STAAD Pro Professional Course (Steel Large Span Structures)
Over 8.5 hours of Course Content with Practical Case studies of Steel Structure including Pushover Analysis
What you'll learn
Over 8.5 hours of Course Content with Practical Case studies of Steel Structure including Pushover Analysis
What you'll learn
Design of Steel Truss Structures as per AISC 360
Wind Load Calculations as per ASCE 07-16 and IS 875-2015
Linear Buckling Analysis of I-Shape Columns , Girders etc.
Design of Pre Engineered Structure as per Indian and American Design Standards
Design of Lattice Truss Structures as per Indian Standards

Description
Design of Truss Structures as per AISC 360
In this lecture series, first of all you shall learn the absolute basics of Introduction to Steel Truss Structures. Manual Design of Purlins and Sag Rods are explained in detail as per AISC 360. You shall learn how to model , analyze and design steel truss structures as per AISC 360.
Linear Buckling Analysis of Structures
Linear Buckling Analysis is a very interesting concept ,which form the basis of design of many types of structural elements. You shall learn how to do buckling analysis of Column Manually. After getting your concepts cleared , you shall learn how to perform buckling analysis of I shaped Steel Girders , I shape Columns and Cooling Tower.
Design of Pre-Engineered Building as per Indian Standard IS800
Pre-Engineered Buildings are somewhat difficult to model and analyze. The Instructor explains the anatomy of PEB structures first. You shall learn how to model , analyze and design the structures. Wind load calculations is taught in great detail.
Design of Lattice Steel Truss Structure as per Indian Design Standards
This lecture series starts with Introduction to Lattice Steel Truss Structures.The modelling , analysis and design of Steel Truss Lattice Structures are taught with practical examples. Difference in behavior of Conventional PEB structure with Lattice Steel Truss Structures is taught in great detail. You shall learn how to read the design results and optimize the steel structures.
Design of Pre-Engineered Building as per American Standard AISC 360 and ASCE 07
This is the only lecture series on the internet that shall explain you how to calculate the Wind loads as per American Standard ASCE07. The Portal frame analysis for the structure is performed as per AISC 360. The design of the Portal is done and the results are analyzed.
Non-Linear Static Analysis of Steel Structures (Pushover Analysis)
In this lecture series , Non-Linear Static Analysis of Steel Structure is done in the STAAD. The pushover analysis is taught in great detail in this lecture series. The modelling is done for a planar structure in STAAD. The pushover curved is generated and the results are ascertained.
Course content
Manual Design of Purlins and Sag Rods for Wind Loads
Modelling, Analysis and Design of Steel Truss in STAAD as per AISC 360
Introduction to Linear Buckling Analysis
Perform Buckling Analysis for I Shape Column
Perform Buckling Analysis of a Cooling Tower (Theoretical Example)
Introduction to Pre-Engineered Buildings (PEB)
Modelling of PEB Shed and Assigning Properties
Calculation and Assignemnt of Dead and Live Loads as per IS 875 and NBC 2016
Assignment of Wind Loads on PEB Shed as per the Indian Standards
Assigning Analysis and Design Parameters with Extracting Design Results
Introduction to Lattice Steel Truss Structures
Modelling , Analysis and Design of Lattice Steel Truss Structure
Reading Design Results and Optimising the Steel Structure
Detailed Explaination of Wind Loads as per ASCE 07-16
Modelling , Analysis and Design of Portal Frame as per AISC 360 and ASCE07-16
Introduction to Non Linear Static Analysis i.e.Pushover Analysis
Perform Pushover Analysis for a Steel Frame in STAAD.Pro
Who this course is for:
Civil Engineers
Structural Engineers
Architects
Civil Engineering Students
Steel Fabricators
Last updated 1/2022
English
Requirements
STAAD Pro
Basic Knowledge of Civil and Structural Engineering
6 sections • 22 lectures • 8h 44m total length
Size: 4.79 GB
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