System Operator Sewer Cleaning
Methods Exam Questions and
Correct Answers with Detailed
Rationales | 2026/2027 Edition |
1. What is the primary purpose of routine sewer cleaning in a
wastewater collection system?
A. To increase the diameter of the sewer pipe
B. To remove accumulated solids, grease, roots, and other
obstructions
C. To disinfect all wastewater entering the collection system
D. To increase wastewater temperature
Answer: B. To remove accumulated solids, grease, roots, and
other obstructions
Rationale: Routine sewer cleaning helps maintain the hydraulic
capacity of collection lines by removing materials that restrict
flow. Common accumulations include sand, grit, grease, sludge,
debris, and root growth. Regular cleaning also reduces the
likelihood of blockages, backups, and sanitary sewer overflows.
2. Which sewer-cleaning method uses high-pressure water to
scour the interior walls of a sewer pipe?
,A. Rodding
B. Chemical treatment
C. Hydraulic jetting
D. Bucket cleaning
Answer: C. Hydraulic jetting
Rationale: Hydraulic jetting uses a high-pressure water stream
discharged through a specially designed nozzle. The water jets
break up and mobilize deposits while the reaction force propels
the nozzle through the pipe. Jetting is widely used for removing
grease, sludge, sediment, and other soft-to-moderate deposits.
3. What is the main function of a sewer-cleaning nozzle during
hydraulic jetting?
A. To chemically disinfect the pipe
B. To direct pressurized water against deposits and provide
forward thrust
C. To measure pipe diameter
D. To permanently seal cracks
Answer: B. To direct pressurized water against deposits and
provide forward thrust
Rationale: The nozzle controls how pressurized water is
distributed inside the sewer. Rear-facing jets generally provide
propulsion and help flush loosened material toward the
downstream access point, while forward-facing or specialized jets
can help break up obstructions. Selecting the proper nozzle is
important for effective and safe cleaning.
,4. When using a hydraulic sewer-cleaning machine, why is
nozzle selection important?
A. Different deposits and pipe conditions require different
cleaning actions
B. All nozzles produce exactly the same cleaning effect
C. Nozzle selection determines the wastewater treatment
process
D. Nozzles are used only for measuring flow
Answer: A. Different deposits and pipe conditions require
different cleaning actions
Rationale: Different nozzle designs are suited to different
conditions. For example, flushing nozzles may be useful for loose
debris, while penetrating or specialized nozzles may be more
appropriate for tougher deposits. Proper selection improves
cleaning effectiveness while reducing the possibility of damaging
the pipe.
5. Which type of sewer cleaning equipment commonly uses a
rotating cutting head to remove hardened deposits or
obstructions?
A. Mechanical rodding equipment
B. Chlorination equipment
C. Flow meter
D. Manhole cover lifter
Answer: A. Mechanical rodding equipment
Rationale: Mechanical cleaning equipment may use rods, augers,
cutters, or other attachments to physically break through
obstructions. These tools are especially useful when materials
, are too hard or compacted for ordinary hydraulic flushing.
Operators must select equipment appropriate for the pipe
material and condition.
6. What is the primary purpose of a sewer-cleaning bucket
machine?
A. To collect and remove heavy deposits from the sewer
B. To inject disinfectant into the sewer
C. To measure dissolved oxygen
D. To inspect electrical connections
Answer: A. To collect and remove heavy deposits from the
sewer
Rationale: Bucket machines are designed to mechanically
scrape, collect, and remove accumulated material from larger
sewer lines. They can be particularly useful for removing heavy
deposits such as grit and sludge. The removed material must be
properly handled and disposed of according to applicable
requirements.
7. Which material is particularly likely to accumulate in
portions of a sewer system with low wastewater velocity?
A. Grit and sediment
B. Chlorine gas
C. Oxygen
D. Lime scale from drinking-water treatment
Answer: A. Grit and sediment