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Centrifugal Pumps

Our Ration for the course : 4.7 Start Based on 56 users

Variable-speed pumping / TDH requirements / Proper foundations

Causes of bearing failure / Corrosion inside the pump / How specific speed governs pump designs

Suction-specific speed / Understand design differences between major pump types / Read pump curves

Recirculation / Importance of shaft deflection / Components of pump’s total discharge head requirement

Difference between closed and open pumping systems / Proper pump installation & Troubleshooting mechanical seal failures

New pump start-up / Causes of wear & Air entrainment / Relationship between flow rate and head

Pump performance curves theoretical vs. actual / Net positive suction head available (NPSHA)

Multiple pump operation (group lab): advantages and applications of parallel and series pumping / Cavitation and measures to prevent it (NPSHA vs. NPSHR)

Energy, work and brake horsepower / Pump types and classifications / Single vs. double suction

Shaft deflection and mechanical loads / Twin-volute vs. single-volute

Name of Course Scheduled Dates Vanue Registration Link
Centrifugal Pumps To be determined Dubai, UAE Registration Now

Centrifugal pumps are a sub-class of dynamic axisymmetric work-absorbing turbomachinery.[1] Centrifugal pumps are used to transport fluids by the conversion of rotational kinetic energy to the hydrodynamic energy of the fluid flow. The rotational energy typically comes from an engine or electric motor. The fluid enters the pump impeller along or near to the rotating axis and is accelerated by the impeller, flowing radially outward into a diffuser or volute chamber (casing), from where it exits. Common uses include water, sewage, petroleum and petrochemical pumping; a centrifugal fan is commonly used to implement a vacuum cleaner. The reverse function of the centrifugal pump is a water turbine converting potential energy of water pressure into mechanical rotational energy.

Upon completion of this course participants will be able to know: - Installation, troubleshooting and maintenance of centrifugal and positive displacement pumps. - How to read and apply pump curves and be able to research manuals for part and size specifications. - Hands-on learning in a lab / workshop setting to help the participant develop a high level of practical skills useful in industry.
Learning Level:  
Intermediate
Duration:  
3 days
Upon completion of this course participants will be able to know: - Installation, troubleshooting and maintenance of centrifugal and positive displacement pumps. - How to read and apply pump curves and be able to research manuals for part and size specifications. - Hands-on learning in a lab / workshop setting to help the participant develop a high level of practical skills useful in industry. - Energy, work and brake horsepower - Pump types and classifications - Single vs. double suction - Shaft deflection and mechanical loads - Twin-volute vs. single-volute - Variable-speed pumping - TDH requirements - Proper foundations - Causes of bearing failure - Corrosion inside the pump - How specific speed governs pump designs - Suction-specific speed - Understand design differences between major pump types - Read pump curves - Recirculation - Importance of shaft deflection - Components of pump’s total discharge head requirement - Difference between closed and open pumping systems - Proper pump installation & Troubleshooting mechanical seal failures - New pump start-up - Causes of wear & Air entrainment - Relationship between flow rate and head - Pump performance curves theoretical vs. actual - Net positive suction head available (NPSHA) - Multiple pump operation (group lab): advantages and applications of parallel and series pumping - Cavitation and measures to prevent it (NPSHA vs. NPSHR)

Completion Certificate will be awarded after the training

  • doodles

    Mechanical Engineers, technicians and maintenance foremen

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