
Install Revit from Autodesk, start a project with templates, and navigate the user interface to link architectural models and pull the floor plan from the architectural model for BIM coordination.
Create a new electrical project, link the architectural model, set and align levels, copy levels as needed, and prepare rooms with spaces, tags, and visibility controls for clean planning.
learn the elements and symbols of an electrical plan, distinguish host and non-hosted components, and use Revit to place receptacles, lighting, and switches while configuring plans and disciplines.
Learn how to design a power plan in Revit by placing receptacles, adding a panel board, creating and assigning circuits and loads, wiring, and tagging panel and circuits.
Place and align two-by-two lighting fixtures in a reflected ceiling plan, manage circuits and switches, and create a panel schedule to control and view loads.
Explore the basics of a mechanical system by identifying key elements—t.u. unit, supply and return ducts, condensing unit, air handling unit, diffusers, and flex ducts—across floor and roof plans.
Start a mechanical project in Revit, link architectural and electrical files, auto-name spaces from the linked rooms, and place a rooftop AC unit from the rabbit library with duct connections.
Learn to place and tag supply, return, and exhaust diffusers in Revit, import air terminals, set elevation to ceiling level, and annotate with flow rate to coordinate mechanical systems.
Learn to connect HVAC ducts from roof mechanical equipment to supply and return diffusers, adjust routing with elbows and preferences, size and tag ducts using velocity and friction.
Start a plumbing project in Revit and learn the basics of plumbing systems, including elements and symbol representation, to plan sanitary and domestic water piping views.
learn to import plumbing fixtures into Revit, choose domestic water and sanitary piping, and draw and connect pipes, bends, and accessories to fixtures in a three-dimensional view.
Utilize Revit to draft sanitary piping for gravity drainage, set view ranges, select 4-inch piping, place and connect sinks and lavatories, and create vents/bands using elbows, tees, and 45-degree fittings.
Filter plumbing systems in Revit by domestic water and sanitary, show only the relevant pipes, and tag pipes and fixtures with system abbreviations and leaders to clearly identify each network.
Create a 3D riser diagram in Revit by filtering plumbing elements, tagging risers, and generating sanitary and domestic water views with locked orientation and legible annotation scales.
Learn to create drafting views in revit, set scales, and draft details using annotator tools. Place views on sheets, reuse templates, and refine workflows for MEP project presentations.
Create and manage sheets, place mechanical and plumbing views, and adjust scale and crop to fit clear presentation layouts using title blocks and the browser.
Master phasing in Revit by using face filters to show existing, demolished, and new construction elements; duplicate views to illustrate previous demolitions and future builds.
Learn how to create and apply view templates in Revit to standardize visibility and filter elements across floors, saving time when designing plumbing plans.
Revit MEP Course is perfect for those who want to learn Engineering MEP Design
We will cover the basics of Mechanical Electrical and Plumbing disciplines in the construction industry while learning how to implement the design in Autodesk Revit.
No prior experience is required and you will see how easy it is to design with this powerful software.
If you are experienced, however, but need to learn the software, this course is right for you. While you may understand the MEP systems Revit is sometimes a challenge for Autocad users since BIM(Building Information Modeling) is a new, more precise, and efficient method of coordination in the construction design industry.
The knowledge in this course can help you like it helped me to change my life in finding new job opportunities, as it helped me to jump from a technician in the field to an Engineering Designer.