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Showing posts with label fire sprinkler. Show all posts
Showing posts with label fire sprinkler. Show all posts

Understanding Class II Standpipe Systems

The classification and installation requirements for standpipe systems are identified in NFPA 14, Standard for the Installation of Standpipe and Hose Systems.  Standpipes are categorized as class I, class II, or class III. These classifications are based on the hose connection size and intended user of the hose. 

  • Class I System. A system that provides 2 ½ in. hose connections to supply water for use by fire departments.
  • Class II System. A system that provides 1 ½ in. hose stations to supply water for use primarily by trained personnel or by the fire department during initial response.
  • Class III System. A system that provides 1 ½ i.n hose station to supply water for use by trained personnel and 2 ½ in hose connections to supply a larger volume of water for use by fire departments.
For a more extensive and in-depth look at all standpipe systems check out the QRFS article, Guide to Fire Hose Reels and Racks for Standpipe and Hose Systems.

The water source to the standpipe system can be automatic wet, automatic dry, manual dry, or semi-automatic. Automatic wet standpipes are designed to provide the needed water pressure and supply when the valve is opened. These can be wet or dry. Automatic wet systems have water in them all the time, whereas, automatic dry fill with water when the hose valve is opened.  Manual dry systems are designed for use by the fire department, these pipes are dry until the fire department arrives and connects to the fire department connection to fill the standpipe with water from their trucks. Semi-automatic systems require the activation of a fire pump or other device to fill the system with water. 

The Class II system provides a 1 1/2 inch hose station, as opposed to just a hose connection. The hose station is comprised of a connected hose with a nozzle, with the hose being secured on a rack or reel. These standpipe systems are only intended for use by trained personnel. Annex information of NFPA 14 defines trained personnel as those trained in accordance with NFPA 600, Standard on Facility Fire Brigades or the Fire Equipment Manufacturers Association (FEMA). If the Class II system is located on a site with a dedicated fire brigade, then those members must be trained to the requirements of NFPA 600.  For those locations where a dedicated fire brigade is not in place, building occupants or those expected to use the Class II system, personnel training in accordance with the outline and materials provided by FEMA is sufficient.

Class II systems are only permitted to be fed by an automatic wet standpipe riser, with exceptions for areas subject to freezing.
5.4.2 Class II and Class III Standpipe Systems.Class II and Class III standpipe systems with 1 ½ in hose stations shall be automatic wet systems unless located in a facility where piping is subject to freezing and where a fire brigade is trained to operate the system without fire department intervention, in which case an automatic dry or semiautomatic dry system shall be permitted.
The hose connections and cabinets for these systems must be installed as prescribed in NFPA 14. The hose station must be visible and accessible, mounted between 3-5 feet above the finished floor. A hose station is to be located so that it can be accessed from within 130 feet of travel from any part of the building.
A.7.3.3 Hose stations should be so arranged as to allow discharge to be directed from the nozzle into all portions of important enclosures such as closets and similar enclosures.
To ensure the effectiveness of these systems they must be properly inspected, tested, and maintained. The first priority for ensuring system effectiveness is the initial acceptance test when the system is first installed.  The AHJ will visit the site and examine the installation for evidence that the following test and procedures have been completed:


  • Underground piping and FDC piping to the building must be flushed.
  • Verify hose threads are compatible with the hose connection. Compatibility and required hose thread types may vary from jurisdiction to jurisdiction.
  • A hydrostatic test must be conducted at 200 psi (or 50 psi over working pressure) for 2 hours.
  • Air pressure leak test at 40 psi for 24 hours must be conducted.
  • Witness a main drain flow test.  System flow test may also be conducted, but can be waived by the AHJ.
  • All notification and supervisory alarm devices will be tested. This process is outlined in NFPA 72.
  • All required signage must be in place.

After the initial installation and acceptance testing, the system must continue to receive ongoing inspection, testing, and maintenance to ensure system readiness. There are annual and 5 year inspection and testing requirements. The hose, cabinet, piping, connections, rack or reel, and threads must be inspected once a year. This inspection is to verify that the system is in good condition, and their is no damage or missing parts, and that the hose is in a proper position to be quickly deployed as necessary.  Every 5 years a functional test with water flow and hydrostatic test of the piping must be conducted. Additionally, the hose must also be tested. If the hose fails the test, prescribed in NFPA 1962, then it must be replaced. 

When these systems or component go bad or need updated, QRFS.com can provide all parts and complete units for fire hose racks or fire hose reels, fire hose adapters, hose for racks and reels, valve cap and chain assemblies, and fire hose nozzles.


Facility Managers Guide to Fire Sprinkler Inspections


The International Organization for Standardization (ISO) defines the role of Facility Manager as, the "organizational function which integrates people, place and process within the built environment with the purpose of improving the quality of life of people and the productivity of the core business.” 

Today's facility manager is a key contributor to a companies bottom line. This contribution is realized in the maintenance of a companies most valuable assets - property, buildings, and equipment. Facility managers are expected to be an expert on all building related subjects, and the often serve as a "catch all" for jobs and responsibilities that do not fit anyone else's job description. 

The regular inspection, testing, and maintenance of fire protection systems is an important part of the job, and a critical component of ensuring life safety of the building's occupants. The Quick Response Fire Supply team has written an excellent series of articles to educate the facility manager on what to inspect in fire sprinkler systems.

Part #1: What Facility Managers Need to Inspect on a Fire Sprinkler System
What to look for on the required annual visual inspection - "from the floor level".

Part #2: What Facility Managers Need to Inspect on a Fire Sprinkler System
Understanding deficiencies, impairments, and tagging systems.

Part #3: What Facility Managers Need to Inspect on a Fire Sprinkler System
Inspection requirements for fire pumps.

Part #4: What Facility Managers Need to Inspect on a Fire Sprinkler System
Fire sprinkler system signs, gauges, and alarms.

Part #5: What Facility Managers Need to Inspect on a Fire Sprinkler System
System components and valves.

Part #6: What Facility Managers Need to Inspect on a Fire Sprinkler System
Inspection requirements for water storage tanks.

Part #7: What Facility Managers Need to Inspect on a Fire Sprinkler System
Automatic detection systems and air-compressors.

Common Fire Sprinkler Design Issues [Illustrated]

Illustrated Solutions for Common Sprinkler Design Issues


Answers to the most common questions and concerns for fire sprinkler system design.

This book is not intended to be a comprehensive manual on fire sprinkler design, rather it is a brief guide that serves to answer the most common questions and concerns regarding the design of fire sprinkler systems. This book provides the fire plan reviewer or inspector with easily accessible answers to the most important questions for approval and acceptance of a fire sprinkler system.

  • Does the structure require a fire sprinkler system?
  • Is the occupancy and commodity properly classified?
  • Are plastics properly identified and protected?
  • Does the rack storage need in-rack sprinklers?
  • Will there be any obstructions to the discharge pattern?
  • How are the cloud ceilings protected?
  • What is the "small room" rule?


This book is written by Aaron Johnson from, TheCodeCoach.com and illustrated by Joseph Meyer from, MeyerFire.com.

An illustrated guide for fire sprinkler design. Create better educated fire protection professional for the promotion of fire protection and life safety.





Fire Sprinkler Design: An Illustrated Guide for AHJ's [BOOK]


After twelve years in the fire service and ten years of writing on fire prevention and fire protection topics, there are a handful of sprinkler design elements and questions that continue to show up. This book is not intended to be an exhaustive or fully comprehensive manual on fire sprinkler design, rather it is a brief guide that serves to answer the most commonly seen questions regarding fire sprinkler systems and design. Often times, reading the codes and standards language as written can be somewhat confusing. Our attempt in this manual is to provide clarity on a selection of these complicated design rules. Always, the main goal being a better educated fire protection professional to promote fire protection and life safety.


It has been my great privilege to partner with the premiere fire protection engineering author and illustrator, Joseph Meyer. His drawing and illustration talents bring a fresh dimension to the fire protection system design principles we want to share in these pages. Through the combined efforts of our written content and Joe’s illustrations we hope to bring a better understanding to the art of fire protection and sprinkler design.

Learn the most critical design elements related to:
  • Documentation and installation requirements
  • Obstructions, discharge patterns, and construction features
  • Storage protection, occupancies, and commodity classifications
  • Small spaces and the “small room” rule


An illustrated guide for fire sprinkler design. Create better educated fire protection professional for the promotion of fire protection and life safety.








Fire Sprinkler Design Guide [for AHJ's]



This interactive guide, and book, will enable the fire plan reviewer or inspector to quickly answer the most important questions for approval and acceptance of a fire sprinkler system.
  • Does the structure require a fire sprinkler system?
  • Is the occupancy and commodity properly classified?
  • Are plastics properly identified and protected?
  • Does the rack storage need in-rack sprinklers?
  • Will there be any obstructions to the discharge pattern?
  • How are the cloud ceilings protected?
Clicking on the title for each section will take you to a full article on the topic. Before you get started, I recommend you download and print my glossary of "Key Terms  for NFPA 13 Storage". This convenient tool eliminates the need to search multiple pages for clarifications by listing the most used terms and definitions on a single page. 

Reading through the NFPA standards, one consistently comes upon the phrase "sprinklers where required".  However, in order to find where they are, or may be, required, involves some searching through the code book.  


The below is a tool that can be used as a quick guide to what occupancies require fire sprinklers, and where the code can be referenced.




Perhaps you are conducting a fire inspection or survey and you notice that the hazard or commodity classification on the hydraulic calculation plate at the riser seems odd for the actual contents of the structure.  Or, you are sitting down to do a plan review, the occupancy hazard and commodity class is listed. Are these classifications correct based on the use of the structure?


NFPA 13, Standard for the Installation of Sprinkler Systems, chapter five defines occupancy hazard and commodities classifications for the design and installation of sprinkler systems. In book form, this information can sometimes be difficult to recall. This slideshow presentation can be utilized as a reference to quickly review and confirm occupancy and commodity classifications.




To provide effective fire sprinkler protection within a structure, the hazard classification and commodity must be known. For the protection of rack storage, the storage and shelving configuration must be known. Due to the high speed and temperature of burning plastics, they require special consideration.  NFPA 13, Standard for the Installation of Sprinkler Systems, requires all plastics, elastomers, and rubber, to be classified as Group A, Group B, or Group C.

What are the requirements for rack storage? Are in-rack sprinklers required? How can rack storage sprinkler requirements be determined?


Fire protection requirements for rack storage are addressed in NFPA 13, Standard for the Installation of Sprinkler Systems.  
  • Chapter 13, Protection of Miscellaneous and Low-Piled Storage
  • Chapter 14, Protection for Palletized, Solid-Piled, Bin Box, Shelf, or Back-to-Back Shelf Storage of Class I through Class IV Commodities
  • Chapter 15, Protection for Palletized, Solid-Piled, Bin Box, Shelf, or Back-to-Back Shelf Storage of Plastic and Rubber Commodities
  • Chapter 16, Protection of Rack Storage of Class I through Class IV Commodities
  • Chapter 17, Protection of Rack Storage of Plastic and Rubber Commodities

To determine which chapter to go to for fire protection requirements, there are three questions that must be answered:

  1. What is stored?
  2. How is it stored?
  3. How high is it stored?


Important to fire sprinkler effectiveness is sprinkler discharge pattern development. A fire sprinkler system should be designed in a manner that provides full water coverage from the fire sprinkler system. Inherent building construction or design elements can pose potential obstructions to the full coverage or discharge pattern of the sprinkler system.  However, these buildings and elements must still be protected. NFPA 13, Standard for the Installation of Sprinkler Systems, provides sprinkler coverage guidance for these obstructed areas.


To determine the proper application it must first be determined if the construction is obstructed or unobstructed.  Then it must be determined if the obstruction is continuous or noncontinuous.


Cloud ceiling: a suspended ceiling that covers only a portion of a room or space below


These cloud ceilings present unique challenges to fire sprinkler installation. The solution to these challenges are not always easily found clearly in the pages of NFPA 13. However, by applying the obstruction and clearance principles the solution will make itself clear.

What is the "small room" rule?
In conducting plan reviews or fire sprinkler field inspections you may have heard, or seen, the invocation of the “small room" rule. Though not specifically stated in NFPA 13 as the “small room" rule, it is a combination of several code sections within the standard that can be utilized to provide advantages in hydraulic calculations and flexibility in sprinkler spacing.


In 1984 tragedy struck the Great Adventure theme park when 8 teenagers were killed in the Haunted Castle attraction.  The fire, believed (not proven) to have been started by a an individual playing with a lighter, has seen a great deal of controversy, and differing of opinions, through out the years. The resulting code changes created the special amusement requirements in NFPA 101.  


In this video, Jack Fairchild, a certified fire protection specialist with Ballinger A/E, discusses the history and impact of this fire, and guides us through his analysis of the potential effectiveness of fire sprinkler systems, he answers the question, "Would sprinklers have saved these kids?"


What kind of plastic is it?



To provide effective fire sprinkler protection within a structure, the hazard classification and commodity must be known. For the protection of rack storage, the storage and shelving configuration must be known. Due to the high speed and temperature of burning plastics, they require special consideration.  NFPA 13, Standard for the Installation of Sprinkler Systems, requires all plastics, elastomers, and rubber, to be classified as Group A, Group B, or Group C.


A complete list of Group A plastics is provided in 5.6.4.1 and Table A.5.6.4.1, of NFPA 13. This group of plastics includes rubber, poly(s)-, cellulosics, and nylon. Group A plastics are further divided into expanded or unexpanded. Expanded plastics are “low-density materials” commonly referred to as “foam plastics”. Unexpanded plastics must meet one, of six, criteria listed in listed in section 5.6.4..1.1.2. Group B plastics include chloro-, fluoro-, and silicone products. There are seven materials classified as Group C plastics.  This group include the polyvinyl- products. A complete list is provided in section 5.6.4.3.


Sprinkler design criteria for the protection of plastics is outlined in Chapter 15 and Chapter 17 of NFPA 13. If the plastics are Group A and do not exceed 5 feet in height then the protection requirements of Chapter 13, Protection of Miscellaneous and Low-Piled Storage, can apply. For all plastic or rubber commodities that exceed 5 feet in height, section 15.2.2 outlines the fire protection requirements. For clarity and protection requirements the decision tree provided in figure 15.2.2.1 of this standard should be referenced.


If the stored items are plastic or rubber commodities and on rack storage the protection requirements of Chapter 17 shall be enforced. This section has a decision tree that must be followed based on the group of plastics being protected, as well as alternate provisions for systems that do not meet minimum design requirements. If plastic or rubber commodities on rack storage is encountered, this chapter should be closely examined.  



Guide to NFPA 13 Occupancy and Commodity Classifications

Perhaps you are conducting a fire inspection or survey and you notice that the hazard or commodity classification on the hydraulic calculation plate at the riser seems odd for the actual contents of the structure.  Or, you are sitting down to do a plan review, the occupancy hazard and commodity class is listed. Are these classifications correct based on the use of the structure?

NFPA 13, Standard for the Installation of Sprinkler Systems, chapter five defines occupancy hazard and commodities classifications for the design and installation of sprinkler systems. In book form, this information can sometimes be difficult to recall. This slideshow presentation can be utilized as a reference to quickly review and confirm occupancy and commodity classifications.



Sprinkler Obstructions and Discharge Patterns

photo source: pmengineer.com

Important to fire sprinkler effectiveness is sprinkler discharge pattern development. A fire sprinkler system should be designed in a manner that provides full water coverage from the fire sprinkler system. Inherent building construction or design elements can pose potential obstructions to the full coverage or discharge pattern of the sprinkler system.  However, these buildings and elements must still be protected. NFPA 13, Standard for the Installation of Sprinkler Systems, provides sprinkler coverage guidance for these obstructed areas.

To determine the proper application it must first be determined if the construction is obstructed or unobstructed.  Then it must be determined if the obstruction is continuous or noncontinuous.

Is this obstructed or unobstructed construction?

To be considered obstructed, the construction elements must be composed of “beams, trusses, or other members” that will impede heat flow, water distribution, or otherwise affect the ability of the sprinkler to control or suppress the fire. [13:3.7.1]

Construction types that may create obstructions, include:
  • Beam and girder
  • Concrete Tee
  • Composite wood joist
  • Panel construction
  • Bar joist with fireproofing
  • Steel purlin

Unobstructed construction includes any “beams, trusses, or other members” that do not impede heat flow, water distribution or the ability of the fire sprinkler to control or suppress fire. This generally consists of construction members that are not solid.[13:3.7.2]

Unobstructed construction elements may include:
  • Bar joist
  • Open-grid ceilings
  • Smooth ceilings
  • Standard mill (heavy timber)

Is the obstruction continuous or noncontinuous?

If the obstruction affects the sprinkler discharge pattern of two or more adjacent sprinklers then the obstruction is considered to be continuous. However, if only one sprinkler discharge pattern is affected then the obstruction is noncontinuous.

Different sprinkler head types and orientations have different requirements for designing to protect obstructed areas.  These are addressed in the following sections of NFPA 13.
  • General guidance: 13:8.5.5
  • Pendant and upright sprinklers: 13:8.6.5
  • Sidewall sprinklers: 13:8.7.5
  • ESFR sprinklers: 13:8.12.5

A great reference tool for quickly determining the design criteria and requirements for obstructed areas is this ceiling obstructions reference tool/calculator provided by Meyer Fire.

Reading Meyer Fire? You Must!


If you're not already reading Meyer Fire (www.meyerfire.com), you need to start immediately!  Meyer Fire is the independent resource for fire protection professionals.  Meyer Fire creates resources for the Fire Protection P.E. exam.  The Meyer Fire site produces a weekly blog post and a daily fire protection question. Additionally, the site offers tools and resources including calculators, articles, and a job board.

Here are 10 must-read posts to get you started:


  1. Advantages of Return Bends in Fire Sprinkler Systems
  2. Slope Requirements for Fire Sprinkler Pipe
  3. Breakout of a Floor Control Riser Assembly
  4. Sprinkler Ceiling Obstructions
  5. Solving Noise from Dry-System Compressors
  6. Components of a Fire Sprinkler
  7. Sprinkler Design for Elevators
  8. New Occupant Load Factors Coming to NFPA 101
  9. Details and Requirements of the Inspector's Test
  10. The Other (Easy) Way to Space a Smoke Detector


An awesome "added value" feature of these posts is the hand drawn (by Joseph Meyer) fire protection system components (such as the one below)!