BIM Modelling of Architecture

By bluepillar_admin

4,8

1,158,467 students

Course Duration:Customizable

Course level:Beginner

BIM Modelling of Architecture

The course outcome for BIM Modelling of Architecture focuses on developing students’ ability to design, model, and document architectural projects using Building Information Modeling tools. By the end of the course, students are expected to understand BIM concepts and apply them to create accurate and detailed 3D architectural models, including elements such as walls, doors, windows, and roofs.

They will be able to use software like Autodesk Revit to produce architectural drawings such as plans, sections, and elevations directly from the model. The course also equips students with skills in parametric modeling, allowing them to efficiently modify and manage building components. In addition, students will learn how to ensure model accuracy, apply visualization techniques for presentations, and collaborate with other disciplines such as structural and MEP teams.

Overall, the course outcome prepares learners to apply BIM effectively in architectural design, improving productivity, coordination, and the quality of project delivery.

Course Overview

The course overview for BIM Modelling of Architecture introduces students to the use of Building Information Modeling in the architectural design process. The course focuses on developing skills in creating and managing detailed 3D architectural models using BIM tools such as Autodesk Revit.

Students are guided through the process of modeling key building elements like walls, floors, roofs, doors, and windows, while also learning how to generate accurate drawings including plans, sections, and elevations directly from the model. The course covers important concepts such as parametric modeling, model organization, and data management, ensuring that design changes are efficiently updated throughout the project.

In addition, it introduces basic visualization techniques to enhance design presentation and communication. Emphasis is also placed on coordination with other disciplines and adherence to BIM standards and workflows. Overall, the course provides both theoretical knowledge and hands-on experience, preparing students to apply BIM effectively in architectural design projects.

Course Contents

Module 1: Introduction to BIM in Malaysia

  • Overview of BIM and its importance in Malaysia
  • Role of CIDB Malaysia and national BIM initiatives
  • BIM adoption in local projects (public & private sectors)
  • Malaysian construction workflow and challenges

Module 2: BIM Software for Local Industry

  • Use of Autodesk Revit (widely used in Malaysia)
  • Introduction to Navisworks for coordination
  • Project setup based on Malaysian standards
  • File organization and naming conventions

Module 3: Architectural Modelling (Local Practice)

  • Modeling walls, floors, roofs using Malaysian building standards
  • Doors, windows, and components based on local design
  • Incorporating UBBL (Uniform Building By-Laws Malaysia) requirements
  • Local construction materials and methods

Module 4: Documentation & Submission Drawings

  • Producing drawings for local authority submission
  • Plans, sections, elevations according to Malaysian format
  • Annotation, dimensioning, and schedules
  • Sheet setup for approval processes

Module 5: Coordination with Other Disciplines

  • Linking architectural, structural, and MEP models
  • Clash detection using Navisworks
  • Working with consultants and contractors in Malaysia
  • BIM collaboration workflows (CDE concept)

Module 6: 3D Visualization & Presentation

  • Rendering for client presentations
  • Basic walkthroughs and visual outputs
  • Presentation styles used in Malaysian firms

Module 7: BIM Standards & Industry Practice (Malaysia)

  • Malaysian BIM guidelines (CIDB BIM Guide)
  • BIM Execution Plan (BEP) basics
  • IFC and interoperability
  • Real case studies from Malaysian projects

Module 8: Industry Project / Practical Application

  • Develop a complete architectural BIM model
  • Apply local standards and submission requirements
  • Team-based or individual project
  • Presentation and review

BENEFITS

How this course benefits individuals:

COURSE INFORMATION

  • Introduces the fundamentals of Building Information Modeling (BIM) in architectural design
  • Explains the role of BIM in the Malaysian construction industry, including initiatives by CIDB Malaysia
  • Develops skills in using BIM software such as Autodesk Revit for 3D architectural modelling
  • Covers the creation of architectural elements (walls, floors, roofs, doors, windows) based on local practices
  • Teaches how to produce 2D drawings (plans, sections, elevations) from BIM models for submission purposes
  • Introduces Malaysian regulations and guidelines such as UBBL in design and documentation
  • Enhances understanding of parametric modelling and model management
  • Develops visualization and presentation skills for client communication
  • Explains coordination with structural and MEP disciplines using BIM workflows
  • Introduces clash detection and model coordination tools such as Navisworks
  • Emphasizes collaboration, data sharing, and BIM standards used in Malaysia
  • Prepares students for real-world architectural BIM projects and industry practices

CAREER OPPORTUNITIES

  • Architectural BIM Modeler
    Develops 3D architectural models and drawings using BIM software such as Autodesk Revit
  • Assistant Architect (BIM-based)
    Supports architects in design development, documentation, and submission drawings using BIM
  • BIM Coordinator (Architecture)
    Coordinates architectural models with structural and MEP disciplines and manages clash detection
  • BIM Technician / Drafter
    Produces detailed drawings, layouts, and construction documents from BIM models
  • Visualization Specialist (Architectural)
    Creates 3D renderings, walkthroughs, and presentations for client proposals

Material Includes

F.A.Q

Pre-requisites:

  • Completed BIM Concept & Theory training
  • Basic knowledge of architectural design and construction principles
  • Fundamental understanding of computer-aided design (CAD)
  • Basic computer skills and familiarity with design software

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