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Mohammed Flaha

Learn how to use the world's most popular application for structural design

This application is used to design the world-famous towers and towers such as Burj Khalifa

Learning will be done by a simple example of learning the basics

And then a real advanced example of learning things developed in the application to be able to design any project through the application

We will Use American codes ( ACI - UBC - ASCE )

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What's inside

Syllabus

Introduction

introduction for the course and what you will learn in this course

L2- ETABS 17 Enhancements+General about Etabs
learn Etabs modeling for the basic and intermediate level
Read more
Draw the beams and none beams for the liner load
L3- Make new model – grid and story
L4- Define materials and Section Properties
L5- Define load pattern &caces and combinations
L6-Draw the columns, shear walls and cores
Learn how to model all elements
Draw the slab and correct the edge by different ways
Assign the load (dead – live – thermal)
Assign the liner load
Divide the shear walls and core
Assign the pairs and diaphragm and make the opening
Check and fix error
Replicate the floor and fix the model
Analyze and design elements
Analyze options
Desing the beam
Design the columns
Design the shear walls and cores
The end of the first part
Introduction for modeling real tower

Here I will add the following files for the project

- All Autocad file - 30 drawing -

- final ETABS EDB file

- filnal Etabs f2k file

- soil report

prepare the files for work
Read the architect plans part-1
Read the architect plans part-2
Prepare the DXF file from architect plans
start modeling the tower
prepare the ETABS file for importing
import the DXF files in Etabs
Define materials and wall Section and draw it
Define the sections and set modifiers
Draw the columns and the slabs
Fix the walls & columns in all floors
Define load pattern (static-seismic-wind ) part-1
Define load pattern (static-seismic-wind ) part-2
Define diaphragm –Response spectrum – mass source – P-delta
Define load cases & load Combinations Part-1
Define load cases & load Combinations Part-2
Define load cases & load Combinations Part-3
Draw the Beam & Opening – Assign the load
Assign the piers and divide it
Check the model – prepare it for Analysis
analyzing and design the model
Read the result – fix the scale factor - Fix the load Combinations Part-1
Read the result – fix the scale factor - Fix the load Combinations Part-2
Check Drift , scale factor ,torsional irregularity Part-1
Check Drift , scale factor ,torsional irregularity Part-2
Check Drift , scale factor ,torsional irregularity Part-3
Check soft story & wind displacement
Design the Columns(Design – check)
Design the Columns(Design – check) PART-1
Design the Columns(Design – check) PART-2
Design the Columns(Design – check) PART-3
Export reactions for CSI Safe v16 to solve foundations
Some important notes and comments
Construction sequence analysis in etabs - Planted columns in etabs - Floating column in etabs - Pushover analysis in etabs

Auto construction sequence analysis in etabs

what the load will use

when we use this type of analysis

what effect of this analysis

The floating column is a vertical member which rest on a beam but doesn't transfer the load directly to the foundation

Or it is named planted columns

floating column advantages and disadvantages

floating column advantages and disadvantages

floating column design in etabs

what factors influence when we study floating columns


  • The floating column is a vertical member which rest on a beam but doesn't transfer the load directly to the foundation

    Or it is named planted columns

    floating column advantages and disadvantages

    floating column advantages and disadvantages

    floating column design in etabs

  • what factors influence when we study floating columns

building separations / gap calculation from Etabs model

seismic joint according UBC97

EXAMPLE CALCULATION How to calculate the expansion joint in etabs ?

Modeling beam - column joint connection
Modeling and design the steel structure
Introduction to the steel structure

Modeling and design the steel frame BS standards part 1 2d frame

using DL+LL+WIND LOAD

Modeling and design the steel frame BS standards part 2 2d frame

using DL+LL+WIND LOAD

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Activities

Be better prepared before your course. Deepen your understanding during and after it. Supplement your coursework and achieve mastery of the topics covered in ETABS from A to Z - V17 2019 - real existing tower example with these activities:
Review Structural Analysis Principles
Reinforce your understanding of structural analysis principles to better grasp ETABS's analysis capabilities.
Browse courses on Structural Analysis
Show steps
  • Review key concepts like stress, strain, and equilibrium.
  • Work through example problems related to beam and frame analysis.
  • Familiarize yourself with different types of structural loads.
Read 'Structural Analysis' by R.C. Hibbeler
Deepen your understanding of structural analysis concepts with a comprehensive textbook.
View Structural Analysis on Amazon
Show steps
  • Obtain a copy of 'Structural Analysis' by R.C. Hibbeler.
  • Read chapters related to beam and frame analysis.
  • Work through example problems in the book.
Practice ETABS Modeling Basics
Reinforce your ETABS modeling skills by practicing basic modeling tasks.
Show steps
  • Create a simple ETABS model of a two-story building.
  • Define materials, sections, and load patterns.
  • Assign loads and run a static analysis.
Four other activities
Expand to see all activities and additional details
Show all seven activities
Document ETABS Workflow
Solidify your understanding by documenting your ETABS workflow for a specific task.
Show steps
  • Choose a specific ETABS task, such as defining load combinations.
  • Document each step of the process with screenshots and descriptions.
  • Share your documentation with other students for feedback.
Model a Simple Structure in ETABS
Apply your ETABS knowledge by modeling a simple structure from start to finish.
Show steps
  • Select a simple structure, such as a small office building.
  • Create an ETABS model of the structure, including all structural elements.
  • Apply loads and run an analysis.
  • Design the structural elements based on the analysis results.
Read 'Seismic Design of Buildings' by Michael R. Lindeburg
Expand your knowledge of seismic design principles, which are crucial for tower design.
Show steps
  • Obtain a copy of 'Seismic Design of Buildings' by Michael R. Lindeburg.
  • Read chapters related to seismic analysis and design of buildings.
  • Focus on sections relevant to the codes used in the course (ACI, UBC, ASCE).
Contribute to ETABS Scripting Tools
Enhance your ETABS skills by contributing to open-source scripting tools or libraries.
Show steps
  • Research existing open-source ETABS scripting tools.
  • Identify areas where you can contribute, such as bug fixes or new features.
  • Submit your contributions to the project.

Career center

Learners who complete ETABS from A to Z - V17 2019 - real existing tower example will develop knowledge and skills that may be useful to these careers:
Structural Engineer
A Structural Engineer analyzes, designs, and oversees the construction of buildings and other structures, ensuring their safety and stability. This course, centered on ETABS, a leading application for structural design, helps you learn to model and analyze structures. You will be introduced to using American codes such as ACI, UBC, and ASCE. The course presents a practical example of designing a real-world tower. This is an important asset for a Structural Engineer. By working through the advanced example, you can gain hands-on experience in addressing the complexities of tower design in both concrete and steel.
Civil Engineer
Civil Engineers design, construct, supervise, and maintain infrastructure projects. The course focuses on using ETABS to model and designing existing tower designs. By working with examples, you will enhance your understanding of structural behavior, load application, and compliance with American codes (ACI, UBC, and ASCE)—all skills a Civil Engineer needs. This course directly contributes to the skills required for structural design within civil engineering, with additional benefits for engineers designing tall structures.
Architectural Engineer
Architectural Engineers apply engineering principles to the design, construction, and operation of buildings. This course, focused on structural design using ETABS, is directly relevant. It provides practical experience in modeling, analyzing, and designing structures, especially towers, using industry-standard software. Working with American codes (ACI, UBC, ASCE) will enhance your ability to integrate structural systems with architectural designs, making you a more competent Architectural Engineer.
Structural Engineering Technician
Structural Engineering Technicians assist structural engineers in the design, analysis, and testing of structures. This ETABS course will help you learn how to use industry-standard software for structural modeling. You also learn how to apply American codes (ACI, UBC, ASCE). Gaining proficiency in ETABS would make you a more capable and valuable Structural Engineering Technician, able to contribute effectively to structural design projects.
BIM Modeler
A BIM Modeler creates detailed 3D models of buildings and infrastructure using Building Information Modeling (BIM) software. The ETABS course directly helps you develop skills in structural modeling, analysis, and design. This includes understanding load patterns, material properties, and structural behavior. This background can also improve collaboration with structural engineers and other project stakeholders, making you a valuable BIM Modeler in complex construction projects.
Structural Detailer
Structural Detailers create detailed drawings and specifications for structural components, such as steel or reinforced concrete. This course may assist you in understanding structural design principles and how ETABS is used to analyze and design structures. A more precise understanding of this information will enhance the accuracy and quality of your detailing work.
Construction Manager
Construction Managers plan, coordinate, budget, and supervise construction projects from start to finish. While this role is less focused on design, understanding the structural aspects of a project is invaluable. This ETABS course may be useful for familiarizing a construction manager with structural design principles, model analysis, and code compliance (ACI, UBC, ASCE). Knowing how structural engineers use software like ETABS to analyze building designs can improve communication and problem-solving skills on construction sites.
Project Manager
Project Managers oversee the planning, execution, and delivery of construction projects. While this course focuses on structural design using ETABS, understanding the structural aspects of a project will be helpful. By working through the course, you can gain a better understanding of structural engineering processes, which will assist in coordinating with structural engineers, managing project timelines, and ensuring project success.
Facilities Manager
Facilities Managers oversee the operation and maintenance of buildings and infrastructure. While this course focuses on structural design using ETABS, understanding the structural aspects of building maintenance is key. By working through the course, you can gain a better understanding of structural behavior. You would then be better equipped to assess structural issues, coordinate repairs, and ensure the safety and longevity of building structures.
CAD Technician
CAD Technicians create technical drawings and plans based on engineers' and architects' specifications. While the course focuses on ETABS, a structural analysis software, understanding structural design principles can be highly beneficial. The course provides insights into how structural models are created and analyzed, enhancing your understanding of structural systems and design considerations. This knowledge can improve the accuracy and efficiency of your CAD drawings, particularly for structural components.
Bridge Engineer
Bridge Engineers specialize in the design, construction, and maintenance of bridges. While this ETABS course focuses on buildings, the fundamental principles of structural analysis are transferable. You may find the course useful because it provides a foundation in structural modeling, load analysis, and design, including the application of relevant codes. This knowledge can enhance your understanding of structural behavior and improve your ability to analyze and design bridge components.
Geotechnical Engineer
Geotechnical Engineers investigate subsurface conditions and materials to assess the risk of soil and rock on construction projects. The ETABS course helps to analyze how structural loads are transferred to the foundation. Understanding how data from soil reports are used in structural models could be very useful. Although this course primarily concerns above-ground structures, it helps to appreciate of the interaction between the structure and the ground.
Wind Turbine Engineer
Wind Turbine Engineers design, develop, and maintain wind turbines, which are tall, complex structures subject to significant wind loads; the design principles that an ETABS course might teach are useful. This course may be useful as it gives an introduction to modeling and structural analysis, including wind load considerations, using American codes. This knowledge can be a foundational asset for understanding the structural behavior of wind turbine towers.
Urban Planner
Urban Planners develop plans and programs for the use of land, helping to create communities, accommodate population growth, and revitalize physical facilities in urban and metropolitan areas. While this course focuses on structural design using ETABS, understanding the structural aspects of building can inform urban planning decisions. By working through the course, you can improve your knowledge to integrate structural considerations into urban development plans, ensuring the safety and sustainability of urban infrastructure.
Sustainability Consultant
Sustainability Consultants advise organizations on how to reduce their environmental impact. This course on ETABS helps with structural design. Understanding how structures are analyzed and designed may be useful for identifying sustainable design practices. You can also become familiar with the latest principles of structural analysis and design.

Reading list

We've selected two books that we think will supplement your learning. Use these to develop background knowledge, enrich your coursework, and gain a deeper understanding of the topics covered in ETABS from A to Z - V17 2019 - real existing tower example.
Provides a comprehensive overview of structural analysis principles. It covers topics such as determinate and indeterminate structures, influence lines, and approximate analysis methods. It valuable reference for understanding the theoretical basis behind ETABS's calculations. This book is commonly used as a textbook in structural engineering courses.
Provides a detailed overview of seismic design principles and practices. It covers topics such as seismic hazard analysis, structural detailing for seismic resistance, and performance-based design. Given that the course uses American codes (ACI - UBC - ASCE), this book useful reference for understanding seismic design requirements. This book is more valuable as additional reading than it is as a current reference.

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