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What is Revit
Autodesk Revit is a Building Information Modeling (BIM) software developed by Autodesk. It is widely used by architects, engineers, contractors, and construction professionals for designing, drafting, and managing building projects. Revit is known for its ability to create intelligent 3D models of buildings and structures, enabling efficient design and collaboration across various disciplines in the construction process.
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Revit is fundamentally based on Building Information Modeling (BIM), which is a process that involves creating a digital representation of the physical and functional characteristics of a building. BIM is more than just 3D modeling—it integrates information about every aspect of the building, including materials, structural systems, HVAC (heating, ventilation, and air conditioning), electrical systems, plumbing, and other details.
Traditional CAD (Computer-Aided Design) software like AutoCAD focuses on 2D drawings, where each drawing is a standalone entity. In contrast, BIM creates an interconnected database where all the information about the building is stored. Any change made to one part of the model automatically updates other related parts. For example, if an architect changes a wall’s position in Revit, the software will automatically update the floor plan, section views, and elevation views to reflect that change.
Revit uses parametric components, which means every element in the model (e.g., walls, windows, doors) is driven by parameters that can be modified. These parameters define the properties of the elements and allow for easy updates and changes throughout the design process. For example, adjusting the height or width of a window will automatically update the model.
Revit enables users to create detailed 3D models of buildings. These models can be viewed from any angle and are an accurate representation of how the building will look once constructed. This feature is essential for visualizing designs, identifying potential issues, and communicating ideas to clients and stakeholders.
Revit includes specialized tools for different disciplines, such as architecture, structural engineering, and MEP (mechanical, electrical, and plumbing) engineering. Each discipline can work on its portion of the building model, and all these models can be combined into a single, unified project.
Revit can automatically generate construction documents, including detailed drawings, schedules, and specifications. This is a key advantage over traditional 2D CAD software. When the 3D model is updated, the documentation is also updated automatically, ensuring that the drawings are always consistent with the design.
Revit is designed for teamwork, allowing multiple users to work on the same project simultaneously. This is achieved through a feature called "worksharing," where different team members can work on different parts of the model at the same time.
Revit includes rendering tools that allow users to create photorealistic images and walkthroughs of their designs. This is particularly useful for presenting designs to clients and stakeholders. The software integrates with rendering engines like Autodesk Raytracer and can export models to other visualization tools like Autodesk 3ds Max.
Revit can perform energy analysis on the building model to help architects and engineers design energy-efficient buildings. By analyzing factors like lighting, insulation, and HVAC performance, users can make informed decisions that lead to sustainable designs.
Architects and designers use Revit for the early stages of a project to develop conceptual models and explore design options. Revit’s 3D modeling capabilities make it easier to visualize and communicate these concepts to clients.
As the project progresses, Revit is used to develop detailed architectural, structural, and MEP designs. The parametric modeling capabilities allow designers to make changes easily and ensure that the design is consistent across different drawings and documents.
Revit is widely used for generating construction documentation, including floor plans, sections, elevations, and details. Since all the drawings are derived from the same 3D model, any changes to the model are automatically reflected in the documentation, reducing errors.
During construction, contractors use Revit to coordinate different trades, such as structural steel, plumbing, and electrical. The 3D model helps visualize how different systems interact and detect potential conflicts before construction begins.
After the building is completed, the Revit model can be used for facility management. The BIM model provides a detailed record of the building’s components, systems, and materials, which can be useful for maintenance and future renovations.
The ability to automate many aspects of the design process (e.g., updating all views when a change is made) saves a significant amount of time compared to traditional CAD software.
Since all the drawings and schedules are generated from the same 3D model, they are always accurate and up-to-date, reducing errors and inconsistencies.
Revit’s worksharing features and cloud collaboration tools make it easier for teams to work together, even when they are in different locations.
The 3D modeling and rendering capabilities of Revit allow architects and designers to create highly realistic representations of their designs, making it easier to communicate ideas to clients.
Revit’s energy analysis tools help designers make informed decisions about building performance, leading to more energy-efficient and sustainable buildings.
Autodesk Revit is a powerful tool for building design and construction, providing a comprehensive platform for architects, engineers, and construction professionals to collaborate, design, and document building projects. Its BIM-based approach ensures that all aspects of the design process are integrated, accurate, and efficient, making it an essential tool in modern construction. The software’s flexibility, combined with its parametric modeling, collaboration tools, and energy analysis capabilities, makes it a valuable asset for any design team.
In 2024, Autodesk offers several professional certifications for Revit, allowing users to validate their skills in various areas of architectural, structural, mechanical, and electrical design.
This certification focuses on architectural design, covering key topics like modeling, documentation, collaboration, and management of architectural components and families. It is ideal for those with around 1200 hours of Revit experience. The exam includes tasks such as creating and modifying walls, floors, roofs, and other architectural elements.
Source: Autodesk Certification Overview
This certification is designed for professionals in structural engineering. It covers structural elements such as beams, columns, reinforcement tools, and documentation related to structural design in Revit. It helps professionals demonstrate their competency in handling structural design tasks efficiently.
Source: Autodesk Revit Structural Design
Tailored for those in electrical design within the AEC industry, this certification covers adding and configuring electrical systems, such as circuits, panelboards, and light fixtures, as well as managing relevant documentation and collaboration processes.
Source: Autodesk Revit Electrical Design
This certification targets mechanical designers working with systems like HVAC, plumbing, and mechanical piping. The exam includes advanced modeling and documentation tasks, focusing on connecting geometry, developing schedules, and performing analyses.
Source: Autodesk Revit Mechanical Design
Each certification is valid for three years, and the exams consist of selected-response questions without access to the software. Candidates can take the exams either in person or online via Pearson VUE.
Source: Autodesk Certification Process
Role: Architects use Revit to design, model, and document building structures. Revit’s Building Information Modeling (BIM) capabilities enable architects to create 3D models, visualize designs, and collaborate with engineers and contractors.
Skills: 3D modeling, design documentation, BIM collaboration.
Role: Interior designers leverage Revit to design and visualize interior spaces. They use it for creating floor plans, layouts, and detailed 3D interior views.
Skills: Space planning, 3D visualization, furniture layouts.
Role: Structural engineers use Revit to design and analyze the structural components of a building. They can create detailed models of beams, columns, and load-bearing structures while coordinating with architects and other engineers.
Skills: Structural analysis, 3D modeling, collaboration with architects.
Role: MEP engineers use Revit to design the mechanical, electrical, and plumbing systems within a building. Revit helps to plan and coordinate these systems alongside the architectural and structural models.
Skills: System design (HVAC, electrical, plumbing), clash detection, BIM collaboration.
Role: Construction managers use Revit to plan, manage, and coordinate construction projects. They utilize Revit’s 3D models for project scheduling (4D BIM) and cost estimation (5D BIM).
Skills: Project management, scheduling, cost estimation, coordination.
Role: BIM Managers are responsible for developing and managing Revit models across the various disciplines in a project. They ensure that all stakeholders are working with accurate and up-to-date models, coordinating between architecture, structural, and MEP teams.
Skills: BIM coordination, model management, interdisciplinary collaboration.
Role: Urban planners use Revit to design and visualize urban layouts, incorporating buildings, roads, and infrastructure. It helps with simulating environments and exploring the interaction of various components in urban projects.
Skills: Site planning, zoning analysis, urban design.
Role: Facility managers utilize Revit for managing building information throughout a facility’s lifecycle, including during the operation and maintenance phases. They can track asset locations, building performance, and space usage.
Skills: Facility management, space utilization, asset tracking.
Role: Quantity surveyors use Revit’s detailed models to extract quantities of materials and costs for construction projects. They work on cost estimation and control based on the building model.
Skills: Cost estimation, material takeoff, budget analysis.
Role: Landscape architects use Revit to design and model outdoor spaces, including parks, gardens, and urban plazas. They can create detailed 3D landscapes and integrate them with building models.
Skills: Landscape design, site modeling, 3D visualization.
Role: Revit technicians or drafters are responsible for creating detailed drawings and models based on designs provided by architects or engineers. They use Revit to produce floor plans, elevations, and sections.
Skills: Drafting, model detailing, documentation.
Role: Civil engineers use Revit to design infrastructure projects such as bridges, roads, and drainage systems. They work with other disciplines to integrate civil works with building projects.
Skills: Civil design, infrastructure modeling, site analysis.
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We offer live-instructor group training classes for your team.
Upskill your team from the comfort of your office or online.
Benefits of Group Training Include:
Learn Revit from a Professional Instructor and take your skills to the next level
Revit is a professional architecture project modelings appliaction. Revit is used by architects to produce 3D building models for architectural and construction projects.
Business Computer Skills offers a variety of Revit training classes in Melville, NY. Get the professional training you need to take your Revit skills to the next level.
Whether you want to learn Revit basics, or become a master of creating professional quality Revit 3D models, we have the right course for you.
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This was the class I needed.
The instructor Jeff took his time and made sure we understood each topic before moving to the next. He answered all of our questions, and I don't know about the rest of the students, but was very pleased with this experience.
I finally understand how to use Excel.
-Amanda T (Yale New Haven Hospital).
Great class!
We were able to cover a lot of information in one day without getting overwhelmed.
-Maria R (Microsoft).
We hold our Revit instructor-led training classes for the Melville area at the following location:
Please Note: The Melville training center is temporarily closed, please check back soon. Students can attend classes at an alternate location, or as a Remote Student
This location also serves the following areas around Melville, New York:
Additional Revit revitTraining Locations in New York
Below is a list of local libraries in the area that may also provide Revit training near Melville, New York: