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Mep Engineer Course
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Mep Engineer Course

4.4

Master the full scope of mechanical, electrical, and plumbing engineering with a curriculum built for real project demands. From load calculations and ductwork design to BIM coordination and energy modeling, this course covers every core MEP discipline. Whether you're entering the field or advancing your career, you'll gain the technical depth employers expect.

Dedika for students

What your team will master:

This course covers all three MEP disciplines in structured, practical detail. You will learn how to perform heating and cooling load calculations, design domestic water and sanitary drainage systems, and size electrical distribution equipment from utility service to branch circuits. You will also apply BIM tools for clash detection, produce coordinated construction documents, and evaluate energy efficiency strategies including renewable energy integration. Specialized topics include healthcare facilities, data centers, and advanced HVAC controls. By the end, you will have the technical skills to contribute to complex building projects across every MEP discipline.

How your team learns in practice Mep Engineer Course

How your team practices Mep Engineer Course

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ActemiumFR
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CDHCN

Course Content

8 Chapters • 41 LessonsDuration between 4 and 360 hours (you decide)

Chapter 1See details

Foundations of MEP Engineering

  • Lesson 1 • Engineering Drawing and Documentation

    Covers reading and interpreting MEP drawings, symbols, and schedules. Provides the document literacy needed for all subsequent design and coordination tasks.

  • Lesson 2 • MEP Disciplines and Scope

    Defines mechanical, electrical, and plumbing engineering roles within construction projects. Connects discipline boundaries to collaborative design workflows.

  • Lesson 3 • Building Systems Integration Overview

    Examines how HVAC, electrical, and plumbing systems share space and interact structurally. Builds awareness of spatial conflicts and coordination priorities.

  • Lesson 4 • Codes, Standards, and Regulations

    Introduces regulatory frameworks governing MEP design, including safety and energy standards. Establishes compliance as a non-negotiable design constraint.

  • Lesson 5 • Units, Calculations, and Engineering Math

    Reviews measurement units, unit conversions, and fundamental calculations used across MEP disciplines. Ensures numerical fluency for load and sizing work ahead.

Chapter 2See details

Mechanical Systems: HVAC Design

  • Lesson 1 • Ventilation and Indoor Air Quality

    Applies ventilation rate standards to ensure adequate fresh air and pollutant dilution. Links ventilation design to occupant health and regulatory compliance.

  • Lesson 2 • Ductwork Design and Air Distribution

    Covers duct sizing methods, pressure loss calculations, and diffuser placement for balanced airflow. Proper distribution ensures comfort and energy efficiency.

  • Lesson 3 • Hydronic Heating and Cooling Systems

    Designs chilled water and hot water piping systems including pump sizing and pipe layout. Hydronic systems serve large commercial and institutional buildings.

  • Lesson 4 • Psychrometrics and Thermal Comfort

    Explains air properties, moisture content, and human comfort parameters. Provides the thermodynamic basis for all HVAC sizing and control decisions.

  • Lesson 5 • Heating and Cooling Load Calculations

    Applies heat transfer principles to calculate building thermal loads using industry-standard methods. Accurate loads drive equipment sizing and energy performance.

  • Lesson 6 • HVAC System Types and Selection

    Compares central, split, VRF, and dedicated outdoor air systems for various building applications. Selection criteria include efficiency, cost, and spatial constraints.

Chapter 3See details

Plumbing Systems Design

  • Lesson 1 • Domestic Water Supply Systems

    Covers cold and hot water distribution design, pressure requirements, and pipe sizing methods. Establishes the supply framework for all downstream plumbing components.

  • Lesson 2 • Fire Suppression and Specialty Systems

    Introduces wet-pipe, dry-pipe, and clean-agent suppression systems and their design parameters. Specialty systems include medical gas and laboratory plumbing.

  • Lesson 3 • Sanitary Drainage and Venting

    Designs gravity drainage systems and vent stacks to maintain trap seals and prevent sewer gas entry. Correct slope and venting are critical for system function.

  • Lesson 4 • Stormwater and Roof Drainage

    Sizes roof drains, leaders, and site drainage systems based on rainfall intensity data. Connects stormwater management to site and structural coordination.

  • Lesson 5 • Fixture Selection and Accessibility

    Selects plumbing fixtures meeting water efficiency and accessibility requirements. Fixture counts are determined by occupancy type and applicable standards.

Chapter 4See details

Electrical Systems: Power Distribution

  • Lesson 1 • Panelboard and Circuit Design

    Designs branch circuit panelboards, load schedules, and circuit breaker coordination. Balanced loading and proper protection are key outcomes.

  • Lesson 2 • Utility Service and Metering

    Covers utility service entrance design, metering arrangements, and coordination with utility providers. Service sizing sets the capacity ceiling for the entire building.

  • Lesson 3 • Transformers and Switchgear

    Explains transformer types, ratings, and placement alongside switchgear and switchboard design. These components form the backbone of building power distribution.

  • Lesson 4 • Grounding and Bonding Systems

    Applies grounding and bonding requirements to ensure personnel safety and equipment protection. Correct grounding is mandatory for code compliance.

  • Lesson 5 • Electrical Fundamentals for MEP

    Reviews voltage, current, resistance, power, and three-phase concepts essential for building electrical design. Provides the theoretical base for all power system work.

Chapter 5See details

Electrical Systems: Lighting and Low Voltage

  • Lesson 1 • Standby and Backup Power Systems

    Covers generator sizing, automatic transfer switches, and uninterruptible power supply design. Backup power ensures critical loads remain energized during outages.

  • Lesson 2 • Lighting Design Principles

    Applies photometric concepts to design interior and exterior lighting for visual comfort and energy compliance. Illuminance targets vary by space type and task.

  • Lesson 3 • Lighting Controls and Energy Compliance

    Designs occupancy sensing, daylight harvesting, and dimming controls to meet energy standards. Controls reduce energy use while maintaining occupant comfort.

  • Lesson 4 • Low-Voltage and Specialty Systems

    Introduces fire alarm, data, security, and audiovisual systems within the MEP scope. Coordination with other trades is essential for pathway and device placement.

  • Lesson 5 • Emergency and Exit Lighting Systems

    Designs emergency egress lighting and exit signs per life-safety requirements. Battery backup and generator transfer are critical reliability elements.

Chapter 6See details

MEP Coordination and BIM Integration

  • Lesson 1 • Coordination Drawings and Shop Drawings

    Produces composite coordination drawings and reviews contractor shop drawings for compliance. These documents bridge design intent and field installation.

  • Lesson 2 • MEP Model Deliverables and Standards

    Establishes model quality standards, deliverable formats, and handover requirements for MEP BIM projects. Consistent standards enable downstream use by contractors and owners.

  • Lesson 3 • BIM Fundamentals for MEP Engineers

    Introduces BIM concepts, model authoring environments, and MEP-specific modeling workflows. BIM literacy is prerequisite for all coordination tasks in this chapter.

  • Lesson 4 • Clash Detection and Resolution

    Uses federated models and clash detection software to identify and resolve hard and soft clashes. Systematic resolution prevents costly field conflicts.

  • Lesson 5 • Space Planning and Ceiling Coordination

    Allocates ceiling plenum space among MEP systems and structural elements to achieve design intent. Ceiling height constraints drive routing decisions for all disciplines.

Chapter 7See details

Energy Efficiency and Sustainable MEP Design

  • Lesson 1 • Passive Design Strategies

    Integrates building orientation, shading, natural ventilation, and thermal mass to reduce MEP loads. Passive strategies lower system capacity requirements and operating costs.

  • Lesson 2 • Renewable Energy Integration

    Designs photovoltaic, solar thermal, and geothermal systems as MEP energy sources. Renewable integration requires coordination with structural and electrical systems.

  • Lesson 3 • High-Efficiency MEP Equipment

    Evaluates high-efficiency chillers, heat pumps, variable-speed drives, and LED lighting for energy savings. Equipment efficiency ratings directly affect energy model outcomes.

  • Lesson 4 • Building Energy Modeling Fundamentals

    Introduces whole-building energy simulation tools, input parameters, and output interpretation. Energy models quantify system performance and guide design decisions.

  • Lesson 5 • Green Building Certification Criteria

    Maps MEP design decisions to green certification credit categories for energy, water, and indoor quality. Certification documentation requires coordinated evidence from all MEP disciplines.

Chapter 8See details

MEP Project Delivery and Construction Administration

  • Lesson 1 • Design Phase Deliverables and Milestones

    Defines schematic, design development, and construction document deliverables for MEP disciplines. Milestone content requirements align with owner and contractor expectations.

  • Lesson 2 • Bidding, Procurement, and Submittals

    Manages the MEP bidding process, contractor selection criteria, and submittal review workflows. Thorough submittal review ensures installed equipment matches design intent.

  • Lesson 3 • Commissioning and Project Closeout

    Leads MEP commissioning activities, punch list resolution, and owner training for building systems. Closeout documentation ensures long-term operability and warranty compliance.

  • Lesson 4 • Cost Estimating and Value Engineering

    Applies MEP cost estimating methods and value engineering techniques to optimize project budgets. Cost awareness shapes system selection and specification decisions.

  • Lesson 5 • Site Observation and Field Coordination

    Conducts MEP site observations, documents field conditions, and resolves installation issues. Regular site presence protects design intent and identifies deficiencies early.

Certification

Your valid completion certificate

This course is for you:

  • Junior MEP engineer: wants structured training to close knowledge gaps quickly.

  • Architectural drafter: needs to understand the systems behind the drawings produced.

  • Construction project manager: coordinates MEP trades but lacks engineering background.

  • Career changer from a related trade: ready to move into a design engineering role.

  • Facilities engineer: manages building systems and wants deeper design-level understanding.

  • Civil or structural engineer: expanding scope to include MEP coordination responsibilities.

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