
Learn Revit MEP 2019 essentials, from architecture design and levels to doors, windows, stairs, roofs, and landscaping; master the mep workflows, zoning, plumbing, chiller and electrical systems, and reports.
Open Revit projects from templates, selecting architecture, mechanical, plumbing, or electrical templates. Create and open families, and work with properties, levels, views, elevations, and sheets.
learn to start revit 2020 projects, create new projects and families, open existing ones, and apply a mechanical template while accessing essential tools and properties.
Create and edit floors across multiple levels in Revit, set floor thickness and materials (brick, carpet), and explore floor plans with realistic 3D views from ground floor to level 3.
Learn to create walls in Revit, including external and internal walls, and set floor-to-floor heights. Apply stone materials and edit wall profiles and curtain walls for realistic details.
Learn door placement and editing in Revit MEP, including selecting door families and types, adjusting width and height, and changing door materials such as wood, sash, and glass.
Learn to place external windows in Revit MEP projects, select window types, replace and edit properties, and adjust height and materials such as frame, clad, and glass.
Learn to create and edit a flat roof in Revit MEP, sketch the geometry, finish the area, and apply roof materials from the property palette.
Learn to create a toposurface in Revit, define site points, set elevations, apply grass materials, and link textures for landscaping features.
Design and model a rectangular swimming pool in Revit MEP by setting the building pad, height, water material, and finish, then add railings to finalize the design.
Learn to use the extrude function in Revit MEP to create and modify mechanical and electrical family components, place lighting fixtures, and build quick, cohesive models for architectural vertical workflows.
Master blending techniques for Revit MEP by shaping templates and models, bridging level one concepts to advanced applications.
Master level concepts and 180-degree considerations in Revit MEP, as explored in the revolve lecture. Build skills from beginner to advanced level through practical design decisions.
Master sweep techniques in Revit MEP across beginner to advanced levels, focusing on modelling workflows, profiles, color decisions, and practical tips for efficient project visualization.
Analyze how blend techniques and profiling relate to modern architecture and a component model, and consider team dynamics in the marketplace.
Learn how air registers and diffusers control supply and return air, using perforated covers to reduce velocity and increase pressure, with horizontal diffusion and vertical air profiles.
Explore how an hvac system uses cooling and heating with hot water, fresh air, and a mixing chamber to condition air and humidify spaces, then supply it to the environment.
Learn hvac load calculations in Revit MEP by building spaces and zones, assigning occupancy and electrical and lighting loads, and generating a heating and cooling report.
Place diffusers within a duct system in Revit MEP, configure air handling units, and model supply and fresh air mixing to build a complete ventilation layout.
Design an automatic ducting supply and return system in Revit MEP, configuring air terminals, nodes, and equipment layout while adjusting height and aspect ratios to manage overlaps.
Learn duct sizing using the equal friction method, calculating friction losses and velocity, and sizing ducts by iterating changes based on cfl calculations.
Learn how to place plumbing fixtures in Revit MEP, adjust levels, and connect the water supply across mechanical settings and local equipment.
Learn to define a dwelling unit in Revit MEP by configuring water fixture units, materials, and hot and cold water components such as toilets and bathtubs.
Learn to set up cold water connections and route piping in revit mep. Cover domestic cold water, storage tank to water heater, fixtures, and flow parameters.
Capture hot water and drainage concepts in Revit MEP by modeling cold and hot water supply networks, drain connections for sinks and bathtubs, and related piping layouts.
Learn to size pipes in Revit MEP by selecting pipe types (copper, drainage), adjusting diameters and nominal radii, and setting water velocity for accurate piping layouts.
Learn to place valves in Revit MEP by using the system tab, arranging pipes and paths, and confirming placements for balanced piping layouts.
Explore centrifugal chillers, vertical machines for medium to large cooling loads. These systems use one or two compressors with a variable frequency drive, cycling through condenser and evaporator.
Learn to design a centrifugal chiller system in Revit by placing mechanical equipment, selecting pump and cooling tower components, and configuring connections within a complete MEP model.
Design and model a centrifugal chiller system in Revit, connecting condenser, cooling tower, and air handling unit, with water flow, pumps, piping, and return loops.
Explore air cooled chiller theory, detailing the refrigeration cycle with the compressor, condenser, expansion valve, and evaporator, and relate it to air handling units and cooling towers.
Place and configure an air cooled chiller in a Revit MEP project, selecting the mechanical system and water-side components, then connect water and electrical outlets to the handling unit.
his course is a Advance course in REVIT MEP 2019. Those who want to learn REVIT MEP 2019 and understand its basics to Advance Level within minimum time shall take this course.
What you’ll learn
Architectural Designing
Land scaping
3D Modeling
Link Activities
HVAC Designing
Plumbing
CHILLER PLANT DESIGNING.
Fire Protection system Designing
Electrical Designing
Who this course is for:
people having background of following field can do this course
Architects
Mechanical Engineers
Electrical Engineer
HVAC Engineers
Plumbing Engineers
WHAT MEP ENGINEERS SHOULD DEMAND FROM ARCHITECTURE
Heating, ventilating, and air-conditioning (HVAC) systems account for nearly 40% of the energy used in commercial buildings. The condition of your building envelope strongly influences HVAC system energy consumption and occupant comfort. Outlined below are strategies that can be used in buildings to conserve energ
Building Orientation Orientation of a building should be done for the climatic zone in which the building is situated. • Cold climates: The South facing side provides maximum solar gain. Locate the building’s axis on the East-West direction with its longest dimension facing the South. • Hot and dry climate: During summer, the North wall gets significant exposure, and the West side absorbs the maximum late afternoon heat. Similar to cold climates, longer walls of building should face North and South with longer axis along the East-West direction. • Warm and humid climate: In this climate, buildings should ideally be long and narrow to allow cross-ventilation. The optimum building orientation is somewhere along the east-west direction
Carrier Commercial Service is committed to timely customer-focused solutions, no matter the complexity. Our professional Consulting Engineers are available for support on building analysis, energy studies and Mechanical, Electrical and Plumbing (MEP) engineering design projects.
Our innovative and practical approach provides comprehensive HVAC integrations that can maximize energy savings, reduce cost and more.
Support Includes:
Engineering studies and schematic designs
Design development documents for pricing
Project assessments and resolution reports
System Analysis and HVAC design
Building Audits
Energy Modeling
Design / Build Services