NFPA 25 AMD 2-2017 Standard for the Inspection Testing and Maintenance of Water- Based Fire Protection Systems (Effective Date 12 26 2017).pdf
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1、 Tentative Interim Amendment NFPA25 Standard for the Inspection, Testing, and Maintenance of Water-Based Fire Protection Systems 2017 Edition Reference: Various TIA 17-2 (SC 17-12-1 / TIA Log #1287) Pursuant to Section 5 of the NFPA Regulations Governing the Development of NFPA Standards, the Nation
2、al Fire Protection Association has issued the following Tentative Interim Amendment to NFPA 25, Standard for the Inspection, Testing, and Maintenance of Water-Based Fire Protection Systems, 2017 edition. The TIA was processed by the Technical Committee on Inspection, Testing, and Maintenance of Wate
3、r-Based Systems, and was issued by the Standards Council on December 6, 2017, with an effective date of December 26, 2017. A Tentative Interim Amendment is tentative because it has not been processed through the entire standards-making procedures. It is interim because it is effective only between e
4、ditions of the standard. A TIA automatically becomes a public input of the proponent for the next edition of the standard; as such, it then is subject to all of the procedures of the standards-making process. 1. Add NFPA 70E, Standard for Electrical Safety in the Workplace, 2015 edition to section 2
5、.2. 2. Revise 4.9.6 and associated Annex A material to read as follows: 4.9.6* Electrical Safety. 4.9.6.1 Legally required precautions shall be taken when testing and maintaining electric controllers for motor-driven fire pumps. 4.9.6.2 At a minimum, the provisions of NFPA 70E shall be applied. A.4.
6、9.6 WARNING: NFPA 20 includes electrical requirements that discourage the installation of a disconnect means and limit overcurrent protection in the power supply to electric motordriven fire pumps. This is intended to ensure the availability of power to the fire pumps. Where equipment connected to t
7、hose circuits is serviced or maintained, the service person could be subject to unusual exposure to electrical and other hazards. It could be necessary to establish special safe work practices and to use safeguards or personal protective clothing, or both. The required category of personal protectiv
8、e equipment will vary dependent upon the specific installation details and associated incident energy levels. The determination of such incident energy levels can be established by conducting an incident energy level analysis as provided in Annex D of NFPA 70E or by utilization of the PPE Category M
9、ethod provided by NFPA 70E, Table 130.7(C)(15)(A)(b), where applicable. Use of the PPE Category Method requires that the maximum available short-circuit current and maximum fault clearing time for the actual installation do not exceed those indicated in NFPA 70E, Table 130.7(C)(15)(A)(b). See also N
10、FPA 70E for additional safety guidance regarding the determination of the incident energy and the required level of personal protective equipment. The provisions of NFPA 70E require that the owner label the equipment with information regarding the electrical hazards associated with the installation.
11、 Where such labeling is not present, the technician cannot make a determination for safe work practice on the equipment without further assessment of the incident energy associated with the installation. 3. Revise sections in 8.1.1.2 to read as follows: 8.1.1.2.2 Electrical connections shall be chec
12、ked annually and repaired as necessary to the extent that such work can be completed without opening an energized electric motordriven fire pump controller. 8.1.1.2.4 Printed circuit boards (PCBs) shall be checked annually for corrosion to the extent that such work can be completed without opening a
13、n energized electric motordriven fire pump controller. 8.1.1.2.5 Cable and/or wire insulation shall be checked annually for cracking to the extent that such work can be completed without opening an energized electric motordriven fire pump controller. 8.1.1.2.6 Plumbing parts, both inside and outside
14、 of electrical panels, shall be checked annually for any leaks to the extent that such work can be completed without opening an energized electric motordriven fire pump controller. 8.1.1.2.12 Engine crankcase breathers shall be checked quarterly annually. 8.1.1.2.16 All controls and power wiring con
15、nections shall be checked annually and repaired as necessary to the extent that such work can be completed without opening an energized electric motordriven fire pump controller. 8.1.1.2.21 The accuracy of pressure gauges and sensors shall be inspected annually and replaced or recalibrated when more
16、 than 5 percent out of calibration to the extent that such work can be completed without opening an energized electric motordriven fire pump controller. 4. Revise Table 8.1.1.2 to read as follows: Table 8.1.1.2 Summary of Fire Pump Inspection, Testing, and Maintenance Item Frequency Reference Inspec
17、tion Alignment Annually 8.3.6.4 Cable/wire insulation Annually 8.1.1.2.5 Diesel pump system Weekly 8.2.2(4) Electric pump system Weekly 8.2.2(3) Engine crankcase breather Annually 8.1.1.2.12 Exhaust system and drain condensate trap Annually 8.1.1.2.13 Flexible hoses and connections Annually 8.1.1.2.
18、11 Fuel tank vents and overflow Annually 8.1.1.2.10 Plumbing parts inside and outside of panels Annually 8.1.1.2.6 Printed circuit board corrosion (PCBs) Annually 8.1.1.2.4 Pump Weekly 8.2.2(2) Pump house/room Weekly 8.2.2(1) Shaft movement or endplay while running Annually 8.1.1.2.1 Steam pump syst
19、em Weekly 8.2.2(5) Suction screens Annually 8.3.3.712 Item Frequency Reference Test Automatic transfer switch and emergency/standby generators Per NFPA 110 8.3.6.1 and 8.3.6.2 Diesel enginedriven fire pump Weekly 8.3.1.1 Diesel fuel testing Annually/Semiannually 8.3.4 Electric motordriven fire pump
20、Weekly/monthly 8.3.1.2 Electronic control module (ECM) Annually 8.3.3.13 Fire pump alarm signals Annually 8.3.3.510 Fuel tank, float switch, and supervisory signal for interstitial space Quarterly 8.1.1.2.7 Main relief valve Annually 8.3.3.38 Power transfer switch Annually 8.3.3.49 Pump houseroom en
21、vironmental conditions 8.3.6.3 Pump operation (no flow) Weekly/monthly 8.3.1 Pump performance (flow) Annually 8.3.3 Supervisory signal for high cooling water temperature Annually 8.1.1.2.8 Maintenance Batteries Annually 8.1.1.2.15 Circulating water filter Annually 8.1.1.2.20 Control and power wiring
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