The Comprehensive ETABS Professional Course (RCC and Steel)

BY
Udemy

Learn all the fundamental concepts and methodologies related to ETABS for RCC and Steel structures.

Lavel

Intermediate

Mode

Online

Fees

₹ 2499

Quick Facts

particular details
Medium of instructions English
Mode of learning Self study
Mode of Delivery Video and Text Based

Course overview

Architectural software called ETABS is used to analyze and design multi-story buildings. The grid-like geometry specific to this form of construction is taken into account through modeling templates and tools, software load recommendations, analysis techniques, and solution approaches. Structural Engineering Courses created The Comprehensive ETABS Professional Course (RCC and Steel) online certification, which is provided by Udemy.

The Comprehensive ETABS Professional Course (RCC and Steel) online classes are indeed for the participants who want to acquire the knowledge of the concepts and techniques for working with RCC structures and steel structures using Etabs to become civil engineers and structural engineers. With The Comprehensive ETABS Professional Course (RCC and Steel) online course, participants will receive more than 20.5 hours of detailed lectures supported by 14 downloadable resources, case studies, and assignments that revolve around topics like linear dynamic analysis, linear static analysis, industrial heavy structures, space truss structures, raft foundation, foundation design and more.

The highlights

  • Certificate of completion
  • Self-paced course
  • 20.5 hours of pre-recorded video content
  • 14 downloadable resources
  • Case studies
  • Assignments

Program offerings

  • Online course
  • Learning resources.
  • 30-day money-back guarantee
  • Unlimited access
  • Accessible on mobile devices and tv

Course and certificate fees

Fees information
₹ 2,499
certificate availability

Yes

certificate providing authority

Udemy

What you will learn

Civil engineering skills

After completing The Comprehensive ETABS Professional Course (RCC and Steel) certification, participants will acquire a better understanding of the functionalities of Etabs for working with RCC structures and steel structures as per AISC360, IS800, IS1893, and IS13920 standards. Participants will explore the concepts involved with methodologies like response spectrum analysis, linear static analysis, linear dynamic analysis, tall buildings response analysis, modal analysis, and structural dynamics analysis. Participants will learn about techniques involved with SAFE software for foundation design and raft foundation as well as will acquire the knowledge of the concepts involved with truss structures, and industrial heavy structures.

The syllabus

Design of Pre Engineered Building as per Indian Standards

  • Introduction to Pre Engineered Buildings
  • Draw a portal frame from one end to other as per Drawing
  • Define Frame Section Properties
  • Replicate the Whole Portal along the Width
  • Replicate the Whole portal along the length
  • Draw Gable End Structure for the Ends
  • Draw Plan and Elevation Bracing
  • Define Load Patterns
  • Define Load Cases
  • Define Load combinations
  • Calculation of Dead, Live and Wind Loads
  • Correct the Load Combinations
  • Assign the Releases to the Structural Members
  • Assign Supports to the Building
  • Define Modal cases
  • Define Analysis options and Analyze the Steel Structure
  • Steel Structure Design of Pre Engineering Building Structure as per IS800
  • Value Engineering of the PEB Shed
  • Check the tabular results including Material Take off

Linear Dynamic Analysis of a Billboard as per IS800

  • Modelling of a Billboard with free modelling approach
  • Assigning the Section properties to all the members
  • Assign End Releases and Supporting Conditions
  • Define Load Patterns to the Steel Structure
  • Define Wind Loads and Response Spectrum Loads to the Structure
  • Define Load Combinations as per Auto Generate Option.
  • Remove the Instability in the Modelling Process. (Tips and Tricks)
  • Structural Design and Optimization of the Steel Structure
  • Check the Mode shapes ,Mode participation and Weight of Steel Structure

Linear Dynamic Analysis and Design of a Heavy Steel Structure for AISC 360

  • Introduction to Heavy Industrial Equipment Supporting Steel Structures.
  • Define Grids and Stories Data with Frame Section Properties
  • Draw the Silo Supporting Floor with Good Steel Structure Arrangement
  • Draw Second Floor on the top of Silo Supporting Steel Structure
  • Draw Roofing Structural Steel Arrangement
  • Draw Vertical Elevation Bracing along the Minor Sway Direction
  • Define Load Patterns for Steel Industrial Heavy Structure
  • Define Load Cases and Load Combinations
  • Define Modal Cases and Supporting Conditions
  • Define Semi Rigid Diaphragms for all the floors
  • Remove any kind of Errors and Rectification of Mistakes in Modelling
  • Response Spectrum Analysis and Review of Mode Shapes
  • Response spectrum Linear Dynamic Analysis and Design of Steel Structure
  • Optimization of Structural Steel Member Sizes for Economy
  • Design of Structural Steel Connections

Linear Modal Analysis and Design of Steel Space Truss Structure as per AISC360

  • Modelling of Structural Steel Space Truss with Free Modelling Approach
  • Assign Supporting Conditions , Section Properties and Loads to the Truss
  • Remove any kind of Instability in the Truss by Check Model Option
  • Eigen Modal Analysis and Modal Static Analysis of the Truss
  • Design of Steel Space Truss as per AISC 360-16

Non Linear Static Analysis/Push over Analysis

  • Introduction to the Pushover analysis (Non -Linear Static Analysis)
  • Define Non-Linear Material and Section Properties
  • Define Loads Patterns and Load Cases
  • Analyze and Design the Structure
  • Define Gravity and Push over Load Case
  • Assign PMM hinges to the structure
  • Analyze and Check the Model with Non Linear Pushover Load Case
  • Study the Pushover Curve and Learn to Find Performance point
  • Improve the Performance of the Structure

23 Storey High Rise RCC Building as per Indian Standards

  • Learn to Read the Architectural Drawings
  • Basic Introduction to the Methodology
  • Enter the Grid Spacing in the model
  • Enter the Storey Data in the model
  • Define the Material Properties
  • Define Reinforcement Bar Sizes
  • Define Frame Sections
  • Define Diaphragms , Pier Labels and Spandrel Labels
  • Define Snap Options
  • Model the RCC Columns and Shear Walls in the Structure
  • Model the Cantilever Slab or Projections
  • Define Supporting Conditions of the RCC Building
  • Model the Retaining Walls
  • Assign the Releases to the Structure
  • Assign the Diaphragms to the RCC structure
  • Check for Instability in the Structure
  • Define Response Spectrum Function
  • Define Dead Loads and Live Loads
  • Introduction and Explaination of IS1893:2016
  • Define Earthquake Load Pattern
  • Define and Assign Wind Load Patterns
  • Define the Mass Source
  • Define Super Imposed Dead Load , Dead Load and Live Load
  • Define Staircase and Super Imposed Dead Loading
  • Assign live Load Reduction factors
  • Define Response Spectrum Load Case and Modal Cases
  • Define P-Delta Options
  • Define Load Combinations
  • Understand the ETABS Editor File
  • Set the Analysis Options
  • Remove the instability Error
  • Review the Fundamental Mode Shapes
  • Correct the Mode Shapes
  • Check the Static Base Shear
  • Review the Dynamic Parameters
  • Reduce the number of Modes
  • Design of RCC Beams and Columns
  • Design of Shear Wall
  • Export Support Reactions to Safe
  • Model the Structure in Safe
  • Model the Raft Slab in Safe
  • Design of Raft Foundation in Safe

ETABS Basics

  • Introduction to the Welcome Screen
  • Reinforced Cement Concrete Design Codes available in ETABS
  • Unit System available
  • Structural Steel Section Databases Library Available in ETABS
  • Structural Steel Design Codes Available in ETABS
  • Create uniform grid spacing and simple story data
  • Create Non-Uniform Grid Spacing and Custom Story Data
  • Define European Code Material Properties
  • Define United States Material Properties
  • Define Material Properties for Various Countries
  • Define User Material Properties (Customizable Materials)
  • Define Reinforcing Bar Sizes
  • Define Tendon Sections
  • Define Concrete Frame Section Properties
  • Define Structural Steel Sections/Members
  • Create an I section Property in ETABS
  • Define Predefined Structural Steel Properties from Defualt Structural Steel Libr
  • Define Composite Frame Section Properties
  • Define RCC Slab Sections
  • Define RCC Drop Section
  • Define RCC Wall Sections
  • Define Structural Member Property with the help of Section Designer
  • Define Point Springs, Line Springs, Area Springs and Soil Profiles
  • Draw Rectangular Floor and Wall Objects
  • Draw Irregular Floor objects
  • Draw irregular Wall objects
  • Draw Walls in Plan View
  • Draw Wall Stacks
  • Quick Draw Beams and Columns in Plan, Elevation and 3-D view
  • Quick Draw Bracing in Elevation View
  • Quick Draw Columns in Plan and 3-d View
  • Quick Draw Secondary Beams
  • Quick Draw Walls and Wall Openings
  • Draw Different types of Beams (Bezier,Spline,Straight Line,Curved Beams etc.)
  • Draw Beam, Column and Bracing in Elevation and 3-D view
  • Define Temperature Loads at a Joint
  • Define Various Types of Time History Functions
  • Define Various Types of Response Spectrum Functions
  • Define Mass Source being used for Earthquake Analysis
  • Define Load Patterns
  • Define Load Cases
  • Define Load Combinations
  • Define Modal Cases
  • Define P-Delta Options(Two Options available)
  • Define Diaphragms(Flexible or Semi Rigid)
  • Assign Restraints to Joint(Example Pinned, Fixed or Roller etc.)
  • Select and Deselect Option
  • Assign Objects(beams/Columns/Slabs) to a Group and Define Them
  • Assign Frame Loads(Point,Distributed, Trapezoidal and Temperature Loads)
  • Assign Joint Loads(Translational Force and Rotational Moment along all axis)
  • Assign Shell Loads (Uniform , Non-Uniform and Load Sets etc.)

Learn basic Modelling of a Structure and Design as per Euro codes

  • Modelling, Analysis and Design of a Flat Slab Structure as per Euro Codes
  • Create a Structural Model of the Building , Analyze and Design It

Design Raft Foundation in ETABS

  • Theory Concepts for modelling Raft Foundation
  • Modelling Raft Foundation in ETABS

Basics of Structural Dynamics, Lateral Loads and Types of Structure System

  • Basics of Wind and Seismic Forces on the buildings
  • CSSD Rule in Buildings against Earthquakes
  • Damping and Peak Ground Acceleration
  • Flat Slabs , Floating Columns and Structural Walls
  • Fundamental natural Period and Case Studies of Different Buildings
  • Asymmetrical Stiffness in Plan and Elevation
  • Inelastic Behavior and Desirable Mechanism
  • Mode Shapes of the Building
  • Masonry Infill Walls and Damping
  • Natural Period , Frequency and Resonance
  • Basics of Response Spectrum and Ground Motion
  • Planning Building Configuration for Seismic Forces
  • Types of High Rise Building Structural Systems

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