Designing Real-life Structures with Etabs
- Offered byUDEMY
Designing Real-life Structures with Etabs at UDEMY Overview
Duration | 8 hours |
Total fee | ₹3,499 |
Mode of learning | Online |
Credential | Certificate |
Designing Real-life Structures with Etabs at UDEMY Highlights
- Earn a Certificate of completion from Udemy
- Learn from 19 downloadable resources
- Get full lifetime access of the course material
- Comes with 30 days money back guarantee
Designing Real-life Structures with Etabs at UDEMY Course details
- For Early career Structural and Civil Engineers looking to gain practical and hand-on knowledge in mid and high-rise Concrete Buildings Design using Etabs
- For Mid career Structural and Civil Engineers looking to grow their knowledge in mid and high-rise Concrete Buildings Design using Etabs
- For Engineers interested in growing their knowledge in Finite Element Modelling and Analysis
- Learn how to create, modify, intrepret and design buildings with Etabs based on real-life design situations
- Develop deep understanding of finite-element software and critical parameters involved
- Gain access to a well-tested workflow of working with Etabs in real-life projects
- Develop greater understanding of Earthquake and Wind loads as well as their definitions and application in Etabs
- Basics of Strucutral Dynamics and Tall Buildings Response
- Model Checking and Debugging Errors
- Throughout this course, we will be going through a unique office building project that is incepted based on actual real-life structures that I have worked on across Southeast Asia, the Middle East, and Australia
- We will verify the analysis results via simple hand calculations and checks to common rule of thumbs for buildings design, and finally, design the columns and the walls in the building
Designing Real-life Structures with Etabs at UDEMY Curriculum
Settings up models
Introduction
Lecture 1 - Working with Models
Lecture 2 - Storeys
Lecture 3 - Grids
Lecture 4 - Materials
Lecture 5 - Sections and Properties
Lecture 6 - Cracking and Stiffness Modifiers
Modelling the structure
Lecture 1 - Columns
Lecture 3 - Walls Part 2
Lecture 2 - Walls Part 1
Lecture 4 - Walls Part 3
Lecture 5 - Slabs
Lecture 6 - Beams
Lecture 7 - Meshing & Slab Releases
Lecture 8 - Preliminary Model Checks
Model Definitions and Assignments
Lecture 1 - Gravity Loads
Lecture 2 - Wind Loads
Lecture 3 - Earthquake Design Category
Lecture 4 - Static Earthquake Loads
Lecture 5 - Dynamic Response Spectrum
Lecture 6 - Load Combinations Part 1
Lecture 7 - Load Combinations Part 2
Lecture 8 - Wall Piers
Model Check and Intrepretations
Lecture 1 - Gravity Load Checks
Lecture 2 - Wind Analysis Part 1 - Manual Hand Checks
Lecture 3 - Wind Analysis Part 2 - Cracked Columns Stiffness
Lecture 4 - Wind Analysis Part 3
Lecture 5 - Static Earthquake Analysis Part 1
Lecture 6 - Static Earthquake Analysis Part 2
Lecture 7 - Static Earthquake Analysis Part 3
Lecture 8 - Static Earthquake Analysis Part 4
Lecture 9 - Dynamic Response Spectrum Analysis
Design
Lecture 1 - Columns Design
Lecture 2 - Columns Design Part 2
Lecture 3 - Walls Design - Pier and Spandrel Definitions
Lecture 4 - Walls Design Part 2
Lecture 5 - Walls Design Part 3
Lecture 6 - Precast Walls Design
Misc. questions and answer
Advanced grid system
Piles Vs Pins