Structural Design of Buildings using Etabs Software
Structural Design of Buildings using Etabs Software, available at $19.99, has an average rating of 4.85, with 113 lectures, based on 52 reviews, and has 200 subscribers.
You will learn about Basic concepts of Structural Analysis and Design Students learn modelling and design of multi storey structures in Etabs software. Students can Prepare detailed drawings of column, footing, slab, beams, staircase. Export the software design results and cross verify as per IS code provisions This course is ideal for individuals who are Civil Engineers or Structural Engineers or Any one who is curious to learn about structural engineering It is particularly useful for Civil Engineers or Structural Engineers or Any one who is curious to learn about structural engineering.
Enroll now: Structural Design of Buildings using Etabs Software
Summary
Title: Structural Design of Buildings using Etabs Software
Price: $19.99
Average Rating: 4.85
Number of Lectures: 113
Number of Published Lectures: 113
Number of Curriculum Items: 113
Number of Published Curriculum Objects: 113
Original Price: $64.99
Quality Status: approved
Status: Live
What You Will Learn
- Basic concepts of Structural Analysis and Design
- Students learn modelling and design of multi storey structures in Etabs software.
- Students can Prepare detailed drawings of column, footing, slab, beams, staircase.
- Export the software design results and cross verify as per IS code provisions
Who Should Attend
- Civil Engineers
- Structural Engineers
- Any one who is curious to learn about structural engineering
Target Audiences
- Civil Engineers
- Structural Engineers
- Any one who is curious to learn about structural engineering
This course is mainly designed to bridge the gap between theoretical and practical knowledge and it teaches you all the basic things you need for analyzing and designing an RCC structure. This helps you to understand all the basic concepts of Structural Analysis which is the backbone of Structural Design and continues to the process of design and detailing of the structure. This course ensures that you do not need to have any prior experience in structural analysis and design software.
The systematic arrangement of this course helps to you learn the software and all the concepts from scratch and will take you to the next level. At end of this course, students will be thought how to make a safe and economical structure as per industrial standards.
This course starts by explaining the concepts of structural Analysis and the relation between structural analysis and design, the concepts of structural members, how to study the architectural drawings, how to locate the column positions, how to make a framing plan, how to make plinth beam layout, how to arrive the preliminary size of all the structural members, how to create grid model in Etabs, how to define material properties with stress-strain curve explanation, how to define & assign member properties, load transfer mechanism, detailed explanation of load calculation for all structural members including staircase, wind load, and seismic load calculation, define and assigning loads, load combinations, structural analysis, post analysis check, structural design in Etabs, design and detailing of all the structural members as per codes and standards.
This course will be useful for civil engineers and structural engineers.
Indian Standard codes like IS-456:2000, IS-875 Part-1, IS-875 Part-2, IS-875 Part-3, IS- 1893-2016, IS-13920, and IS-16700 are explained as per the requirement.
Course Curriculum
Chapter 1: Introduction
Lecture 1: Introduction
Chapter 2: What is Structural Analysis and Design
Lecture 1: What is Structural Analysis and Design
Chapter 3: Technical terms used in Structural Analysis and Design
Lecture 1: Force of Resistance
Lecture 2: What is Tension
Lecture 3: What is Compression
Lecture 4: What is RCC
Lecture 5: What is Support and types of support
Lecture 6: What is Equilibrium
Lecture 7: What is Bending moment
Lecture 8: What is Shear Force
Lecture 9: How Shear Force and Bending Moment developed in Structural members
Lecture 10: What is Deflection
Chapter 4: Introduction to Structural Members
Lecture 1: Footing
Lecture 2: Column
Lecture 3: Beams
Lecture 4: Slabs
Lecture 5: Staircase
Chapter 5: How to choose preliminary size of Structural Members
Lecture 1: Slab
Lecture 2: Beam
Lecture 3: Column
Lecture 4: Standard Size of Column
Lecture 5: Footing
Chapter 6: Framing Plan & Plinth Layout
Lecture 1: How to read Architectural Drawing
Lecture 2: How to locate Columns
Lecture 3: How to make Framing Plan
Lecture 4: How to make column beam and slab layout with grids
Lecture 5: What is Plinth beam and Plinth level
Lecture 6: How to make Plinth beam Layout
Chapter 7: Loads and Load Transfer Mechanism
Lecture 1: Gravity load
Lecture 2: Lateral load
Lecture 3: Load Transfer Mechanism
Chapter 8: Etabs Introduction
Lecture 1: Etabs Introduction
Lecture 2: How to install
Lecture 3: Etabs Interface
Chapter 9: Modelling in Etabs
Lecture 1: Grid Modelling and Edit storey data
Chapter 10: Defining Material Properties
Lecture 1: Reinforced cement concrete
Lecture 2: What is Stress
Lecture 3: What is Strain
Lecture 4: Stress Strain curve for Concrete
Lecture 5: Stress Strain curve for Steel
Lecture 6: Defining Material Properties
Chapter 11: Defining Member Properties
Lecture 1: Defining Column and Beam Properties
Lecture 2: Stiffness Modifiers
Lecture 3: Defining Slab Properties
Lecture 4: Membrane & Shell thin
Chapter 12: Assigning Member Properties
Lecture 1: Creating Columns
Lecture 2: Creating Beams
Lecture 3: Creating Slabs and Check Model
Chapter 13: Assigning Support Conditions
Lecture 1: Assigning Support Conditions
Chapter 14: List of IS Codes
Lecture 1: List of IS codes used
Chapter 15: Gravity Load Calculation
Lecture 1: Load transfer Mechanism and classification of loads
Lecture 2: Dead load overview
Lecture 3: Self weight of Slab
Lecture 4: Self weight of Beam
Lecture 5: Self weight of Column
Lecture 6: Floor finish load
Lecture 7: Main wall load
Lecture 8: Partition wall load
Lecture 9: Parapet wall load
Lecture 10: Sunken slab load
Lecture 11: Water Proof load
Lecture 12: Staircase load
Lecture 13: Live load
Chapter 16: Wind load
Lecture 1: What is wind load
Lecture 2: Concept of wind load
Lecture 3: Lateral sway
Lecture 4: Wind load calculation
Chapter 17: Earthquake load
Lecture 1: What is an Earthquke
Lecture 2: Earthquake design Philosophy
Lecture 3: List of IS codes used in Earthquake Design
Lecture 4: Earthquake loads on Buildings
Lecture 5: Static and Dynamic Analysis
Lecture 6: Response of RCC structure during an Earthquake
Lecture 7: Earthquake load Calculation
Chapter 18: Defining load patterns in Etabs
Lecture 1: Defining Load Patterns
Chapter 19: Assigning Gravity load (Dead & Live load)
Lecture 1: Assigning main wall load
Lecture 2: Assigning partition wall load
Lecture 3: Assigning Parapet wall load
Lecture 4: Assigning Floor finish load
Lecture 5: Assigning sunk slab load
Lecture 6: Assigning staircase load
Instructors
-
Sathya Balasundaram
Civil & Structural Engineer
Rating Distribution
- 1 stars: 0 votes
- 2 stars: 1 votes
- 3 stars: 2 votes
- 4 stars: 22 votes
- 5 stars: 27 votes
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