
Set up structural levels and grids in Revit MEP by selecting templates, creating levels, defining top of beam elevations, and placing and labeling grids for accurate plan views.
Position and copy structural clones across floors in Revit, load the metal clone family, edit sizes such as 70 by 40 and 60 by 40, and verify elevations.
Model beams across multiple floors in Revit by selecting 45x55, 40x50, and 25x50 types, placing beams B1–B11 per drawings, and connecting them to columns.
Model the TOF foundation by linking the foundation drawing, setting 110 cm thickness, top at minus 3.45 m, bottom at minus 4.55 m, and outlining with align and rectangle tools.
Model the ceiling in Revit by creating a 30 cm ceiling with 25 cm joists and 5 cm concrete, offset 5 cm above the top beam, and propagate across levels.
Define architectural levels in Revit MEP by importing finished floor levels and modeling a basement to ground floor ramp with a 3.5 meter width and a 10% slope.
Copy modeled elements across floors by selecting items, copying from the ribbon, and pasting to levels 2 through 6 while excluding columns and flooring.
Model the drainage pipe layout for the first floor wastewater network in Revit MEP by linking sanitary flare plans, sizing 110 mm pipes, setting slope, and aligning with architectural axis.
Model drainage pipe paths from fixtures with reference planes, 45-degree connections, and drops; set size and height, place elbows and tees, and coordinate with architectural and mechanical views.
Connect pipes to lavatories, floor drains, and toilets within Revit MEP, mastering pipe routing and fixture connections from zero to advanced project modeling.
Master sanitary fixture placement in Revit MEP by loading shower, wash water closet, and floor drain families, aligning to walls, setting host heights, and positioning on the work plane.
Model a drainage system in Revit MEP by detailing a polypropylene pipe network with 110 and 50 mm sizes, tees, elbows, and 45-degree transitions.
Model secondary drainage lines in Revit MEP by routing 110 mm pipes with -350 height and 1% slope, using 45-degree angles, tees, elbows, and align tools to fixtures.
Model vent pipe layout for restrooms in a revit mep project, connecting washbasins, western and eastern toilets to the riser with 50 mm polypropylene vents, half-percent slope, and 3d alignment.
Model the kitchen drain system in Revit MEP, routing 2-inch sink and 2-inch washing machine/dishwasher connections through polypropylene pipes with floor drain, a t-fitting, a one-way converter, and 45-degree bends.
Draft a polypropylene vent for the dishwasher and washing machine to the riser with a 50 mm vent at 1 m avoiding beam interference via 3D coordination with wastewater pipe.
Copy and paste drainage and vent systems across upper floors in Revit MEP, align to the correct levels, adjust vent heights, and resolve conflicts to extend risers to multiple floors.
Model the first floor sanitary waste drainage in Revit, adjusting pipe heights to avoid beam interference and routing risers to the main line using polypropylene pipes.
Model a rainwater piping system and roof outlet in Revit MEP, using HDPE pipes, 1% slopes, and risers while checking beam interference across levels.
Load and place radiator families on level 6, align the linked floor heating CAD drawing, and route five-layer PEX hydraulic pipes with precise elevations, sizes, and vent coil connections.
Copy ductwork across floors using parallel pipe to create horizontal and vertical runs with spacing, then adjust heights, switch from hydraulic supply to hydraulic return, and connect with trim.
Model a first-floor heating and cooling system in Revit MEP by linking CAD drawings, placing a docked split indoor unit, aligning geometry, and connecting heating, cooling, and drain pipes.
Learn to map firebox path on the ground floor, place and connect fire protection pipes, load the fire department inlet connection family in Revit MEP, and resolve interferences.
Color the wet pipes to distinguish them from dry pipes, then load cushioner and mechanical equipment families at 1 meter height on floors using the 3005 type.
Model ground floor and basement water supply piping in Revit MEP, connect to municipal water, place water meters and valves, route pipes, adjust elevations, and resolve clashes.
Model the first floor cold water system by extending the riser, placing water boxes, and routing galvanized and 5-layer domestic cold water pipes with correct elevations and no slope.
Explore modeling a building's electrical power distribution in revit from the utility main panel to floors via atsp and a diesel generator, and place adp, edp, emcp, and elevator panels.
Load switch and sensor families, then place ground floor switches, motion sensors, and stair lighting. Set elevations to 1,200 mm, place fixtures on vertical faces and ceilings.
Load receptacle and waterproof outlet families, place first floor power outlets and doorbell per legend heights, and align to walls in the Revit MEP model.
Place the ground floor fire alarm system in Revit MEP, including the control panel, detectors, and manual call points, and align ceiling and wall plans.
Place and align basement fire alarm devices in Revit, including heat and smoke detectors, a siren, and push button, using linked drawings, vertical-face placements at 2,200 millimeters, and wall alignment.
This course is currently being updated.
Note: This is not just another Revit course that teaches you where to click — it’s a complete MEP project-based Course, where you’ll learn how to design, model, and coordinate real mechanical, electrical, and plumbing systems within Revit 2026, from the architectural foundation to fully integrated project documentation.
Have you ever wondered how to model a complete HVAC or plumbing system inside a real Revit project, from level setup to construction drawings?
Do you know how architectural, structural, and MEP models coordinate together to avoid clashes and ensure project accuracy?
Are you looking to Learn Firefighting, Drainage, and Mechanical Systems in one practical, step-by-step course that mirrors real design workflows?
In this course, you’ll learn everything you need to handle MEP design, modeling, and coordination from scratch.
You’ll start by understanding architectural and structural integration, then move into HVAC, Plumbing, Drainage, and Firefighting Systems, learning how to route ducts and pipes, connect fixtures, and prepare detailed project documentation.
By the end, you’ll be able to produce a fully coordinated MEP model ready for real-world construction and client delivery.
Headlines:
Revit MEP Interface and Tools – Understanding MEP Environment, Templates, and System Setup
Architectural and Structural Integration – Linking Architectural Models for MEP Coordination
HVAC System Modeling in Revit – Creating Duct Networks, Air Terminals, and Equipment Layouts
Plumbing and Sanitary Design – Modeling Drainage, Vent, and Water Supply Systems in Revit
Firefighting System Modeling – Designing Fire Box Networks, Risers, and Equipment Placement
Heating and Cooling Systems – Connecting Radiators, Package Units, and Ducted Split Units
Pipe and Duct Routing Techniques – Managing Levels, Slopes, and Clashes for Efficient Layouts
Fixture and Equipment Placement – Integrating Sanitary, Kitchen, and HVAC Devices into the Model
Family Creation and Editing in Revit MEP – Customizing Components for Project-Specific Requirements
System Coordination and Clash Detection – Managing Interference Between Architectural and MEP Systems
Sheet Setup and Documentation – Creating Plan, Section, and Schedule Sheets for Construction Use
Project MEP Workflow in Revit 2026 – From Concept Design to Fully Coordinated As-Built Model
Enroll now and start your journey to Learn Revit MEP systems from zero to advanced project modeling.
Remember — ask any question you have! I provide 24/7 support to make sure you can confidently progress through every stage of your MEP project in Revit.