
Intended Audience: for hydrologists, civil engineers, hydraulic engineers, highway engineers, geotechnical engineers and environmental engineers.


Master pumping system design and piping installation to prevent costly errors and optimize hydraulic performance, ensuring reliability and efficiency in any environment.


An attendee of this course will gain knowledge about several methods that can be used to estimate peak discharge for an ungaged site.


The purpose of this course is to provide engineers with some of the fundamentals of planning and developing groundwater resources.

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Transform hydrological data into resilient design solutions by mastering the practical water simulation models that drive modern civil infrastructure.


Master hydraulic transient modeling to prevent destructive pipeline failures, mitigate pressure surges, and engineer safe, highly resilient fluid distribution systems.


Master surge control, predict water hammer effects, and design resilient protection systems to safeguard critical water infrastructure from destructive pressure transients.


Master the science of coastal hydrogeology and implement effective engineering strategies to model, prevent, and mitigate saltwater intrusion in vulnerable freshwater aquifers.


Bridge the gap between hydrologic theory and practical application to build robust watershed models for flood control and stormwater analysis.


Master the fundamentals of open channel flow, from theory to practical design. Learn to analyze complex systems, predict behavior, and engineer stable, efficient channels.
