Technical Paper

Understanding Waterhammer in Pumping Systems and Surge Suppression Options

Sep 03, 2025
Trey Walters, P.E.
Trey Walters, P.E.
Trey Walters is currently Principal, R&D, Engineering Software at Datacor. He previously founded Applied Flow Technology which is now part of Datacor. He has developed simulation software for pipe flow, system optimization, slurries, waterhammer, and pulsation modeling. He has 40 years of experience in thermal/fluid system engineering and has consulted in numerous industries including power, municipal water, oil & gas and chemicals. He holds both a Bachelor and Masters Degree in Mechanical Engineering. He sits on several standards committees of the Hydraulic Institute and is Chairman of their Waterhammer Committee, and he is a Fellow of the ASME.

Trey WaltersApplied Flow Technology, USA, Frank Smith III and Amy Marroquin, EIT Engineering Project Manager BLACOH Surge Control Lake Jackson, TX, USA

Abstract: Waterhammer in pumping systems is an area of frequent concern to designers and operators. Waterhammer has the potential to cause catastrophic failures if not properly addressed. System designers have multiple options to mitigate waterhammer in the basic design. These include pipe system design, check valve selection and motor or pneumatically operated valve selection and actuation. In some cases, surge suppression is required. Suppression options include surge vessels, relief systems, vacuum breaker valves and air release valves. This paper provides an overview of the waterhammer phenomenon, resources for engineers to assess waterhammer issues at the design stage and, for problematic systems already in operation, the issues involved with various surge suppression options.

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