CERTIFICATION EXAM PRACTICE QUESTIONS AND CORRECT
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NYC DEP BACKFLOW PREVENTION DEVICE INSPECTOR CERTIFICATION EXAM PRACTICE QUESTIONS
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Review Summary 120 Questions
Foundations - Application - NYC DEP Backflow Prevention Device Inspector Certification AND Correct
PLUS Rationale Instant Download PDF NYC DEP Backflow Prevention Device Inspector Certification AND
Correct PLUS Rationale Instant Download PDF University
All answers with rationales
,Table of Contents
Content Area Questions Key Topics
Backflow Prevention 1-20 Valve, Pressure, Assembly, Check, Installed
Principles AND Hydraulics
Regulations AND Codes NYC 21-40 Inspector, Valve, Assembly, Check, Pressure
DEP Plumbing CODE Health
CODE
Backflow Prevention Device 41-60 Assembly, Valve, Pressure, Check, Backflow Prevention
Types AND Applications
Installation Requirements 61-80 Assembly, Check, Valve, Pressure, Backflow
AND SITE Evaluation
Testing Procedures AND 81-100 Inspector, Valve, Assembly, Pressure, Check
Equipment
Maintenance Repair AND 101-120 Check, Pressure, Valve, Inspector, Assembly
Troubleshooting
TOTAL 120 All questions include answers and detailed rationales
,Section A - Backflow Prevention Principles AND
Hydraulics
Q1.
During a routine inspection of a 4-inch reduced pressure zone assembly (RPZ) in a
high-rise building, you observe that the relief valve opens intermittently with no
downstream demand. The pressure differential across the check valve #1 is 3 psi. Which
condition most likely explains this behavior?
A. Check valve #2 is fouled with debris, B. The relief valve spring is weakened,
causing a pressure drop that triggers the reducing the cracking pressure below the
relief valve. assembly's rated differential.
C. Check valve #1 is leaking, allowing D. The downstream pressure is fluctuating
upstream pressure to bleed into the zone due to a water hammer condition in the
and lift the relief valve. building's piping.
Correct: C - Check valve #1 is leaking, allowing upstream pressure to bleed into the zone
and lift the relief valve.
Rationale:In an RPZ, the relief valve opens when the zone pressure drops to within 2 psi of
the supply pressure or when the differential across check #1 is less than the relief valve's set
point. A leaking check valve #1 allows supply pressure to enter the zone, reducing the
differential and causing the relief valve to weep or open. Fouled check #2 would raise
downstream pressure, not cause relief opening. A weakened spring would cause premature
opening, but the observed differential of 3 psi suggests the relief valve is operating at its set
point, which is typically 2 psi, so a 3 psi differential should not trigger it unless check #1 is
leaking.
Q2.
A double check valve assembly (DCVA) is installed on a 6-inch line supplying an industrial
process. Annual testing shows the first check valve holds at 1.5 psi and the second at 2.0
psi. The assembly is rated for backpressure only. Which of the following is the correct
interpretation?
A. The assembly passes the test because B. The assembly fails because the first
both checks hold at least 1.0 psi, but the low check valve must hold at least 2.0 psi and
readings indicate wear and the assembly the second at least 3.0 psi.
should be scheduled for rebuild.
C. The assembly passes, but the low D. The assembly fails because the
readings are acceptable because DCVAs differential between the two check valves is
are not required to provide backflow less than 1.0 psi, indicating a potential leak
protection against back-siphonage. through the first check.
Correct: A - The assembly passes the test because both checks hold at least 1.0 psi, but
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, Section A - Backflow Prevention Principles AND Hydraulics
the low readings indicate wear and the assembly should be scheduled for rebuild.
Rationale:ASSE 1015 and NYC DEP regulations require each check valve in a DCVA to hold
at least 1.0 psi, so both readings pass the minimum. However, readings of 1.5 and 2.0 are
low and suggest wear, but they do not constitute a failure. The DCVA is designed for
backpressure only, and the test verifies the check valves hold against backpressure. The
other options incorrectly state higher minimums or misinterpret the failure criteria.
Q3.
A 2-inch pressure vacuum breaker (PVB) is installed on a lawn irrigation system. During
the annual test, the air inlet valve opens when the pressure is reduced to 1.5 psi. The
system is equipped with a downstream shut-off valve. What is the most appropriate
course of action?
A. Pass the assembly because the air inlet B. Fail the assembly because the air inlet
opens at 1.5 psi, which is within the must open when pressure drops to 1.0 psi
allowable range of 1.0 to 2.0 psi. or less.
C. Fail the assembly because the air inlet D. Pass the assembly, but note that the air
must open when pressure drops to 2.0 psi inlet opening at 1.5 psi indicates a worn
or higher. spring that should be monitored.
Correct: B - Fail the assembly because the air inlet must open when pressure drops to 1.0
psi or less.
Rationale:ASSE 1020 requires the air inlet on a PVB to open when the pressure in the body
drops to at least 1.0 psi (typically between 1.0 and 2.0 psi, but the standard says the air inlet
must open at or before 1.0 psi). Actually, the standard requires the air inlet to open when the
pressure is reduced to 1.0 psi or less, so opening at 1.5 psi is a failure. The other options
either misinterpret the allowable range or are incorrect about the pass/fail criteria.
Q4.
When testing a reduced pressure zone assembly (RPZ), you close the #2 shut-off valve
and open the #2 test cock. You observe that the pressure at the #2 test cock reads 0 psi.
Which of the following is the most likely cause?
A. The #2 shut-off valve is leaking in the B. The #2 test cock is plugged or blocked,
closed position, allowing downstream preventing an accurate pressure reading.
pressure to bleed back into the zone.
C. The check valve #2 is holding properly, D. The relief valve is stuck open, allowing
but the zone is depressurized because the the zone to drain completely.
#1 shut-off valve is closed.
Correct: B - The #2 test cock is plugged or blocked, preventing an accurate pressure
reading.
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