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NFPA CWBSP Exam Syllabus Topics:
Topic
Details
Topic 1
- Survey Existing Systems: This topic tests the designer's skills in reviewing and assessing existing fire protection systems. Designers will be evaluated on their ability to evaluate system components, identify needs, and verify compliance with codes. Additionally, they must demonstrate competence in understanding inspection, testing, and coordinating interfaces between systems to ensure compliance and system adequacy.
Topic 2
- Design System Layouts: In this part of the exam, Water-Based Fire Protection System Designers will be tested on their ability to design appropriate water-based fire protection systems. Designers must determine system types, evaluate water supply, and design layouts, including hangers and bracing. The exam will assess compliance with contracts, codes, and standards, as well as coordination with other systems.
Topic 3
- Hydraulic Calculations: The hydraulic calculations topic evaluates a designer’s understanding of hydraulic formulas and design methods. Designers will be tested on their ability to apply these principles, particularly in evaluating the hydraulically most remote calculation area. This topic is critical to ensuring the efficiency and effectiveness of the fire protection system.
Topic 4
- Project Development: In this topic of the CWBSP Exam, Water-Based Fire Protection System Designers will be assessed on their ability to understand project scope, identify occupancy types, and review contract documents. Designers will need to demonstrate proficiency in evaluating plans, specifications, and submittal approval requirements, ensuring their capability to manage the foundational stages of a water-based fire protection system design.
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NFPA Certified Water-Based Systems Professionals Sample Questions (Q17-Q22):
NEW QUESTION # 17
Which of the following should be considered when choosing an occupancy?
- A. Susceptibility for change in fuel characteristics
- B. Access to egress
- C. Ceiling height to underside of structural members
- D. Size of space
Answer: A
Explanation:
When choosing an occupancy classification, susceptibility for change in fuel characteristics is a crucial factor.
This considers the potential for the stored or used materials in the space to change in a way that might affect the fire risk or required protection level.
References: NFPA 13 categorizes occupancies based on factors such as the type and combustibility of contents, which directly influence the fire protection strategy.
NEW QUESTION # 18
After reviewing an existing sprinkler system, it was determined that sprinklers were installed using NFPA 13 using the Ordinary Hazard Pipe Schedule method. The highest elevation of sprinklers is 28 ft (8.53m) and the system is fully monitored as specified by NFPA 13. What is the minimum pressure and flow required?
- A. 500 gpm at 27 psi (1,900 L/min at 1.86 bar)
- B. 850 gpm at 32 psi (3,200 L/min at 2.2 bar)
- C. 500 gpm at 32 psi (1,900 L/min at 2.2 bar)
- D. 850 gpm at 27 psi (3,200 L/min at 1.86 bar)
Answer: A
Explanation:
For a system using the Ordinary Hazard Pipe Schedule method, the minimum pressure and flow required are typically based on the system's design criteria, which for a system fully monitored as specified by NFPA 13 and with the highest elevation of sprinklers at 28 ft, would be around 500 gpm at 27 psi.
References: NFPA 13 includes guidelines for calculating system demand using the pipe schedule method, taking into account factors such as system elevation and monitoring.
NEW QUESTION # 19
In a dry pipe system protection of an Extra Hazard Group I occupancy, how many remote sprinklers should be considered to initially open to meet the water delivery time requirements?
Answer: D
Explanation:
In a dry pipe system protecting an Extra Hazard Group I occupancy, considering 4 sprinklers to initially open helps meet the water delivery time requirements by ensuring a rapid response to a fire event, given the higher fire load and risk associated with such occupancies.
References: NFPA 13 criteria for water delivery times in dry pipe systems, with adjustments for the specific challenges posed by Extra Hazard Group I occupancies.
NEW QUESTION # 20
A device for use in applications requiring special water discharge patterns, directional spray, or other unusual discharge characteristics, is known as a
- A. nozzie.
- B. CMSA sprinkler.
- C. water mist nozzle.
- D. special sprinkler.
Answer: D
Explanation:
A special sprinkler is a device for use in applications requiring special water discharge patterns, directional spray, or other unusual discharge characteristics, as defined by NFPA 13. Examples of special sprinklers include residential sprinklers, exposure protection sprinklers, water curtains, and sprinkler-protected glazing.
Special sprinklers have different design and installation requirements than standard spray sprinklers.
References: NFPA 13, 2019 edition, section 3.3.27.1; NFPA 13 Handbook, 2019 edition, page 31.
A special sprinkler is designed for specific applications that require unique water discharge patterns, directional spray, or other specialized discharge characteristics. These sprinklers are tailored for particular fire risks or architectural constraints where standard sprinklers may not provide adequate protection.
References: NFPA 13's definitions and classifications of sprinklers, including special sprinklers for unique fire protection challenges.
NEW QUESTION # 21
Antifreeze systems that contain a backflow preventer between the antifreeze piping and the wet pipe system must be equipped with
- A. an accelerator.
- B. a sight glass.
- C. a relief valve.
- D. an expansion chamber.
Answer: D
Explanation:
Antifreeze systems equipped with a backflow preventer must include an expansion chamber to accommodate the expansion of the antifreeze solution due to temperature changes. This prevents excessive pressure buildup that could damage the system or cause unintended discharge.
References: NFPA 13 and NFPA 25 requirements for antifreeze systems in sprinkler installations, emphasizing safety features to accommodate the physical properties of antifreeze solutions.
NEW QUESTION # 22
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