Industrial Pumps Operations, Principles and Maintenance
Course Objective
Industrial Pump Operation, Maintenance, Troubleshooting & Reliability — Beginner to Advanced
Course Title: Pumps Operations, Principles and Maintenance
Level: Beginner → Advanced
Format: Online / Self-Paced + Practical Application
Recommended Duration: 10–12 weeks
Target Audience: Plant operators, maintenance technicians, mechanical technicians, engineers, E&I technicians, production personnel, and reliability personnel
Industry Applications: Oil & gas, petrochemical, manufacturing, power generation, water treatment, utilities, and process industries
Course Description
This professional online course provides comprehensive knowledge of industrial pump principles, operation, maintenance, troubleshooting, and reliability. Participants will learn how different types of pumps work, how to select and operate pumps safely, interpret pump performance curves, identify operating problems, perform preventive and predictive maintenance, and troubleshoot common pump failures.
Course Fee
- Online Training fee: N250,000
- Offline Training Fee: Request a quote
Module 1 — Fundamentals of Industrial Pumps
Lessons
- Introduction to industrial pumps
- Purpose and applications of pumps
- Pump terminology and basic concepts
- Pressure, head, flow rate and velocity
- Static head and friction head
- Pump efficiency and power
- Pump duty point
- Pump system fundamentals
- Pump classifications
- Positive-displacement vs centrifugal pumps
Learning Outcomes
Participants will be able to:
- Explain the purpose of industrial pumps.
- Identify major pump types.
- Understand flow, pressure, head and efficiency.
- Describe basic pump-system relationships.
Practical Assignment: Identify and classify pumps used in a process plant.
Module 2 — Centrifugal Pump Principles
Lessons
- Centrifugal pump operating principle
- Pump casing
- Impeller types and construction
- Shaft and shaft sleeves
- Wear rings
- Bearings
- Mechanical seals
- Packing systems
- Suction and discharge connections
- Single-stage and multistage centrifugal pumps
- Horizontal and vertical centrifugal pumps
- End-suction and split-case pumps
Practical
- Identify centrifugal pump components from drawings and photographs.
- Trace the flow path through a centrifugal pump.
Module 3 — Positive Displacement Pumps
Lessons
- Principles of positive displacement pumping
- Reciprocating pumps
- Piston pumps
- Plunger pumps
- Diaphragm pumps
- Gear pumps
- Screw pumps
- Vane pumps
- Lobe pumps
- PD pump relief systems
- Applications and limitations
- Centrifugal vs PD pumps
Case Study
Selecting the appropriate pump for high-viscosity process fluid.
Module 4 — Pump Hydraulic Principles
Lessons
- Flow and pressure relationships
- Pump head
- Total Dynamic Head (TDH)
- Static head
- Friction losses
- System resistance
- Pump affinity laws
- Pump efficiency
- Hydraulic power
- Brake horsepower
- Pump performance calculations
- Operating point
Practical Calculations
- Calculate pump head.
- Calculate hydraulic power.
- Calculate pump efficiency.
- Determine system pressure losses.
Module 5 — Pump Performance Curves
Lessons
- Understanding pump curves
- Head vs flow curves
- Efficiency curves
- Power curves
- NPSH required curves
- System curves
- Determining pump duty point
- Best Efficiency Point (BEP)
- Operating away from BEP
- Pump curve interpretation
- Series pump operation
- Parallel pump operation
Practical Assignment
Analyze a manufacturer pump curve and determine the expected operating point.
Module 6 — NPSH, Cavitation and Pump Hydraulic Problems
Lessons
- Introduction to NPSH
- NPSH Available
- NPSH Required
- Understanding cavitation
- Causes of cavitation
- Cavitation symptoms
- Cavitation damage
- Vapor pressure
- Suction-line losses
- Preventing cavitation
- Troubleshooting low suction pressure
- Pump starvation
Case Study
Centrifugal pump experiencing vibration, noise and reduced flow.
Participants diagnose whether the problem is related to cavitation, suction restriction or another operating condition.
Module 7 — Pump Installation and Commissioning
Lessons
- Pump foundation requirements
- Baseplates and soleplates
- Pump and motor installation
- Piping installation
- Suction piping requirements
- Discharge piping
- Valve installation
- Strainers and filters
- Coupling installation
- Shaft alignment
- Soft-foot inspection
- Lubrication
- Rotation checks
- Pump priming
- Pre-commissioning checks
- Pump commissioning procedure
Practical Assignment
Develop a pump installation and commissioning checklist.
Module 8 — Pump Operation and Control
Lessons
- Normal pump operating procedures
- Pump start-up
- Pump running checks
- Pump shutdown
- Emergency shutdown
- Minimum-flow requirements
- Recirculation systems
- Flow control
- Pressure control
- Variable Frequency Drive (VFD) control
- Automatic pump start/stop
- Duty/standby pump operation
- Pump sequencing
- Operating limits
Practical
Create a standard operating procedure for starting and stopping a centrifugal pump.
Module 9 — Pump Mechanical Maintenance
Lessons
- Pump maintenance philosophy
- Preventive maintenance
- Predictive maintenance
- Corrective maintenance
- Pump inspection
- Bearing inspection
- Mechanical seal inspection
- Packing inspection
- Impeller inspection
- Wear-ring inspection
- Shaft inspection
- Coupling inspection
- Lubrication maintenance
- Pump overhaul procedures
Practical Assignment
Develop a preventive-maintenance schedule for an industrial centrifugal pump.
Module 10 — Pump Alignment, Vibration and Condition Monitoring
Lessons
- Fundamentals of shaft alignment
- Coupling alignment
- Angular misalignment
- Parallel misalignment
- Soft foot
- Laser alignment
- Dial-indicator alignment
- Pump vibration fundamentals
- Vibration measurement
- Bearing condition monitoring
- Temperature monitoring
- Ultrasound inspection
- Trend analysis
- Predictive maintenance
Case Study
Pump vibration increases after motor replacement.
Participants investigate alignment, soft foot, coupling and bearing-related causes.
Module 11 — Pump Troubleshooting and Failure Analysis
Lessons
- Pump troubleshooting methodology
- Low flow problems
- Low discharge pressure
- High discharge pressure
- Excessive vibration
- Excessive noise
- Bearing overheating
- Mechanical seal leakage
- Packing leakage
- Motor overload
- Pump not priming
- Pump losing prime
- Cavitation
- Frequent pump failure
- Impeller damage
- Shaft failure
- Bearing failure
- Seal failure
Troubleshooting Case Studies
Case Study 1: Pump will not deliver flow
Case Study 2: Excessive pump vibration
Case Study 3: Mechanical seal repeatedly fails
Case Study 4: Pump motor overloads
Case Study 5: Pump cavitates during high demand
Case Study 6: Bearing temperature continuously increases
Module 12 — Advanced Pump Reliability and Maintenance
Lessons
- Reliability-centered pump maintenance
- Root Cause Failure Analysis (RCFA)
- Failure Mode and Effects Analysis (FMEA)
- Mean Time Between Failures (MTBF)
- Mean Time To Repair (MTTR)
- Critical pump identification
- Spare-parts management
- Pump reliability improvement
- Energy-efficient pump operation
- Pump system optimization
- Condition-based maintenance
- Maintenance KPI development
- Pump performance testing
- Reliability improvement strategies
Final Project
Develop a complete Pump Operations and Maintenance Program for a process facility, including:
- Pump inventory
- Pump criticality assessment
- Operating procedures
- Preventive-maintenance schedule
- Inspection checklist
- Troubleshooting guide
- Spare-parts list
- Condition-monitoring plan
- Failure-analysis procedure
- Pump performance-monitoring plan
Online Course Components
Each lesson can contain:
|
Component |
Recommended Format |
|
Video lesson |
10–25 minutes |
|
Lesson notes |
|
|
Animated/technical diagrams |
Pump components and flow paths |
|
Demonstration video |
Maintenance/operation procedures |
|
Knowledge quiz |
5–10 questions |
|
Practical exercise |
Calculation or troubleshooting |
|
Case study |
Realistic industrial scenario |
|
Downloadable checklist |
|
|
Module test |
15–25 questions |
Recommended Visual Materials
The course should include diagrams and photographs of:
- Centrifugal pump cross-section
- Impeller types
- Pump casing
- Mechanical seal
- Packing arrangement
- Bearings
- Couplings
- Pump/motor alignment
- Pump curves
- System curves
- NPSH diagram
- Cavitation damage
- Suction and discharge piping
- Multistage pumps
- Positive-displacement pumps
- Pump lubrication systems
- Vibration measurement
- Laser alignment
- Pump overhaul procedures
Assessment Structure
- Lesson quizzes: 10%
- Module tests: 20%
- Practical assignments: 20%
- Troubleshooting case studies: 15%
- Final project: 10%
- Final certification examination: 25%
Total: 100%
Final Certification Exam
A comprehensive 100-question final examination can cover:
- Pump fundamentals
- Centrifugal pumps
- Positive-displacement pumps
- Hydraulics
- Pump curves
- NPSH and cavitation
- Installation
- Operation
- Maintenance
- Alignment
- Vibration
- Troubleshooting
- Failure analysis
- Reliability
- Safety
Recommended pass mark: 70%.
Suggested Course Certificate
Certificate of Completion
Pumps Operations, Principles and Maintenance — Beginner to Advanced
The certificate can state that the participant has successfully completed theoretical, practical, troubleshooting, maintenance, and assessment requirements for industrial pump operation and maintenance.