Centrifugal Pumps & Cavitation: A Maintenance Primer
A centrifugal pump running dry for even a few seconds can pit an impeller badly enough to need replacement. What cavitation actually is, why NPSH is the number that predicts it, and common causes beyond suction line design.
July 23, 2026 ·
Updated July 23, 2026 ·
3 min read ·
SCMEP Training Team ·
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A centrifugal pump running dry for even a few
seconds can pit an impeller badly enough to need replacement — and the
sound it makes while doing it, often described as pumping gravel, is
one of the most recognizable warning signs in a mechanical room once
you know what it means.
How a centrifugal pump actually moves fluid
A centrifugal pump uses a rotating impeller to accelerate fluid
outward, converting that kinetic energy into pressure as the fluid
exits into the pump’s volute casing. Unlike a positive displacement
pump, which physically traps and moves a fixed volume of fluid, a
centrifugal pump’s output varies with the system’s resistance —
meaning the same pump delivers different flow depending on what it’s
pumping against.
What cavitation actually is
Cavitation in three steps
Step
What happens
1. Pressure drop
Local pressure at the impeller eye drops below the fluid’s vapor pressure
2. Vapor bubbles form
The fluid flashes into vapor bubbles at that low-pressure point
3. Violent collapse
Bubbles collapse as they reach higher-pressure regions, generating shock waves that erode metal
Net Positive Suction Head: the number that predicts it
Net Positive Suction Head Available (NPSHa), a property of the
actual system as installed, has to exceed the pump’s NPSH Required
(NPSHr), a number the manufacturer publishes for that specific pump. A
common design mistake — running a suction line too long, too small in
diameter, or too far above the fluid source — silently reduces NPSHa
until a pump that ran fine on the test bench cavitates once installed.
Common causes beyond suction line design
Cavitation isn’t always a design flaw introduced at installation —
a clogged suction strainer, a nearly-closed suction valve, or fluid
running hotter than the system was designed for can all push a
previously healthy installation into cavitation. Running a pump too far
off its best efficiency point on the pump curve is another common,
often overlooked cause.
Cavitation damage and bearing failure from bad lubrication are both preventable maintenance problems that get diagnosed the same reactive way. Read our guide to lubrication fundamentals — choosing the right grease or oil.
Frequently asked questions
How does a centrifugal pump move fluid?
A centrifugal pump uses a rotating impeller to accelerate fluid outward, converting that kinetic energy into pressure as fluid exits into the volute casing. Its output varies with system resistance, unlike a positive displacement pump.
What is cavitation in a pump?
Cavitation occurs when local pressure at the impeller eye drops below the fluid’s vapor pressure, forming vapor bubbles that then collapse violently as they reach higher-pressure regions, eroding metal surfaces.
What is NPSH and why does it matter?
Net Positive Suction Head Available (NPSHa), a property of the installed system, must exceed the pump’s published NPSH Required (NPSHr). Suction line design mistakes can silently reduce NPSHa until cavitation occurs.
What other issues can cause cavitation besides poor installation design?
A clogged suction strainer, a nearly-closed suction valve, fluid running hotter than designed for, or running the pump far off its best efficiency point can all push a healthy installation into cavitation.
South Carolina Manufacturing Extension Partnership has delivered manufacturing training to South Carolina manufacturers since 1989. Articles are produced and reviewed by SCMEP's training team.