROL FOR HVAC
AND OTHER BUILDING CONTROL SYSTEMS
23 21 23 08/17 HYDRONIC PUMPS
23 29 23 02/20, CHG 1: 05/21 ADJUSTABLE SPEED DRIVE (ASD) SYSTEMS
UNDER 600 VOLTS
23 30 00 05/20 HVAC AIR DISTRIBUTION
23 34 23 02/17 LABORATORY EXHAUST FANS
23 36 00 05/16 AIR TERMINAL UNITS
23 37 13 05/15 DIFFUSERS, REGISTERS, AND GRILLES
23 52 00 04/08, CHG 5: 11/19 HEATING BOILERS
23 64 10 11/16, CHG 2: 08/18 WATER CHILLERS, VAPOR COMPRESSION TYPE
23 73 13 05/17 MODULAR INDOOR CENTRAL-STATION
AIR-HANDLING UNITS
23 74 33 05/17 DEDICATED OUTSIDE AIR UNITS
DIVISION 25 - INTEGRATED AUTOMATION
25 05 11 08/24 CYBERSECURITY FOR FACILITY-RELATED
CONTROL SYSTEMS
DIVISION 26 - ELECTRICAL
26 05 73 08/23 POWER SYSTEM STUDIES
26 20 00 05/25, CHG 2: 02/26 INTERIOR DISTRIBUTION SYSTEM
26 29 23 02/26 ADJUSTABLE SPEED DRIVE (ASD) SYSTEMS
UNDER 600 VOLTS
26 32 15 02/26 ENGINE-GENERATOR SET STATIONARY
15-2500 KW, WITH AUXILIARIES
26 41 00 08/23 LIGHTNING PROTECTION SYSTEM
26 51 00 05/20, CHG 2: 11/21 INTERIOR LIGHTING
26 56 00 08/21 EXTERIOR LIGHTING
DIVISION 27 - COMMUNICATIONS
27 10 00 05/25 BUILDING TELECOMMUNICATIONS CABLING
SYSTEM
DIVISION 28 - ELECTRONIC SAFETY AND SECURITY
28 08 10 08/23 ELECTRONIC SECURITY SYSTEM ACCEPTANCE
TESTING
28 10 05 05/24 ELECTRONIC SECURITY SYSTEMS (ESS)
28 31 76 08/20 INTERIOR FIRE ALARM AND MASS
NOTIFICATION SYSTEM, ADDRESSABLE
PROJECT TABLE OF CONTENTS Page 3
DIVISION 31 - EARTHWORK
31 00 00 08/23 EARTHWORK
31 31 16.13 08/22, CHG 1: 11/23 CHEMICAL TERMITE CONTROL
31 62 19 11/20, CHG 2: 02/24 TIMBER PILES
DIVISION 32 - EXTERIOR IMPROVEMENTS
32 11 20 05/22 SUBBASE FOR FLEXIBLE PAVING
32 11 26 05/20 HOT-MIX BITUMINOUS BASE COURSE FOR
ROADS AND STREETS
32 17 23.16 11/24 ROAD AND PARKING LOT PAVEMENT MARKINGS
32 92 19 08/17, CHG 1: 08/21 SEEDING
DIVISION 33 - UTILITIES
33 40 00 11/21 STORMWATER UTILITIES
-- End of Project Table of Contents --
PROJECT TABLE OF CONTENTS Page 4
SECTION 21 13 13
WET PIPE SPRINKLER SYSTEMS, FIRE PROTECTION
08/20
PART 1 GENERAL
NOTE: See Drawing FP-001 for Dry Pipe Fire Protection for BID OPTION #1.
Provide new fire pump controller and transfer switch as outlined on drawings.
1.1 REFERENCES
The publications listed below form a part of this specification to the extent referenced. The publications are referred to within the text by the basic designation only.
AMERICAN SOCIETY OF MECHANICAL ENGINEERS (ASME)
ASME B16.1 (2020) Gray Iron Pipe Flanges and Flanged Fittings Classes 25, 125, and 250
ASME B16.3 (2021) Malleable Iron Threaded Fittings, Classes 150 and 300
ASME B16.4 (2021) Gray Iron Threaded Fittings;
Classes 125 and 250
ASME B16.18 (2021) Cast Copper Alloy Solder Joint Pressure Fittings
ASME B16.21 (2021) Nonmetallic Flat Gaskets for Pipe Flanges
ASME B16.22 (2021) Wrought Copper and Copper Alloy Solder Joint Pressure Fittings
ASME B16.26 (2018) Standard for Cast Copper Alloy Fittings for Flared Copper Tubes
AMERICAN WATER WORKS ASSOCIATION (AWWA)
AWWA C104/A21.4 (2022) Cement-Mortar Lining for Ductile-Iron Pipe and Fittings for Water
AWWA C110/A21.10 (2021) Ductile-Iron and Gray-Iron Fittings
AWWA C111/A21.11 (2017) Rubber-Gasket Joints for Ductile-Iron Pressure Pipe and Fittings
ASTM INTERNATIONAL (ASTM)
ASTM A47/A47M (1999; R 2022; E 2022) Standard Specification for Ferritic Malleable Iron Castings
ASTM A53/A53M (2024) Standard Specification for Pipe, Steel, Black and Hot-Dipped, Zinc-Coated, Welded and Seamless
SECTION 21 13 13 Page 1
ASTM A135/A135M (2021) Standard Specification for Electric-Resistance-Welded Steel Pipe
ASTM A153/A153M (2023) Standard Specification for Zinc Coating (Hot-Dip) on Iron and Steel Hardware
ASTM A183 (2014; R 2020) Standard Specification for Carbon Steel Track Bolts and Nuts
ASTM A536 (2024) Standard Specification for Ductile Iron Castings
ASTM B62 (2017) Standard Specification for Composition Bronze or Ounce Metal Castings
ASTM B75/B75M (2020) Standard Specification for Seamless Copper Tube
ASTM B88 (2022) Standard Specification for Seamless Copper Water Tube
FM GLOBAL (FM)
FM APP GUIDE (updated on-line) Approval Guide https://www.approvalguide.com/
INTELLIGENCE COMMUNITY STANDARD (ICS)
ICS 705-1 (2010) Physical and Technical Security Standard for Sensitive Compartmented Information Facilities
MANUFACTURERS STANDARDIZATION SOCIETY OF THE VALVE AND FITTINGS
INDUSTRY (MSS)
MSS SP-71 (2018) Gray Iron Swing Check Valves, Flanged and Threaded Ends
NATIONAL FIRE PROTECTION ASSOCIATION (NFPA)
NFPA 13 (2025; Standard for the Installation of Sprinkler Systems
NFPA 24 (2022) Standard for the Installation of Private Fire Service Mains and Their Appurtenances
NFPA 291 (2022) Recommended Practice for Fire Flow Testing and Marking of Hydrants
NATIONAL INSTITUTE FOR CERTIFICATION IN ENGINEERING TECHNOLOGIES
(NICET)
NICET 1014-7 (2012) Program Detail Manual for Certification in the Field of Fire Protection Engineering Technology (Field Code 003) Subfield of Automatic Sprinkler
SECTION 21 13 13 Page 2
System Layout
UNDERWRITERS LABORATORIES (UL)
UL 199 (2020) UL Standard for Safety Automatic Sprinklers for Fire-Protection Service
UL 262 (2004; Reprint Oct 2011) Gate Valves for Fire-Protection Service
UL 312 (2022) UL Standard for Safety Check Valves for Fire-Protection Service
UL 668 (2004; Reprint Oct 2021) UL Standard for Safety Hose Valves for Fire-Protection Service
UL 789 (2004; Reprint May 2017) UL Standard for Safety Indicator Posts for Fire-Protection Service
UL Fire Prot Dir UL Product IQ (updated online) at https://productiq.ulprospector.com/en
1.2 SYSTEM DESCRIPTION
Provide wet pipe sprinkler system(s) in areas indicated on the drawings.
Except as modified herein, the system must meet the requirements of NFPA 13 .
Pipe sizes which are not indicated on the Contract drawings must be determined by hydraulic calculations. If bid option is exercised for dry-pipe system, install in accordance with NFPA 13 and criteria indicated.
1.2.1 Hydraulic Design
1.2.1.1 Basis for Calculations
A waterflow test was performed on 04/16/26 at on-site fire hydrant and resulted in a static pressure of 58 psi with a residual pressure of 16 psi while flowing 557 gpm. Current flow cannot support the bid option for dry-pipe system. See notes. When performing flow test or pump test DO NOT allow the street main pressure to drop below 20 psi. Perform a fire hydrant flow test prior to shop drawing submittal in accordance with NFPA 291 . Results must include hydrant elevations relative to the building and hydrant number/identifiers for the tested hydrants, including which were flowed, which had a gauge. This information must be presented in a tabular form if multiple hydrants were flowed. The results must be included with the hydraulic calculations. Hydraulic calculations must be based on flow test noted in this paragraph, unless Fire Protection Engineer and approved by Contracting Officer. Hydraulic calculations must be based upon the Hazen-Williams formula with a "C" value noted in NFPA 13 for piping. Hydraulic calculations must be based on operation of the existing fire pump(s). The minimum residual pressure in a service lateral (lead-in) at the 150 percent of the fire pump rated flow must be 20 psi at the inlet to the backflow preventer.
1.2.1.2 Hydraulic Calculations
a. Water supply curves and system requirements must be plotted on semi-logarithmic graph (N^1.85) paper so as to present a summary of
SECTION 21 13 13 Page 3 the complete hydraulic calculation.
b. Provide a summary sheet listing sprinklers in the design area and their respective hydraulic reference points, elevations, minimum discharge pressures and minimum flows. Elevations of hydraulic reference points (nodes) must be indicated.
c. Documentation must identify each pipe individually and the nodes connected thereto. Indicate the diameter, length, flow, velocity, friction loss, number and type fittings, total friction loss in the pipe, equivalent pipe length and Hazen-Williams coefficient for each pipe.
d. Where the sprinkler system is supplied by interconnected risers, the sprinkler system must be hydraulically calculated using the hydraulically most demanding single riser. The calculations must not assume the simultaneous use of more than one riser.
e. All calculations must include the backflow preventer manufacturer's stated friction loss at the design flow or 8 psi for double check backflow preventer, whichever is greater.
f. All calculations must be performed back to the actual location of the flow test, taking into account the direction of flow in the service main at the test location.
g. For gridded systems, calculations must show peaking of demand area friction loss to verify that the hydraulically most demanding area is being used. A flow diagram indicating the quantity and direction of flows must be included.
1.2.1.3 Design Criteria
Hydraulically design the system to discharge a minimum density as indicated on the drawings. Hydraulic calculations must be in accordance with the Area/Density Method of NFPA 13 . Add an allowance for exterior hose streams of 250 gpm to the sprinkler system demand at the fire hydrant shown on the drawings closest to the point where the water service enters the building.
1.2.2 Sprinkler Coverage
Sprinklers must be uniformly spaced on branch lines. Provide coverage throughout 100 percent of the area noted on the Contract drawings. This includes, but is not limited to, telephone rooms, electrical equipment rooms (regardless of the fire resistance rating of the enclosure), boiler rooms, switchgear rooms, transformer rooms, attached electrical vaults and other electrical and mechanical spaces. Coverage per sprinkler must be in accordance with NFPA 13 . Provide sprinklers below all obstructions in accordance with NFPA 13 .
1.2.3 Qualified Fire Protection Engineer (QFPE)
An individual who is a licensed professional engineer (P.E.) who has passed the fire protection engineering written examination administered by the National Council of Examiners for Engineering and Surveying (NCEES) and has relevant fire protection engineering experience. Services of the QFPE must include:
SECTION 21 13 13 Page 4
a. Reviewing SD-02, SD-03, and SD-05 submittal packages for completeness and compliance with the provisions of this specification. Working (shop) drawings and calculations must be prepared by, or prepared under the immediate supervision of, the QFPE. The QFPE must affix their review stamp with signature to the shop drawings, calculations, and material data sheets, indicating approval prior to submitting the shop drawings to the DFPE. Also see QFPE notes on drawings for fire alarm and sprinklers.
b. Provide a letter documenting that the SD-02, SD-03, and SD-05 submittal package has been reviewed and noting all outstanding comments.
c. Performing in-progress construction surveillance prior to installation of ceilings (rough-in inspection).
d. Witnessing pre-Government functional performance testing and performing a final installation review.
e. Signing applicable certificates under SD-07.
1.3 SUBMITTALS
Government approval is required for submittals with a "G" or "S" classification. Submittals not having a "G" or "S" classification are for Contractor Quality Control approval. Partial submittals and submittals not fully complying with NFPA 13 and this specification section must be returned disapproved without review. SD-02, SD-03 and SD-05 must be submitted simultaneously.
Shop drawings (SD-02), product data (SD-03) and calculations (SD-05) must be prepared by the designer and combined and submitted as one complete package. The QFPE must review the SD-02/SD-03/SD-05 submittal package for completeness and compliance with the Contract provisions prior to submission to the Government. The QFPE must provide a Letter of Confirmation that they have reviewed the submittal package for compliance with the contract provisions. This letter must include their professional engineer stamp and signature. Partial submittals and submittals not reviewed by the QFPE must be returned disapproved without review.
Submit the following in accordance with Section 01 33 00 SUBMITTAL
PROCEDURES:
SD-01 Preconstruction Submittals
Qualified Fire Protection Engineer (QFPE); G
Sprinkler System Designer; G
Sprinkler System Installer; G
SD-02 Shop Drawings
Shop Drawing; G
SD-03 Product Data
Pipe; G
SECTION 21 13 13 Page 5
Fittings; G
Valves, including gate, check, butterfly, and globe; G
Relief Valves; G
Sprinklers ; G
Pipe Hangers and Supports; G
Sprinkler Alarm Switch; G
Valve Supervisory (Tamper) Switch; G
Air Vent; G
Seismic Bracing; G
Nameplates; G
SD-05 Design Data
Seismic Bracing; G
Load calculations for sizing of seismic bracing
Hydraulic Calculations; G
SD-06 Test Reports
Test Procedures; G
SD-07 Certificates
Verification of Compliant Installation; G
Request for Government Final Test; G
SD-10 Operation and Maintenance Data
Operating and Maintenance (O&M) Instructions; G
Spare Parts Data; G
SD-11 Closeout Submittals
As-built drawings
1.4 QUALITY ASSURANCE
1.4.1 Preconstruction Submittals
Within 36 days of contract award but no less than 14 days prior to commencing work on site, the prime Contractor must submit the following for review and approval. SD-02, SD-03 and SD-05 submittals received prior to the review and approval of the qualifications will be returned Disapproved Without Review.
SECTION 21 13 13 Page 6
1.4.1.1 Shop Drawing
Electronic and 2 hard copies of the shop drawings, no later than 28 days prior to the start of system installation. Working drawings conforming to the requirements prescribed in NFPA 13 and must be no smaller than the Contract Drawings. Each set of drawings must include the following:
a. A descriptive index with drawings listed in sequence by number. A legend sheet identifying device symbols, nomenclature, and conventions used in the package.
b. Floor plans drawn to a scale not less than 1/8-inch equals 1-foot clearly showing locations of devices, equipment, risers, and other details required to clearly describe the proposed arrangement.
c. Actual center-to-center dimensions between sprinklers on branch lines and between branch lines; from end sprinklers to adjacent walls; from walls to branch lines; from sprinkler feed mains, cross mains and branch lines to finished floor and roof or ceiling. A detail must show the dimension from the sprinkler and sprinkler deflector to the ceiling in finished areas.
d. Longitudinal and transverse building sections showing typical branch line and cross main pipe routing, elevation of each typical sprinkler above finished floor and elevation of "cloud" or false ceilings in relation to the building ceilings.
e. Plan and elevation views which establish that the equipment will fit the allotted spaces with clearance for installation and maintenance.
f. Riser layout drawings drawn to a scale of not less than 1/2-inch equals 1-foot to show details of each system component, clearances between each other and from other equipment and construction in the room.
g. Details of each type of riser assembly, pipe hanger, sway bracing for earthquake protection, and restraint of underground water main at point-of-entry into the building, and electrical devices and interconnecting wiring. The dimension from the edge of vertical piping to the nearest adjacent wall(s) must be indicated on the drawings when vertical piping is located in stairs or other portions of the means of egress.
h. Details of each type of pipe hanger, seismic bracing/restraint and related components.
i. Include fire pump curve with shop drawings and hydraulic calculations.
1.4.1.2 Product Data
Electronic and 2 hard copies of annotated catalog data to show the specific model, type, and size of each item. Catalog cuts must also indicate the NRTL listing. The data must be highlighted to show model, size, options, and other pertinent information, that are intended for consideration. Data must be adequate to demonstrate compliance with all contract requirements. Product data for all equipment must be combined into a single submittal.
SECTION 21 13 13 Page 7
1.4.1.3 Hydraulic Calculations
Submit electronic and 2 hard copies. Calculations must be as outlined in NFPA 13 except that calculations must be performed by computer using software intended specifically for fire protection system design using the design data shown on the drawings. Calculations must include isometric diagram indicating hydraulic nodes and pipe segments. Include fire pump curve with submittal.
1.4.1.4 Operating and Maintenance (O&M) Instructions
Submit in accordance with Section 01 78 23 OPERATION AND MAINTENANCE DATA as supplemented and modified by this specification section.
Provide two manuals and one pdf version on electronic media. The manuals must include the manufacturer's name, model number, parts list, list of parts and tools that should be kept in stock by the owner for routine maintenance, troubleshooting guide, and recommended service organization (including address and telephone number) for each item of equipment. Each service organization submitted must be capable of providing 4-hour on-site response to a service call on an emergency basis.
Submit spare parts data for each different item of material and equipment specified. The data must include a complete list of parts and supplies, and a list of parts recommended by the manufacturer to be replaced after 1-year and 3 years of service. Include a list of special tools and test equipment required for maintenance and testing of the products supplied.
1.4.2 Qualifications
1.4.2.1 Sprinkler System Designer
The sprinkler system designer must be certified as a Level IV Technician by National Institute for Certification in Engineering Technologies (NICET) in the Water-Based Systems Layout subfield of Fire Protection Engineering Technology in accordance with NICET 1014-7 .
1.4.2.2 Sprinkler System Installer
The sprinkler system installer must be regularly engaged in the installation of the type and complexity of system specified in the contract documents, and must have served in a similar capacity for at least three systems that have performed in the manner intended for a period of not less than 6 months.
1.4.3 Regulatory Requirements
Equipment and material must be listed or approved. Listed or approved, as used in this Section, means listed, labeled or approved by a Nationally Recognized Testing Laboratory (NRTL) such as UL Fire Prot Dir or FM APP GUIDE. The omission of these terms under the description of an item or equipment described must not be construed as waiving this requirement. All listings or approvals by testing laboratories must be from an existing ANSI or UL published standard. The recommended practices stated in the manufacturer's literature or documentation are mandatory requirements.
SECTION 21 13 13 Page 8
1.5 DELIVERY, STORAGE, AND HANDLING
Protect all equipment delivered and placed in storage from the weather, excessive humidity and temperature variations, dirt and dust, or other contaminants. All pipes must be either capped or plugged until installed.
1.6 EXTRA MATERIALS
Spare sprinklers and wrench(es) must be provided as spare parts in accordance with NFPA 13 .
PART 2 PRODUCTS
2.1 MATERIALS AND EQUIPMENT
2.1.1 Standard Products
Provide materials, equipment, and devices listed for fire protection service when so required by NFPA 13 or this specification. Select material from one manufacturer, where possible, and not a combination of manufacturers, for a classification of material. Material and equipment must be standard products of a manufacturer regularly engaged in the manufacture of the products for at least 2 years prior to bid.
Provide new fire pump controller and transfer switch as indicated on drawings.
If canopy bid option is exercised, provide dry-pipe sprinkler system and nitrogen generator in accordance with NFPA 13, manufacturer recommendations, and criteria on drawings. Project QFPE must ensure that the system is designed and installed to be in the best interest of the customer for longevity and low maintenance.
2.1.2 Nameplates
Major components of equipment must have the manufacturer's name, address, type or style, model or serial number, catalog number, date of installation, installing Contractor's name and address, and the contract number provided on a new name plate permanently affixed to the item or equipment. Nameplates must be etched metal or plastic, permanently attached by screws to control units, panels or adjacent walls.
2.1.3 Identification and Marking
Pipe and fitting markings must include name or identifying symbol of manufacturer and nominal size. Pipe must be marked with ASTM designation. Valves and equipment markings must have name or identifying symbol of manufacturer, specific model number, nominal size, name of device, arrow indicating direction of flow, and position of installation (horizontal or vertical), except if valve can be installed in either position. Markings must be included on the body casting or on an etched or stamped metal nameplate permanently on the valve or cover plate.
2.1.4 Pressure Ratings
Valves, fittings, couplings, alarm switches, and similar devices must be rated for the maximum working pressures that can be experienced in the system, but in no case less than 175 psi.
SECTION 21 13 13 Page 9
2.2 UNDERGROUND PIPING COMPONENTS
2.2.1 Pipe
Pipe must comply with NFPA 24 . Minimum pipe size is 4 inches. A continuous section of welded stainless steel fire water service piping from a point outside the building perimeter to a flanged fitting at least 1-foot above the finished floor within the building is acceptable.
2.2.2 Fittings and Gaskets
Fittings must be ductile-iron conforming to AWWA C110/A21.10 with cement mortar lining conforming to AWWA C104/A21.4 . Gaskets must be suitable in design and size for the pipe with which such gaskets are to be used.
Gaskets for ductile-iron pipe joints must conform to AWWA C111/A21.11 .
2.2.3 Gate Valve and Indicator Posts
Installation must comply with NFPA 24 . Gate valves for use with indicator post must conform to UL 262 . Indicator posts must conform to UL 789 .
Provide each indicator post with one coat of primer and two coats of red enamel paint.
2.2.4 Valve Boxes
Except where indicator posts are provided, for each buried valve, provide a cast-iron, ductile-iron, or plastic valve box of a suitable size.
Plastic boxes must be constructed of acrylonitrile-butadiene-styrene (ABS) or inorganic fiber-reinforced black polyolefin. Provide cast-iron, ductile-iron, or plastic cover for valve box with the word "WATER" cast on the cover. The minimum box shaft diameter must be 5.25 inches. Coat cast-iron and ductile-iron boxes with bituminous paint applied to a minimum dry-film thickness of 10 mils.
2.2.5 Buried Utility Warning and Identification Tape
Provide detectable aluminum foil plastic backed tape or detectable magnetic plastic tape manufactured specifically for warning and identification of buried piping. Tape must be detectable by an electronic detection instrument. Provide tape, 3 inches minimum width, color coded for the utility involved with warning and identification imprinted in bold block letters continuously and repeatedly over the entire tape length.
Warning and identification must read "CAUTION BURIED WATER PIPING BELOW" or similar wording. Use permanent code and letter coloring unaffected by moisture and other substances contained in trench backfill material.
2.3 ABOVEGROUND PIPING COMPONENTS
2.3.1 Steel Piping Components
2.3.1.1 Steel Pipe
Except as modified herein, steel pipe must be black as permitted by NFPA 13 and conform to the applicable provisions of ASTM A53/A53M, ASTM A135/A135M or ASTM A153/A153M .
Steel pipe must be minimum Schedule 40 for sizes 2 inches and less; and minimum Schedule 10 for sizes larger than 2 inches. Steel piping with wall thickness less than Schedule 40 must not be threaded.
SECTION 21 13 13 Page 10
2.3.1.2 Fittings
Fittings must be welded, threaded, or grooved-end type. Threaded fittings must be cast-iron conforming to ASME B16.4 , malleable-iron conforming to ASME B16.3 or ductile-iron conforming to ASTM A536. Plain-end fittings with mechanical couplings, fittings that use steel gripping devices to bite into the pipe, steel press fittings and field welded fittings are not permitted. Fittings, mechanical couplings, and rubber gaskets must be supplied by the same manufacturer. Threaded fittings must use Teflon tape or manufacturer's approved joint compound. Saddle tees using rubber gasketed fittings are permitted only when connecting to existing piping for additions or modifications. Saddle tees must use a connection method that completely wraps around the pipe. Reducing couplings are not permitted except as allowed by NFPA 13 .
2.3.1.3 Grooved Mechanical Joints and Fittings
Joints and fittings must be designed for not less than 175 psi service and the product of the same manufacturer. Field welded fittings must not be used. Fitting and coupling housing must be malleable-iron conforming to ASTM A47/A47M, Grade 32510; ductile-iron conforming to ASTM A536, Grade 65-45-12. Rubber gasketed grooved-end pipe and fittings with mechanical couplings are permitted in pipe sizes 2 inches and larger. Gasket must be the flush type that fills the entire cavity between the fitting and the pipe. Nuts and bolts must be heat-treated steel conforming to ASTM A183 and must be cadmium-plated or zinc-electroplated.
2.3.1.4 Flanges
Flanges must conform to NFPA 13 and ASME B16.1 . Gaskets must be non-asbestos compressed material in accordance with ASME B16.21 , 1/16-inch thick, and full face or self-centering flat ring type.
2.3.2 Copper Tube Components
2.3.2.1 Copper Tube
Copper tube must conform to ASTM B88, Types L and M.
2.3.2.2 Copper Fittings and Joints
Cast copper alloy solder-joint pressure fittings must conform to ASME B16.18 and wrought copper and bronze solder-joint pressure fittings must conform to ASME B16.22 and ASTM B75/B75M. Cast copper alloy fittings for flared copper tube must conform to ASME B16.26 and ASTM B62. Brass or bronze adapters for brazed tubing may be used for connecting tubing to flanges and to threaded ends of valves and equipment.
2.3.3 Pipe Hangers and Supports
Provide galvanized pipe hangers, supports and seismic bracing in accordance with NFPA 13 . Design and install seismic protection in accordance with the requirements of NFPA 13 section titled "Protection of Piping Against Damage Where Subject to Earthquakes for Seismic Design Category "D".
SECTION 21 13 13 Page 11
2.3.4 Valves
Provide valves of types approved for fire service. Valves must open by counterclockwise rotation.
2.3.4.1 Control Valve
Manually operated sprinkler control/gate valve must be outside stem and yoke (OS&Y) type and must be listed.
2.3.4.2 Check Valves
Check valves must comply with UL 312 . Check valves 4 inches and larger must be of the swing type, have a clear waterway and meet the requirements of MSS SP-71 , for Type 3 or 4. Inspection plate must be provided on valves larger than 6 inches.
2.3.4.3 Hose Valve
Valve must comply with UL 668 .
2.3.5 Riser Check Valves
Provide riser check valve, pressure gauges and main drain.
2.4 ALARM INITIATING AND SUPERVISORY DEVICES
2.4.1 Sprinkler Alarm Switch
Vane or pressure-type flow switch(es). Connection of switch must be by the fire alarm installer. Vane type alarm actuating devices must have mechanical diaphragm controlled retard device adjustable from 10 to 60 seconds and must instantly recycle.
2.4.2 Valve Supervisory (Tamper) Switch
Switch must be integral to the control valve or suitable for mounting to the type of control valve to be supervised open. The switch must be tamper resistant and contain SPDT (Form C) contacts arranged to transfer upon removal of the housing cover or closure of the valve of more than two rotations of the valve stem.
2.5 BACKFLOW PREVENTION ASSEMBLY
Existing at fire pump.
2.6 FIRE DEPARTMENT CONNECTION
Existing. Provide new signage as indicated on drawings.
2.7 SPRINKLERS
Sprinklers must comply with UL 199 and NFPA 13 . Sprinklers with internal O-rings are not acceptable. Sprinklers in high heat areas including attic spaces or in close proximity to unit heaters must have temperature classification in accordance with NFPA 13 . Extended coverage sprinklers are permitted for loading docks, residential occupancies and high-piled storage applications only.
SECTION 21 13 13 Page 12
2.7.1 Pendent Sprinkler
Pendent sprinkler must be quick-response type with nominal K-factor of as indicated on drawings. Pendent sprinklers must have a polished chrome finish. Assembly must include an integral escutcheon.
2.7.2 Upright Sprinkler
Upright sprinkler must be quick-response type and have a nominal K-factor of 8.0.
2.7.3 Sidewall Sprinkler
Sidewall sprinkler must be the quick-response type. Sidewall sprinkler must have a nominal K-factor of appropriate for hazard. Sidewall sprinkler must have a polished-chrome finish.
2.7.4 Concealed Sprinkler
Concealed sprinkler must be quick-response type and have a nominal K-factor of appropriate for hazard. Coverplate must be white.
2.8 ACCESSORIES
2.8.1 Sprinkler Cabinet
Provide spare sprinklers in accordance with NFPA 13 and must be placed in a suitable metal or plastic cabinet of sufficient size to accommodate all the spare sprinklers and wrenches in designated locations. Spare sprinklers must be representative of, and in proportion to, the number of each type and temperature rating of the sprinklers installed as required by NFPA 13 . At least one wrench of each type required must be provided.
2.8.2 Pendent Sprinkler Escutcheon
Escutcheon must be one-piece metallic type with a depth of less than 3/4-inch and suitable for installation on pendent sprinklers. The escutcheon must have a factory finish that matches the pendent sprinkler.
2.8.3 Pipe Escutcheon
Provide split hinge metal plates for piping entering walls, floors, and ceilings in exposed spaces. Provide polished stainless steel plates or chromium-plated finish on copper alloy plates in finished spaces. Provide paint finish on metal plates in unfinished spaces.
2.8.4 Sprinkler Guard
Listed guard must be a steel cage designed to encase the sprinkler and protect it from mechanical damage. See drawings for intended concept.
Guards must be provided on sprinklers located within 7 feet of the floor.
2.8.5 Relief Valve
Relief valves must be listed and installed at the riser in accordance with
NFPA 13 .
SECTION 21 13 13 Page 13
2.8.6 Air Vent
Air vents must be of the automatic type and piped to drain to the building exterior.
2.8.7 Identification Sign
Valve identification sign must be minimum 6 inches wide by 2 inches high with enamel baked finish on minimum 18 gage steel or 0.024-inch aluminum with red letters on a white background or white letters on red background. Wording of sign must include, but not be limited to "main drain", "auxiliary drain", "inspector's test", "alarm test", "alarm line", and similar wording as required to identify operational components. Where there is more than one sprinkler system, signage must include specific details as to the respective system.
PART 3 EXECUTION
3.1 VERIFYING ACTUAL FIELD CONDITIONS
Before commencing work, examine all adjoining work on which the contractor's work that is dependent for perfect workmanship according to the intent of this specification section, and report to the Contracting Officer's Representative a condition that prevents performance of first class work. No "waiver of responsibility" for incomplete, inadequate or defective adjoining work will be considered unless notice has been filed before submittal of a proposal.
3.2 INSTALLATION
The installation must be in accordance with the applicable provisions of NFPA 13 , NFPA 24 and publications referenced therein. Installation of in-rack sprinklers must comply with applicable provisions of NFPA 13 .
Locate sprinklers in a consistent pattern with ceiling grid, lights, and air supply diffusers. Install sprinkler system over and under ducts, piping and platforms when such equipment can negatively affect or disrupt the sprinkler discharge pattern and coverage.
a. Piping offsets, fittings, and other accessories required must be furnished to provide a complete installation and to eliminate interference with other construction.
b. Wherever the contractor's work interconnects with work of other trades the Contractor must coordinate with other Contractors to insure all Contractors have the information necessary so that they may properly install all necessary connections and equipment. Identify all work items needing access (dampers and similar equipment) that are concealed above hung ceilings by permanent color coded pins/tabs in the ceiling directly below the item.
c. Provide required supports and hangers for piping, conduit, and equipment so that loading will not exceed allowable loadings of structure. Submittal of a bid must be a deemed representation that the contractor submitting such bid has ascertained allowable loadings and has included in his estimates the costs associated in furnishing required supports.
SECTION 21 13 13 Page 14
3.2.1 Waste Removal
At the conclusion of each day's work, clean up and stockpile on site all waste, debris, and trash which may have accumulated during the day as a result of work by the contractor and of his presence on the job.
Sidewalks and streets adjoining the property must be kept broom clean and free of waste, debris, trash and obstructions caused by work of the contractor, which will affect the condition and safety of streets, walks, utilities, and property.
3.3 UNDERGROUND PIPING INSTALLATION
Existing.
3.4 ABOVEGROUND PIPING INSTALLATION
The methods of fabrication and installation of the aboveground piping must fully comply with the requirements and recommended practices of NFPA 13 and this specification section.
3.4.1 Protection of Piping Against Earthquake Damage
Seismic restraint is required.
3.4.2 Piping in Exposed Areas
Install exposed piping without diminishing exit access widths, corridors or equipment access. Exposed horizontal piping, including drain piping, must be installed to provide maximum headroom.
3.4.3 Piping in Finished Areas
In areas with suspended or dropped ceilings and in areas with concealed spaces above the ceiling, piping must be concealed above ceilings. Piping must be inspected, hydrostatically tested and approved before being concealed. Risers and similar vertical runs of piping in finished areas must be concealed.
3.4.4 Pendent Sprinklers
a. Drop nipples to pendent sprinklers must consist of minimum 1-inch pipe with a reducing coupling into which the sprinkler must be threaded.
b. Where sprinklers are installed below suspended or dropped ceilings, drop nipples must be cut such that sprinkler ceiling plates or escutcheons are of a uniform depth throughout the finished space. The outlet of the reducing coupling must not extend below the underside of the ceiling.
c. Recessed pendent sprinklers must be installed such that the distance from the sprinkler deflector to the underside of the ceiling must not exceed the manufacturer's listed range and must be of uniform depth throughout the finished area.
d. Pendent sprinklers in suspended ceilings must be located in the center of the tile (plus or minus 2 inches).
e. Where the maximum static or flowing pressure, whichever is greater at the sprinkler, applied other than through the fire department
SECTION 21 13 13 Page 15 connection, exceeds 100 psi and a branch line above the ceiling supplies sprinklers in a pendent position below the ceiling, the cumulative horizontal length of an unsupported armover to a sprinkler or sprinkler drop must not exceed 12 inches for steel pipe and 6 inches for copper tube.
3.4.5 Upright Sprinklers
Riser nipples or "sprigs" to upright sprinklers must contain no fittings between the branch line tee and the reducing coupling at the sprinkler.
3.4.6 Pipe Joints
Pipe joints must conform to NFPA 13 , except as modified herein. Not more than four threads must show after joint is made up. Welded joints will be permitted, only if welding operations are performed as required by NFPA 13 at the Contractor's fabrication shop, not at the project construction site. Flanged joints must be provided where indicated or required by NFPA 13 . Grooved pipe and fittings must be prepared in accordance with the manufacturer's latest published specification according to pipe material, wall thickness and size. Grooved couplings, fittings and grooving tools must be products of the same manufacturer. For copper tubing, pipe and groove dimensions must comply with the tolerances specified by the coupling manufacturer. The diameter of grooves made in the field must be measured using a "go/no-go" gauge, vernier or dial caliper, narrow-land micrometer, or other method specifically approved by the coupling manufacturer for the intended application. Groove width and dimension of groove from end of pipe must be measured and recorded for each change in grooving tool setup to verify compliance with coupling manufacturer's tolerances.
3.4.7 Reducers
Reductions in pipe sizes must be made with one-piece tapered reducing fittings. When standard fittings of the required size are not manufactured, single bushings of the face or hex type will be permitted.
Where used, face bushings must be installed with the outer face flush with the face of the fitting opening being reduced. Bushings cannot be used in elbow fittings, in more than one outlet of a tee, in more than two outlets of a cross, or where the reduction in size is less than 1/2-inch.
3.4.8 Pipe Penetrations
a. Cutting structural members for passage of pipes or for pipe-hanger fastenings will not be permitted. Pipes that must penetrate concrete or masonry walls or concrete floors must be core-drilled and provided with pipe sleeves. Each sleeve must be Schedule 40 galvanized steel, ductile-iron or cast-iron pipe and extend through its respective wall or floor and be cut flush with each wall surface. Sleeves must provide required clearance between the pipe and the sleeve per NFPA 13 .
The space between the sleeve and the pipe must be firmly packed with mineral wool insulation.
b. Where pipes and sleeves penetrate fire walls, fire partitions, or floors, pipes/sleeves must be firestopped in accordance with Section
07 84 00 FIRESTOPPING.
c. In penetrations that are not fire-rated or not a floor penetration, the space between the sleeve and the pipe must be sealed at both ends
SECTION 21 13 13 Page 16 with plastic waterproof cement that will dry to a firm but pliable mass or with a mechanically adjustable segmented elastomer seal.
d. All penetrations through the boundary of rooms/areas identified as secure space area must meet ICS 705-1 .
3.4.9 Escutcheons
Escutcheons must be provided for pipe penetration in finished areas of ceilings, floors and walls. Escutcheons must be securely fastened to the pipe at surfaces through which piping passes.
3.4.10 Inspector's Test Connection
Unless otherwise indicated, the test connection must consist of 1-inch pipe connected at the riser as a combination test and drain valve; a test valve located approximately 7 feet above the floor; a smooth bore brass outlet equivalent to the smallest orifice sprinkler used in the system;
and a painted metal identification sign affixed to the valve with the words "Inspector's Test". All test connection piping must be inside of the building and penetrate the exterior wall at the location of the discharge orifice only. The discharge orifice must be located outside the building wall no more than 2 feet above finished grade, directed so as not to cause damage to adjacent construction or landscaping during full flow discharge, or to the sanitary sewer. Discharge to the exterior must not interfere with exiting from the facility. Water discharge or runoff must not cross the path of egress from the building. Do not discharge to the roof. Discharge to floor drains, janitor sinks or similar fixtures is not permitted.
Provide concrete splash blocks at all drain and inspector's test connection discharge locations if not discharging to a concrete surface.
Splash blocks must be large enough to mitigate erosion and not become dislodged during a full flow of the drain. Ensure all discharged water drains away from the facility and does not cause property damage.
3.4.11 Drains
a. Main drain piping must be provided to discharge at a safe point outside the building, no more than 2 feet above finished grade.
Provide a concrete splash block at drain outlet. Discharge to the exterior must not interfere with exiting from the facility. Water discharge or runoff must not cross the path of egress from the building.
b. Auxiliary drains must be provided as required by NFPA 13 . Auxiliary drains are permitted to discharge to a floor drain if the drain is sized to accommodate full flow (min 40 gpm). Discharge to service sinks or similar plumbing fixtures is not permitted.
3.4.12 Installation of Fire Department Connection
Existing. Provide new signage per drawings.
3.4.13 Identification Signs
Signs must be affixed to every control valve, inspector test valve, main drain, auxiliary drain, test valve, and similar valves as appropriate or as required by NFPA 13 . Main drain test results must be etched into main
SECTION 21 13 13 Page 17 drain identification sign. Hydraulic design data must be etched into the nameplates and permanently affixed to each sprinkler riser as specified in NFPA 13 . Provide labeling on the surfaces of all feed and cross mains to show the pipe function (e.g., "Sprinkler System", "Fire Department Connection", "Standpipe") and normal valve position (e.g. "Normally Open", "Normally Closed"). For pipe sizes 4-inch and larger provide white painted stenciled letters and arrows, a minimum of 2 inches in height and visible from at least two sides when viewed from the floor. For pipe sizes less than 4-inch, provide white painted stenciled letters and arrows, a minimum of 0.75-inch in height and visible from the floor.
3.5 ELECTRICAL
Except as modified herein, electric equipment and wiring must be in accordance with Section 26 20 00 INTERIOR DISTRIBUTION SYSTEM. Alarm signal wiring connected to the building fire alarm control system must be by the fire alarm installer.
3.6 PAINTING
Color code mark piping red.
3.7 FIELD QUALITY CONTROL
3.7.1 Test Procedures
Submit detailed test procedures, prepared and signed by the NICET Level IV Fire Sprinkler Technician, and the representative of the installing company, and reviewed by the QFPE 60 days prior to performing system tests. Detailed test procedures must list all components of the installed system. Test procedures must include sequence of testing, time estimate for each test, and sample test data forms. The test data forms must be in a check-off format (pass/fail with space to add applicable test data;
similar to the forms in NFPA 13 ). The test procedures and accompanying test data forms must be used for the pre-Government testing and the Government final testing.
a. Provide space to identify the date and time of each test. Provide space to identify the names and signatures of the individuals conducting and witnessing each test.
3.7.2 Pre-Government Testing
3.7.2.1 Verification of Compliant Installation
Conduct inspections and tests to ensure that equipment is functioning properly. Tests must meet the requirements of paragraph entitled "Minimum System Tests" and "System Acceptance" as noted in NFPA 13 . The Contractor and QFPE must be in attendance at the pre-Government testing to make necessary adjustments. After inspection and testing is complete, provide a signed Verification of Compliant Installation letter by the QFPE that the installation is complete, compliant with the specification and fully operable. The letter must include the names and titles of the witnesses to the pre-Government tests. Provide all completion documentation as required by NFPA 13 and the test reports noted below.
a. NFPA 13 Aboveground Material and Test Certificate
SECTION 21 13 13 Page 18
3.7.2.2 Request for Government Final Test
When the verification of compliant installation has been completed, submit a formal request for Government final test to the Contracting Officers Designated Representative (COR). Government final testing will not be scheduled until the DFPE has received copies of the request for Government final testing and Verification of Compliant Installation letter with all required reports. Government final testing will not be performed until after the connections to the building fire alarm system have been completed and tested to confirm communications are fully functional.
Submit request for test at least 15 calendar days prior to the requested test date.
3.7.3 Correction of Deficiencies
If equipment was found to be defective or non-compliant with contract requirements, perform corrective actions and repeat the tests. Tests must be conducted and repeated if necessary until the system has been demonstrated to comply with all contract requirements.
3.7.4 Government Final Tests
The tests must be performed in accordance with the approved test procedures in the presence of the DFPE. Furnish instruments and personnel required for the tests. The following must be provided at the job site for Government Final Testing:
a. The manufacturer's technical representative.
b. The contractor's Qualified Fire Protection…
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