The Industrial BIM Modelling Course This is your gateway to the dynamic and ever-expanding world of digital modelling in the industrial sector. With the growing demand for professionals who are proficient in advanced technologies such as 3D modelling and the integration of different software programmes, acquiring these skills is essential to stand out in today’s job market. This course will provide you with an in-depth understanding of 2D modelling, the creation of intelligent drawings and the generation of reports – essential tools for the efficient management of industrial projects. You will learn how to work with steel structures, model pipework and equipment, and manage data efficiently through Data Management. Furthermore, you will have the opportunity to explore instrumentation and control, crucial areas within the industrial sector. By choosing this course, you will position yourself at the forefront of innovation, acquiring skills that will set you apart in a rapidly growing sector.
Industrial BIM Modelling
Introduction
Objectives
- To understand 2D modelling for the creation of accurate and efficient industrial drawings.
- Apply intelligent drawing modelling techniques to complex industrial projects.
- Enter and manage data in BIM systems to improve the accuracy of the models.
- To produce and organise working documents for industrial plant projects.
- Create detailed reports for the analysis and monitoring of BIM projects.
- 3D modelling of metal structures and equipment to optimise industrial design.
- Integrate different software programmes to improve the functionality and efficiency of BIM modelling.
Table of Contents
MODULE 1. 2D MODELLING
TEACHING UNIT 1. MODELLING SMART PLANS
Smart 2D drawings
TEACHING UNIT 2. DATA ENTRY
Introduction
Creating a new project
Standard pyid symbols
Install mechanical equipment
Exercise
Customising the tool palette
TEACHING UNIT 3. WORKING DOCUMENTS
Introduction
Setting up a pyid
Editing line labels
TEACHING UNIT 4. REPORT GENERATION
Report generation
TEACHING UNIT 5. INDUSTRIAL PLANT PROCESSES
Types of industrial projects
Combined-cycle power stations
Water treatment plants
Water desalination plants
Oil refinery
Conclusions
MODULE 2. 3D MODELLING
TEACHING UNIT 1. DEFINITIONS AND ADVANTAGES OF MODELLING IN THE INDUSTRIAL SECTOR
Introduction
BIM and building information “model”
BIM in industrial design
Basics of BIM
Key advantages of the BIM methodology in industrial design
Disruptive innovations by McKessie
TEACHING UNIT 2. REQUIRED DOCUMENTATION AND DATABASES
Key elements in project engineering
Technical specifications
Flanges
Types of valves
Catalogues
TEACHING UNIT 3. STEEL STRUCTURES
Structural tools
Creating a grid
Structural diagram
Creation of structural components
Platforms
Stairs
Handrails
TEACHING UNIT 4. DATA ENTRY
Manual data entry
Pipe specification
Valve specification
Creating a specification sheet
Saving and loading specifications in the plant3D project
Load imported specification data
TEACHING UNIT 5. DIVISION OF AREAS AND MODELS
Starting a 3D project
Create a 3D model file
Integration of different programmes
TEACHING UNIT 6. MODELLING OF PIPES AND EQUIPMENT
3D pipework design interface
3D equipment design
3D pipework design
TEACHING UNIT 7. INTEGRATION OF DIFFERENT SOFTWARE PROGRAMMES
Integration of Plant, Navisworks and Revit
Plant + Revit integration
TEACHING UNIT 8. MODELS
Models
TEACHING UNIT 9. CREATING ISOMETRIC DRAWINGS
Style specifications for isometric drawings
Generating isometric drawings. Quick iso
Generation of isometric drawings. Production iso
Add text on isometric lines and annotations
TEACHING UNIT 10. GENERATING MATERIAL TALLY SHEETS
Procedure
Create a report to generate a list of equipment
Create a report to obtain a list of project drawings
Export report
TEACHING UNIT 11. DATA MANAGEMENT
Data management
TEACHING UNIT 12. CONTROL INSTRUMENTATION
Instrumentation concepts
Sensors
Control actuators
Industrial controllers
Instrumentation connections
3D models. Instrumentation