
MEP Engineering Course
Master every discipline of building services engineering — mechanical, electrical, plumbing, and fire protection — in one comprehensive program. This course takes you from foundational MEP concepts to advanced system integration, energy modeling, and BIM coordination. Whether you are entering the field or expanding your technical expertise, you will gain the practical skills employers demand on real construction projects.
What you will learn:
This course covers the full scope of MEP engineering, including HVAC load calculations, plumbing system design, power distribution, lighting, fire protection, and low-voltage systems. You will learn how to read and produce MEP drawings, apply building codes, and coordinate multi-discipline systems using BIM-based clash detection. The program also addresses energy efficiency strategies, green building certification, commissioning processes, and cost estimation. Advanced topics include smart building technologies, IoT integration, electrification, and AI-assisted design tools. By the end, you will be equipped to contribute to complex MEP projects from design through construction and handover.
How you study in a practical way MEP Engineering Course
How you practise MEP Engineering Course
For companies looking to train their teams
With Dedika for businesses, the course includes exercises and examples tailored to your own business and the way your company needs.
Course content
8 Chapters • 41 LessonsDuration between 4 and 360 hours (you decide)
Chapter 1HideHide detailsSee detailsFoundations of Building Services Engineering
Foundations of Building Services Engineering
Lesson 1 • Introduction to MEP Systems
This section defines mechanical, electrical, and plumbing disciplines and their interdependencies. It provides the conceptual framework used throughout the entire course.
Lesson 2 • Regulatory Framework and Standards
This module surveys building codes, safety standards, and energy regulations governing MEP design. Students identify compliance requirements applicable to typical projects.
Lesson 3 • Reading MEP Drawings and Specifications
This module teaches interpretation of floor plans, schematics, and riser diagrams. It enables students to extract design intent from standard project documents.
Lesson 4 • Building Types and Service Requirements
This module examines how occupancy type drives MEP system selection and sizing. It connects building function to engineering decisions made in later chapters.
Lesson 5 • MEP Project Delivery and Coordination
This module outlines procurement methods, design phases, and multi-discipline coordination workflows. It prepares students for collaborative project environments encountered in practice.
Chapter 2HideHide detailsSee detailsMechanical Systems: HVAC Fundamentals
Mechanical Systems: HVAC Fundamentals
Lesson 1 • HVAC Controls and Building Automation
This module introduces control sequences, sensors, and building automation system architecture. Students specify control strategies that optimize comfort and energy use.
Lesson 2 • Air Distribution Systems
This module explains duct design, air terminal selection, and fan performance for conditioned air delivery. Students size ductwork and select diffusers for comfort and efficiency.
Lesson 3 • Heating and Cooling Equipment
This module surveys boilers, chillers, heat pumps, and packaged units with selection criteria. It connects equipment capacity to calculated loads from the previous section.
Lesson 4 • Ventilation and Indoor Air Quality
This module addresses outdoor air requirements, filtration, and contaminant control strategies. It ensures designs meet occupant health and regulatory ventilation standards.
Lesson 5 • Thermodynamics and Heat Transfer Basics
This module covers conduction, convection, radiation, and psychrometric principles essential to HVAC design. It anchors all subsequent equipment selection and load calculations.
Lesson 6 • Heating Load and Cooling Load Calculations
This module applies heat transfer theory to calculate building thermal loads using industry-standard methods. Accurate load data drives equipment sizing in following sections.
Chapter 3HideHide detailsSee detailsPlumbing Systems Design and Engineering
Plumbing Systems Design and Engineering
Lesson 1 • Stormwater and Site Drainage
This module addresses roof drainage, area drains, and site stormwater management connected to building systems. Students size roof drains and overflow provisions for code compliance.
Lesson 2 • Domestic Water Supply Systems
This module covers water pressure, pipe sizing, and fixture unit calculations for cold and hot water supply. It establishes the hydraulic principles applied throughout plumbing design.
Lesson 3 • Sanitary Drainage and Venting
This module teaches drain, waste, and vent system design using fixture unit loading and slope requirements. Proper venting prevents siphonage and ensures system performance.
Lesson 4 • Hot Water Generation and Distribution
This module examines water heater types, storage sizing, and recirculation loop design for reliable hot water delivery. It addresses energy efficiency and Legionella prevention requirements.
Lesson 5 • Specialty Plumbing Systems
This module covers medical gas, laboratory, and grease waste systems requiring specialized design knowledge. It expands student capability beyond standard residential and commercial plumbing.
Chapter 4HideHide detailsSee detailsElectrical Systems: Power Distribution
Electrical Systems: Power Distribution
Lesson 1 • Wiring Methods and Conduit Systems
This module examines conductor sizing, conduit types, and installation methods for building power systems. It ensures designs meet safety and code requirements for wiring installations.
Lesson 2 • Power Distribution Equipment
This module covers transformers, switchgear, panelboards, and circuit breakers used in building distribution. Students select and schedule equipment based on calculated load requirements.
Lesson 3 • Electrical Load Calculations
This module applies demand factor and diversity methods to calculate connected and demand loads. Accurate load data determines service entrance and distribution equipment sizing.
Lesson 4 • Electrical Fundamentals for Buildings
This module reviews voltage, current, power, and three-phase concepts as applied to building electrical systems. It provides the theoretical base for all subsequent electrical design work.
Lesson 5 • Emergency and Standby Power Systems
This module addresses generator sizing, automatic transfer switches, and UPS systems for critical loads. Students classify loads and design reliable backup power configurations.
Chapter 5HideHide detailsSee detailsElectrical Systems: Lighting and Low Voltage
Electrical Systems: Lighting and Low Voltage
Lesson 1 • Lighting Controls and Energy Efficiency
This module examines occupancy sensors, daylight harvesting, and dimming systems for energy code compliance. It integrates control strategies with BAS systems introduced in Chapter 2.
Lesson 2 • Fire Alarm System Design
This module covers detector types, notification appliances, and system architecture for life safety compliance. Students design addressable fire alarm systems for typical occupancies.
Lesson 3 • Data and Communications Infrastructure
This module covers structured cabling, telecommunications rooms, and wireless access point design. It ensures MEP engineers can coordinate IT infrastructure within building projects.
Lesson 4 • Lighting Design Principles
This module covers illuminance levels, luminaire types, and photometric calculations for interior spaces. It connects lighting quality to occupant productivity and energy performance.
Lesson 5 • Security and Access Control Systems
This module introduces card access, CCTV, and intrusion detection system components and layouts. It prepares students to coordinate security systems with architectural and MEP drawings.
Chapter 6HideHide detailsSee detailsFire Protection Systems Engineering
Fire Protection Systems Engineering
Lesson 1 • Special Hazard Suppression Systems
This module examines clean agent, foam, and kitchen hood suppression systems for specialized hazard applications. It expands design capability beyond standard water-based fire protection.
Lesson 2 • Automatic Sprinkler System Design
This module covers sprinkler head types, spacing rules, and hydraulic calculation methods for wet and dry systems. Students produce compliant sprinkler layouts using density-area design criteria.
Lesson 3 • Standpipe and Hose Systems
This module addresses Class I, II, and III standpipe configurations, pressure requirements, and hose connection placement. It connects standpipe design to building height and occupancy requirements.
Lesson 4 • Fire Pump and Water Supply Design
This module covers fire pump selection, driver types, and water supply testing for adequate system pressure. Students verify supply adequacy and specify pump packages for complex buildings.
Lesson 5 • Fire Protection Fundamentals
This module explains fire behavior, occupancy hazard classifications, and the role of active and passive protection. It establishes the risk-based framework guiding all fire protection design decisions.
Chapter 7HideHide detailsSee detailsMEP System Integration and Coordination
MEP System Integration and Coordination
Lesson 1 • Shaft and Riser Coordination
This module examines vertical shaft sizing, sleeve placement, and fire-rated penetration requirements for MEP risers. Students size shafts and produce riser coordination drawings.
Lesson 2 • Construction Phase Coordination
This module covers shop drawing review, RFI management, and field coordination meetings during construction. It prepares students to maintain design intent through the construction process.
Lesson 3 • Spatial Coordination and Ceiling Plenum Design
This module addresses routing priorities, clearance requirements, and plenum space allocation for all MEP trades. Students develop coordinated section drawings resolving multi-trade conflicts.
Lesson 4 • BIM-Based MEP Coordination
This module introduces BIM workflows, model authoring standards, and federated model assembly for MEP coordination. It builds on drawing skills from Chapter 1 using three-dimensional digital tools.
Lesson 5 • Mechanical and Electrical Room Layout
This module covers equipment arrangement, service clearances, and access requirements for mechanical and electrical rooms. Proper room layout ensures maintainability and code compliance.
Chapter 8HideHide detailsSee detailsEnergy Efficiency and Sustainable MEP Design
Energy Efficiency and Sustainable MEP Design
Lesson 1 • Building Energy Modeling Fundamentals
This module introduces whole-building energy simulation tools, input parameters, and output interpretation. Energy models quantify the impact of MEP design decisions on annual energy use.
Lesson 2 • High-Performance HVAC Strategies
This module examines variable refrigerant flow, dedicated outdoor air systems, and heat recovery for energy reduction. It builds on HVAC fundamentals from Chapter 2 with advanced efficiency measures.
Lesson 3 • Water Conservation in Plumbing Design
This module covers low-flow fixtures, greywater reuse, and rainwater harvesting systems for water efficiency. It connects plumbing design from Chapter 3 to sustainability performance goals.
Lesson 4 • Green Building Certification and Compliance
This module surveys major green building rating systems and the MEP prerequisites and credits within each. Students map design decisions to certification requirements and document compliance.
Lesson 5 • Renewable Energy System Integration
This module addresses photovoltaic, solar thermal, and geothermal systems integrated with building MEP infrastructure. Students size renewable systems and evaluate grid interconnection requirements.
Your valid completion certificate
This course is for you:
Architecture graduates: eager to understand the engineering systems behind their designs.
Construction project managers: needing deeper MEP knowledge to lead technical teams.
Facilities managers: looking to speak the same language as their engineering contractors.
Career changers from trades: ready to move into engineering design and coordination roles.
Junior MEP engineers: seeking structured training to accelerate their professional development.
Building inspectors: wanting to strengthen their technical review skills across all disciplines.
What our students say
Your classes are perfect. I purchased the one-year package and finally have the opportunity to follow various topics of my interest without needing to change platforms... I thank you for everything you do, I've already recommended you to other people...

I like how the lessons are straight to the point and how I can change chapters and skip content that I don't need.

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