Syllabus
Unit 1
Building Information Modeling – Introduction & Process, Evolution of BIM, BIM Model -of various buildings like Commercial & Residential, WTP, Transportation, Airports. Isometric View – Introduction, Examples and Problems. 3D Modeling
Design Authoring – Workflow, Discipline Based Modeling, Architectural, Engineering Analysis, Structural Analysis, HVAC, Electrical, Plumbing, Energy Analysis, Lighting Analysis, Design Review. Views in Model, Visualization Modes, Walkthrough & Fly through the Model, Layers & Properties, AR, VR & MR.
Unit 2
Clash Check, Types of Clashes, Federated Model – Clash avoidance process, Clash Detection Process – Introduction, Clash Detection – Priority Matrix, Clash Detection – Rules, Clash Detection – Report, Clash Detection – Grouping, Clash Detection – Roles & Responsibilities, Clash Detection Process – Demo.
CDE, Level of Development (LOD)- Level of Detail & Level of Information, LOD – for all elements- Chart & Matrix
Unit 3
Project Schedule, 4D BIM Modeling, Construction Analysis, 3D Control & Planning, BIM for Safety, Disaster & Risk Analysis, Digital Fabrication, Phase Planning, As-built/Record Models.
5D BIM and Quantity Take off with UOM, Exercise & Demo, Quantity Take Off, 5D – Estimation and Analysis, Cost Control, Asset Information Model, COBie and Deliverables, Space Attributes, Asset Attributes and Asset requirement, Infrastructure System, Information Exchange with Facility Management.
Industrialization of Construction through BIM – DfMA, IoT in BIM, Data analytics using AI and ML, Smart Infrastructure, Digital Twin –Connected Infrastructure.
Objectives and Outcomes
Course Objectives
- To highlight the use of BIM models based on real-world construction projects
- To explain the modelling and analysis using BIM software.
- To give an overview of clash detection and avoidance using BIM
- To give an exposure on BIM 4D and 5 D models.
Course Outcome
CO1: Create BIM model for effective coordination during planning, design and execution.
CO2: Identify clash and avoid it’s occurrence.
CO3: Apply the concept of BIM 4D for project scheduling
CO4: Apply the concept of 5D BIM for quantity takeoff and estimation
CO-PO Mapping
PO/PSO |
PO1 |
PO2 |
PO3 |
PO4 |
PO5 |
PO6 |
PO7 |
PO8 |
PO9 |
PO10 |
PO11 |
PO12 |
PSO1 |
PSO2 |
PSO3 |
CO |
CO1 |
3 |
2 |
3 |
3 |
1 |
2 |
2 |
3 |
2 |
CO2 |
3 |
2 |
3 |
3 |
3 |
2 |
3 |
3 |
CO3 |
3 |
2 |
3 |
3 |
3 |
2 |
3 |
3 |
CO4 |
3 |
2 |
3 |
3 |
3 |
3 |
3 |
3 |