Continuing Education Master's Degree in BIM for Advanced Interior Architecture Design
PRESENTATION
Objectives
• Conceptualize interior design projects with a holistic approach, encompassing everything from stylistic and compositional principles to functionality and market demands. • Lead and coordinate interior architecture projects using advanced BIM tools, optimizing the entire project lifecycle. • Develop spatial design solutions for various project types (residential, commercial, office, leisure), adapting to their functional requirements. • Apply BIM methodology for modeling architectural elements and efficient document management, ensuring accuracy and consistency. • Manage detailed information on components and furnishings within the BIM environment to inform decision-making. • Integrate interior design theory with professional practice and BIM methodology, creating high-value, coherent projects. • Strategically define technical aspects of projects—such as lighting, furnishings, and construction management—to optimize resources and outcomes. • Analyze the impact of design and management decisions on the sustainability and efficiency of subsequent maintenance of interior spaces.
Methodology
At Educa PHAROS, we use a highly practical methodology focused on the direct application of knowledge in the student’s professional environment, combining theoretical content with real-world cases, digital tools, and support from a team of specialized instructors.
Program
- A Brief History of Interior Space
- Main Styles
- Terminology
- Space and Function
- New Practices
- Design vs. Decor
- Working with Color
- The Influence of Light
- The Impact of Textures
- Patterns and Scales
- Spatial Typologies
- Residential Spaces
- Office spaces
- Commercial Spaces
- Recreational Spaces
- The customer
- Sources of Inspiration
- Useful Tools
- Develop and Present a Concept
- Start of the project
- Introduction to Integrated Design
- Some Basic Concepts
- The Dimensions of BIM and Uses of BIM
- The Integrated Project
- Lean Construction
- Introduction and Project Setup
- Preliminary work, walls, floors, and ceilings
- Place families, doors, and windows
- Stairs, Ramps, and Handrails
- Structural Elements
- Creating and Configuring Views
- Rooms and Labels
- Dimensions, text, and notes
- Creating Maps and Legends
- Visual Project Management
- MEP and custom-built furniture
- Finishes and Furniture
- Area Tables and Element Counts
- Drawing Management and Project Interface
- Publish and Export
- Collaborative Environments
- Federated models
- Collaborative Networking
- The subprojects
- Interoperability and Collaboration
- Planning in Navisworks
- Selection in Navisworks
- 4D BIM Simulation
- Timeliner
- Case Study
- Introduction to Measurements
- Measuring with Navisworks (I)
- Measuring with Navisworks (II)
- Measuring with Navisworks (III)
- 2D Measurements
- BIM Execution Plan (BEP)
- Steps for Developing the BEP
- Level of Detail (LOD)
- Classification Systems
- Style Guide
- What is Dynamo?
- The User Interface
- Create a parametric circle
- Introduction to Nodes and Cables
- Browse the library's nodes
- Introduction to Data Types
- Lists and Dictionaries
- Select items
- Conditional Logic
- Filter and Group
- Geometry for Computational Design
- Vector, Plane, and Coordinate System
- Points and Curves
- Exercise: Create a set of beams
- Surfaces and Solids
- Type vs. Instance Parameters
- Add an identifier to beams (I)
- Run the identification routine from the Player
- Find columns based on their coordinates
- Copy Values Between Parameters
- Wall Structure
- Sweeps and Looms
- Stacked Walls
- Curtain Walls (I)
- Curtain Walls (II)
- Introduction to Conceptual Modeling
- On-site Mass Modeling
- NASA's Face Modeling
- Model Setup and Mass Analysis
- On-site Component Modeling
- Introduction to Creating Families
- Skeleton and Dimensioning
- Parameterization and Types
- Definition of Geometry
- Foster Families
- Creating Design Options
- Working with Design Options
- Project Phase Management
- Working in Phases: A Case Study
- Family Management
- Introduction
- Algorithmic Drawing
- Thinking in Terms of Code
- The New Modularity
- Define the parameters of a geometry
- Introduction
- Wall Finishes
- Floor Finishes
- Modeling the baseboards
- Modeling a Parametric Suspended Ceiling
- Setting Up Tables (I)
- Setting Up Tables (II)
- Parametric Shelving (I)
- Parametric Shelving (II)
- Generative Design
- Sealing off walls and windows
- Tagging the walls
- Label the floors
- Creating Plans (I)
- Creating Plans (II)
- Introduction to Rendering Processes: A Workflow Focused on Interior Images
- How the V-Ray interface works. General features. Types of render engines. Uses and benefits of each
- Outdoor lighting and camera options. Setting up the scene. Troubleshooting
- Environments and Indirect Lighting. Backgrounds and the Meaning of HDRI in Interior Images
- Interior Lights: Types and Uses
- Interior Lighting (II). Application on Stage
- Applications of Materials in Geometry (I). Properties of Materials
- Application of Materials (II). Texture Maps
- Applications of Materials (III). Reflection, Refraction, Emissivity, and Transparency
- Exporting results. Image formats and channels. Post-production work
- Render Farms: Uses and Benefits
- Preparing Geometry for Export
- Platforms and How They Work: Examples and Recommendations (I)
- Platforms and How They Work: Examples and Recommendations (II)
- Export formats and compatibility with other external platforms: Lumion, UE4, Twinmotion
- Introduction to Enscape: Current Advantages and Limitations
- Interior Image Workflow for Enscape (I)
- Creating Animations (I). Sequential Walkthrough
- Creating Animations (II)
- Creating Animations (III). Resource Optimization. The Relationship Between Rendering Time and Quality
- Implementation of Facilities in BIM Environments
- MEP Configuration and Systems
- MEP families and connectors
- Electrical Modeling
- Lighting Modeling
- Spaces and Areas
- HVAC Modeling
- Plumbing Modeling
- Control and Automation Systems
- Systems Control
- Sustainability and BIM Methodology
- Energy Simulation
- Environment Simulation
- LCA and Energy
- BIM as an Information Process
- Bioclimatic Architecture
- Active Systems Design
- Passive Systems Design (I)
- Passive Systems Design (II)
- Passive House
- New Industrialization
- Fundamentals of Digital Manufacturing
- Trends in Digital Manufacturing
- Changes in the sector
- Case Studies
- Introduction
- Subtractive manufacturing: cutting
- Subtractive manufacturing: milling
- Additive Manufacturing
- Educational Manufacturing, Trends, and Conclusion
- Introduction
- Photogrammetry
- Point Clouds and Laser Scanning
- Methodology
- Applications and Equipment
- Facility Management
- Computer Systems
- Digital Twin and BIM
- Energy Management in the Digital Twin
- Smart Buildings and BIM
Featured Master's Programs
Master's Degree in Continuing Education in Environmental Engineering
Master's Degree in Continuing Education in Public-Private Partnership (PPP) Projects
Take the next step in your career
Your training already counts. Now turn it into a college degree.
Educa PHAROS is a training solution for businesses that centralizes learning, simplifies user management, and allows you to track progress through dashboards and reports.
It is designed for organizations that want to develop internal skills, standardize role-based training, and have traceability and learning metrics.
It includes learning paths by profile, user and permission management, progress reports, certification, and access to masterclasses or live sessions (depending on the plan).
It is based on best practices in security, access control, learning traceability, and implementation support. Customize this text according to your commitments (SLA, compliance, etc.).
Educa PHAROS is a next-generation training model that places a company’s human capital at the forefront. Through a platform that adapts to each company’s corporate identity and offers a total of more than 900 courses, it provides tailored training for each organization. The unlimited flat-rate plan provides each company with the number of courses that best suits its needs, as well as the ability to determine which employees will have access.