STAAD PRO: Design of Earthquake-Resistant Structures
STAAD PRO: Design of Earthquake-Resistant Structures, available at $19.99, with 8 lectures, and has 14 subscribers.
You will learn about Effective understanding of Static Seismic Analysis and Design Detection and Analysis of Soft Story and Story Drift in Structures Application of IS 800: 2016 Codes and Parameters Creation of Seismic Mass and Diaphragm This course is ideal for individuals who are Intermediate to Expert Level It is particularly useful for Intermediate to Expert Level.
Enroll now: STAAD PRO: Design of Earthquake-Resistant Structures
Summary
Title: STAAD PRO: Design of Earthquake-Resistant Structures
Price: $19.99
Number of Lectures: 8
Number of Published Lectures: 8
Number of Curriculum Items: 8
Number of Published Curriculum Objects: 8
Original Price: $34.99
Quality Status: approved
Status: Live
What You Will Learn
- Effective understanding of Static Seismic Analysis and Design
- Detection and Analysis of Soft Story and Story Drift in Structures
- Application of IS 800: 2016 Codes and Parameters
- Creation of Seismic Mass and Diaphragm
Who Should Attend
- Intermediate to Expert Level
Target Audiences
- Intermediate to Expert Level
Design of Earthquake-Resistant structures with STAAD Pro Connect Edition.
The major highlights of the delivery are as follows:
1. Equivalent Lateral Force Procedure (ELFP) to Codes IBC 2012; IS 800: 2016
2. Generation of Seismic Masses
3. Accidental Eccentricity
4. Detection of Soft Story
5. Story Drift Analysis
You will learn how to create a seismic load definition which will instruct STAAD Pro to calculate the seismic loads according to the IS 1893 (Part 1): 2016. You will also learn how to define the effective seismic weight of the structure that will be considered to contribute to the seismic base shear.
Model Geometry:All of the model geometry, including members and nodes, has already been created.
Member Properties and Specifications:All of the member properties, including the section properties and materials, have been assigned to each member in the model. All of the applicable member specifications and supports have also been assigned.
Loading:Gravity loads have been modeled as Reference Loads. The gravity and seismic load cases have already been created.
Analysis Commands:A PERFORM ANALYSIS command has already been specified at the end of the Input File
Section Description
In this workflow, we will generate seismic loads in the horizontal X and Z directions according to the IS 1893: 2016 Equivalent Lateral Force Procedure.
Skills Taught
Generating Seismic Loads without Accidental Eccentricity
Performing the Analysis and Reviewing the Results
Course Curriculum
Chapter 1: Model Generation and Loading
Lecture 1: INTRODUCTION
Lecture 2: Generating Seismic Loading
Lecture 3: Creating Seismic Load Definitions
Lecture 4: Model Seismic Mass on Structure
Chapter 2: Workshop Video
Lecture 1: Workshop Video
Chapter 3: Analyze the Structure and Review the Results
Lecture 1: Analysis
Lecture 2: Design for Strength and Serviceability
Lecture 3: Review the Design Output
Instructors
-
Abiodun Olunde
Senior Principal Civil/Structural Engineer at Sherman Gray
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Frequently Asked Questions
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