Revit Course
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36 Hours Eğitim Saati
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6 Week Program Süresi
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Max. 15 People Sınıf Mevcudu
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Sifir Seviye Başlangıç Seviyesi
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Sertifikalı Siteden Sorgulanabilir AEC Akademi Sertifikası
- What is BIM?
- How does it differ from CAD systems?
- Revit working logic and parametric model approach.
- Revit interface, ribbon system and basic tools.
- Project Browser, Properties and View logic.
- File creation, template usage and project organization.
- Navigation tools and view control.
- Unit system and project settings.
- Creating a basic work layout from a sample project.
- Creating floor levels.
- Grid system and axis logic.
- Elevation relationships and project references.
- Creating and duplicating views.
- Crop region and view control.
- Initial architectural project settings.
- Reference planes and working logic.
- Basic BIM setup from a real project.
- Creating wall systems.
- Installing doors and windows.
- Modeling floors and ceilings.
- Creating roof systems.
- Introduction to curtain wall logic.
- Stair and railing systems.
- Creating shafts and voids.
- Basic organization of the architectural model.
- Complex wall systems.
- Curtain panel and mullion arrangement.
- Ramps and curved elements.
- Topography creation.
- Site and environment modeling.
- Mass studies and concept modeling.
- In-place family usage.
- Working methods in complex geometries.
- Family logic and its uses.
- Parameter system.
- Door and window families.
- Creating furniture and custom objects.
- Nested family logic.
- Measurement parameters and visibility settings.
- Creating material parameters.
- Library layout and family management.
- Editing plan views.
- Creating and editing sections.
- Preparing elevation sheets.
- Annotation tools.
- Dimensioning system.
- Creating detail drawings.
- Using detail components.
- Technical drawing standards and view control.
- Using the Material Browser.
- Creating and editing materials.
- Surface pattern and cut pattern logic.
- Graphic view settings.
- Using view templates.
- Shadow and sun settings.
- Creating cameras.
- Preparing presentation views.
<ol>
<li>Schedule logic and data management.</li>
<li>Creating door and window lists.</li>
<li>Preparing room tables.</li>
<li>Creating quantity tables.</li>
<li>Area calculations.</li>
<li>Filtering and sorting operations.</li>
<li>Quantity takeoff logic.</li>
<li>Excel-based data control.</li>
</ol>
- Sheet creation.
- Title block placement.
- Sheet layout creation.
- Viewport layout.
- Print settings and output.
- PDF and DWG export operations.
- Line thickness and appearance control.
- Logic for preparing municipal and application sheets.
- Using Link Revit.
- Architectural, structural and MEP coordination.
- Clash control logic.
- Coordinate system and shared coordinates.
- Worksharing system.
- Central file and local file logic.
- Data management in BIM processes.
- Interdisciplinary model control.
- Creating camera angles.
- Render settings.
- Sun and lighting system.
- Interior and exterior rendering logic.
- Creating walkthroughs.
- Preparing presentation sheets.
- Visual quality control.
- Render output management.
- Creating a BIM model from the actual project.
- Completing the architectural model.
- Implementing family, detail, and quantity surveying processes.
- Producing sections, elevations, and drawings.
- Project coordination control.
- Preparing render and presentation outputs.
- Technical control and delivery process.
- Creating the final BIM project file.
With the digital transformation gaining momentum in the architecture and construction sectors, managing projects in a faster, more efficient, and coordinated manner is becoming increasingly vital every day. The Autodesk Revit training, which provides the skills to effectively utilize Building Information Modeling (BIM) processes, is a program designed to deliver competence in modern architectural design and project management.
Throughout the training, participants learn to use Revit software at a professional level, model architectural projects in 3D, manage project data, and ensure more effective interdisciplinary coordination. Supported by practical workshops alongside theoretical education, the program helps participants gain professional project management skills by experiencing real-world business scenarios, ultimately enabling them to secure a stronger position in the industry.
Tailored for professionals seeking self-development in engineering and construction fields, this training serves as a powerful and effective gateway to transitioning into a BIM-based working system. AEC Academy educational experts outlined the application areas, core features, and post-training benefits of Autodesk Revit and BIM technology.
Developed by Autodesk, Revit is a professional BIM (Building Information Modeling) software widely used in architectural design, construction, and engineering processes. Unlike traditional CAD programs, Revit does not just allow drawing; it enables smart and parametric modeling of structural elements complete with all their data.
In Revit, all structural elements such as walls, doors, windows, and floors are created within a single digital model. All project outputs—including plans, sections, elevations, sheets, quantity takeoff schedules, and the 3D model—are automatically generated from a single integrated data model. Any update made is instantly reflected across the entire system, ensuring all documentation remains up to date.
Consequently, the margin of error in projects decreases, interdisciplinary coordination strengthens, and project workflows become more efficient. Allowing architectural, structural, mechanical, and electrical disciplines to work in an integrated manner, Revit stands as one of the most widely used BIM-based software solutions in modern building design and project management.
Building Information Modeling (BIM): The most crucial feature of Revit is that it operates with BIM technology. All data required from the design of a building through to its construction and operation phases is maintained within a single digital model. This allows project teams to work on the exact same model, reducing errors and ensuring more controlled workflows.
Automatic 2D Views: Plans, sections, elevations, and detailed drawings are automatically generated from the created 3D model. Any modification carried out on the model is automatically and simultaneously reflected across all views and drawings. This feature not only saves time but also establishes absolute consistency between drawings.
Advanced 3D Modeling: Revit enables the modeling of structural elements like walls, floors, columns, roofs, doors, and windows with their real dimensions and properties. This provides an opportunity to detect potential issues before the project moves to the construction phase, allowing the design process to be analyzed in a more detailed and comprehensive manner.
Parametric Design System: Thanks to its parametric design infrastructure, any update made in Autodesk Revit automatically reflects on all project outputs, such as plans, sections, elevations, and quantity takeoffs. Thus, the model and all documentation work in tandem, and data consistency is permanently preserved. For instance, when the dimensions of a wall are altered, all associated drawings and takeoff calculations update instantly, achieving system-wide synchronization without requiring extra manual steps.
Drawing and Documentation: Technical drawings, sheets, quantity takeoff lists, and detail documents can be automatically generated directly from the model. While this reduces manual drafting errors, it also accelerates project delivery timelines. Furthermore, sheet layouts can be styled in full alignment with professional presentation standards.
Multi-Disciplinary Collaborative Workspace: Allowing architectural, structural, mechanical, and electrical projects to be carried out harmoniously within a single digital environment, Revit enables different disciplines to work simultaneously on a shared model. In this context, clashes that might arise during the design process are detected at an early stage, largely preventing on-site errors that could occur during construction.
Realistic Visualization and Presentation: Revit delivers more realistic presentations of projects through its advanced rendering and visualization tools. Thanks to material, lighting, and landscaping configurations, designs can be thoroughly visualized before they are ever built.
Collaboration and Cloud-Based Workflows: With cloud-based working systems, different teams can collaborate on the same project simultaneously. This feature boosts coordination and accelerates project phases, particularly in large-scale projects.
Quantity Takeoff and Analysis Features: Automated quantity takeoffs can be extracted directly from the model, enabling precise cost estimations and energy analysis. This renders project management much more controlled and data-driven.
Autodesk Revit and Building Information Modeling (BIM) technologies are among the indispensable workflows of today's architecture, engineering, and construction sectors. Rooted in digital project management, this approach makes it possible to manage design, modeling, analysis, coordination, and documentation processes smoothly and efficiently through a single integrated system.
Revit and BIM training aims not only to teach participants how to use a software program but also to equip them with the knowledge and skills needed to manage modern project workflows at professional standards. The theoretical knowledge delivered throughout the training is reinforced with practical workshops, project scenarios, and modeling exercises, aiming to instill working practices tailored to real-world project pipelines.
Revit Interface and Core Operational Skills
In the first phase of the training, Revit’s working logic, user interface, and fundamental tools are introduced in detail. Participants learn to professionally manage project creation, view management, floor plans, and basic modeling workflows.
Architectural Modeling Techniques
The creation and modification of basic architectural elements such as walls, doors, windows, floors, and ceilings are explained through hands-on applications. In this process, correct modeling methods are transferred, supporting the preparation of projects within a more systematic, controlled, and sustainable structure.
Advanced Structural Modeling
Detailed studies are conducted on modeling roofs, stairs, ramps, curtain walls, and structural elements with complex geometries. Consequently, participants gain the competence to produce larger-scale and technically advanced projects.
Parametric Families and Custom Design Components
Thanks to the parametric family system—one of Revit's most powerful features—the ability to create project-specific objects is developed. Unique designs such as furniture, custom facade elements, or technical components can be modeled using parametric logic.
Structural System and Load-Bearing Element Modeling
Methods for digitally modeling load-bearing system components like beams, columns, foundations, and similar structures are taught. Within the framework of this approach, a more harmonious, controlled, and sound working system is established between architectural and structural engineering efforts.
Interdisciplinary Coordination with MEP Systems
The modeling of mechanical, electrical, and plumbing (MEP) systems within the BIM environment and their coordination with other disciplines are addressed. By merging models from different disciplines, clash detection tests are performed, allowing construction-phase application errors to be prevented during the design phase.
Visualization and Technical Documentation
Participants cover visualization processes such as rendering, material definition, lighting adjustments, and presentation techniques. Additionally, technical documentation processes like preparing plans, sections, elevations, details, and sheets are applied according to professional standards.
Project Management and Teamwork
Project coordination, revision management, version control, and intra-team collaboration processes within BIM-based working systems are discussed in detail. These competencies offer a significant advantage for efficient operation, particularly in large-scale projects.
Hands-On Project Experience
Throughout the training, projects are developed based on real-world project scenarios. By converting their theoretical knowledge into practice, participants become fully prepared for the business workflows they may encounter in the industry. These applications contribute to grasping the logic of professional project production and adapting to professional life much faster.
Achievements Gained at the End of Training
Participants who successfully complete this training program become proficient users who understand BIM-oriented project production workflows, execute modeling at a professional level, prepare technical drawings and documentation, and manage interdisciplinary coordination. Thus, a strong career advantage is gained in the architecture, interior design, engineering, and construction sectors.
Autodesk Revit and BIM-oriented architectural design training appeals to a wide audience seeking to master digital project production workflows in the architecture, engineering, and construction industries.
- Architects and Interior Designers: It offers a comprehensive training process for architects and interior designers who want to produce their architectural projects more efficiently in a digital environment. Participants can manage their design processes more professionally by gaining competence in 3D modeling, technical drafting, visualization, and project documentation.
- Civil Engineers and Project Coordination Teams: It provides suitable content for civil engineers looking to improve their skills in load-bearing system modeling, project coordination, and BIM-oriented workflows. It also helps project managers strengthen communication between teams, track revision processes more efficiently, and utilize the digital project management infrastructure more effectively.
- MEP Engineers and Technical Specialists: This is an essential training for engineers and technical specialists working on modeling mechanical, electrical, and plumbing systems within the BIM environment and integrating them with architectural projects. It delivers professional skills, particularly in clash control and system coordination.
- Urban Planners and Landscape Architects: Urban planners and landscape architects who want to utilize digital modeling processes in urban design, environmental planning, and landscaping projects can also benefit from this training. The BIM-based working system offers more controlled planning opportunities for large-scale projects.
- Students and New Graduates: It provides a strong starting opportunity for students studying architecture, interior design, civil engineering, and related departments, as well as new graduates in the process of preparing for the industry. Thanks to this training, participants can gain the up-to-date software and BIM competencies demanded in professional life.
- Design Offices and Construction Firm Employees: This is an efficient training program for architectural offices, engineering firms, and construction company employees who want to adapt to digital transformation processes and use BIM infrastructure in their projects. It supports the management of operational processes in a more efficient, compatible, and systematic way.
- Those Who Want to Become BIM Specialists: It offers a professional development opportunity for individuals who want to specialize in BIM modeling, coordination, and project management to advance their careers in this direction. At the end of the training, participants can secure stronger career opportunities in the industry by mastering BIM-based working systems.
The duration of Autodesk Revit and BIM-oriented architectural design training may vary depending on the scope of the education, the technical background of the participant, and the targeted level of expertise. While beginner-level programs generally focus on the Revit interface, basic modeling tools, plan-section creation, and technical documentation workflows; more comprehensive training covers professional topics such as parametric family creation, advanced modeling techniques, rendering operations, quantity takeoff preparation, and interdisciplinary BIM coordination.
Choosing flexible training formats such as live online, in-class, or video-assisted options can play a decisive role in the participant's learning rhythm and the efficiency they will get from the training. Intensive programs prepared especially for industry professionals aim to provide practical application skills in a short time, while training that offers more detailed content focuses on comprehensive project experience and advanced expertise development.
The prices of Autodesk Revit training can be determined in line with the level of education, the scope of content, and the professional achievements offered. Since there are differences in duration and technical content between basic, intermediate, or advanced modeling training, pricing is shaped accordingly. In addition, factors such as the industry experience of the institution providing the training, whether it is an Autodesk authorized training center, and whether the training is offered in live online, face-to-face, or video training formats directly affect the cost. The sectoral experience of the instructor, practical project content, one-on-one support opportunities, and the provision of an internationally recognized certificate at the end of the training are also among the important criteria that play a role in determining the price.
This Revit course is suitable for architects, interior architects, civil engineers, technical draftspersons, individuals who want to work in the BIM field, and students.
No. The course starts from the beginner level, and the logic of BIM is explained at a basic level during the course process.
The course is primarily focused on architectural modeling; project production, sheet preparation, quantity surveying, and the logic of BIM workflow are also covered.
Yes. Participants experience the process of creating a building model from scratch step-by-step by learning the Revit interface.
Yes. Processes for preparing plans, sections, elevations, facades, and sheets over the model are explained practically.
The basic family logic is explained in the course. Adding doors, windows, furniture, and system elements to the project is demonstrated.
Yes. At the end of the course, you will be able to create architectural models at a basic level, organize sheets, and generate project outputs.
Yes. The process of creating room schedules, door-window schedules, and basic quantity surveying tables via Revit is explained.
Yes. The course process is structured according to the project production steps that may be encountered in professional practice.
Knowledge of Revit is an important competency in BIM-based project production. It provides an advantage in architecture, engineering, and project office careers.
Our Revit course mainly focuses on the architectural project modeling process. However, the Structure side is also touched upon at a basic level in terms of correctly modeling structural elements, understanding the logic of load-bearing systems, and architectural-structural coordination.
In the course, architectural project modeling, plan, section, elevation, and sheet preparation processes with Revit are explained practically. Information about the drawing layout and project presentation suitable for license project logic is provided; however, the course primarily focuses on gaining project production skills using the Revit software.
Yes. How to create room schedules, door-window schedules, and basic quantity surveying tables via the Revit model is demonstrated. Participants learn the logic of extracting data from the model and quantity surveying practically.