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Product Overview

In this project, a semi-supported steel shear wall is modeled in Abaqus and its seismic behavior is investigated under cyclic loading.

The numerical model is developed based on the configuration and information reported in the reference research paper.

The Abaqus results are compared with the experimental results to evaluate the accuracy of the numerical model and its ability to reproduce the structural response observed in the experimental study.

What You Will Learn

  • How to model a semi-supported steel shear wall in Abaqus.
  • How to define the geometry and material properties of the model.
  • How to define the required interactions and boundary conditions.
  • How to perform a buckling analysis.
  • How to extract buckling modes from Abaqus.
  • How to define an initial geometric imperfection.
  • How to define cyclic loading using the Amplitude option in Abaqus.
  • How to perform nonlinear analysis under cyclic loading.
  • How to obtain a force–displacement hysteresis curve.
  • How to extract and process Abaqus results using Excel.
  • How to compare numerical and experimental results.

Model Description

The model represents a semi-supported steel shear wall based on the configuration of the experimental specimen described in the reference study.

The structural components are modeled according to the dimensions, material properties, and other information provided in the research paper.

The required material properties, interactions, boundary conditions, and analysis settings are defined in Abaqus to reproduce the behavior of the experimental specimen.

Semi-supported steel shear wall modeled in Abaqus
Semi-supported steel shear wall modeled in Abaqus.

Experimental Specimen

The experimental specimen used in the reference study is shown in the following figure. The specimen configuration and its main structural components are reproduced in the Abaqus numerical model.

Experimental specimen of the semi-supported steel shear wall
Experimental specimen of the semi-supported steel shear wall.

Beam and Column Connection

In this model, the beam and column are connected using hinges. The locations where the hinges are positioned are highlighted in the following figure.

Beam and column connection using hinges in Abaqus
Locations of the hinges used to connect the beam and column.

Buckling Analysis and Initial Imperfection

A buckling analysis is performed to determine the buckling behavior of the steel shear wall.

The obtained buckling mode is then used to introduce an initial geometric imperfection into the numerical model.

This procedure helps the numerical model better represent the initial geometric condition of the experimental specimen.

Cyclic Loading

The semi-supported steel shear wall is subjected to cyclic loading according to the loading protocol used in the reference experimental study.

The loading history is defined using the Amplitude option in Abaqus.

The structure is then analyzed under repeated loading and unloading cycles to investigate its nonlinear seismic response.

Cyclic loading protocol for semi-supported steel shear wall
Cyclic loading protocol used in the numerical analysis.

Hysteresis Analysis

The numerical results obtained from the cyclic analysis are extracted to evaluate the structural response of the semi-supported steel shear wall.

The force and displacement data are processed to obtain the force–displacement hysteresis curve.

The numerical hysteresis response is compared with the experimental response reported in the reference paper.

Force displacement hysteresis curve of semi-supported steel shear wall
Comparison of the numerical and experimental hysteresis responses.

Results

The Abaqus results are used to evaluate the deformation and load-carrying behavior of the steel shear wall during the cyclic analysis.

The numerical response provides information about the structural behavior of the specimen throughout the loading cycles.

Abaqus results of semi-supported steel shear wall
Numerical results obtained from the Abaqus analysis.

Experimental Validation

The numerical model is validated against the experimental results reported in the reference research paper.

The comparison focuses on the structural response obtained from the cyclic loading analysis.

The comparison demonstrates the capability of the Abaqus model to reproduce the main characteristics of the experimental behavior.

Comparison between Abaqus and experimental results
Comparison between the Abaqus and experimental results.

Key Features

  • Numerical simulation of a semi-supported steel shear wall.
  • Buckling analysis.
  • Initial geometric imperfection.
  • Nonlinear cyclic analysis.
  • Force–displacement hysteresis response.
  • Comparison with experimental results.
  • Experimental validation of the numerical model.
  • Complete Abaqus model files.
  • Excel files for loading and numerical results.
  • Reference research paper.
  • Step-by-step video tutorial.
Test setup
Test setup.

Reference

This project is based on the experimental study provided in the reference research paper.

The paper is included with the project files and can be used to review the experimental setup, loading protocol, numerical model, and reported results.

Reference research paper
Reference research paper.
Files Included
What you will receive after purchase
File Type
Content
Description
🧩 Abaqus
CAE File
Complete Abaqus model
📄 Abaqus
INP File
Abaqus input file
📊 Excel
Cyclic Loading Data
Data used to define the cyclic loading
📊 Excel
Numerical Results
Results extracted from the Abaqus analysis
📑 Document
Research Paper
Reference paper used for the project
🎥 Video
Video Tutorial
Step-by-step explanation of the project

Project Information

Important information about this project

🎥
Video Duration 104 Minutes
📦
Total File Size 908 MB
🔧
Abaqus Version Abaqus 2017
🌐
Language English
📥
File Delivery Instant Download

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Need Help?

If you have any questions about this product, please contact us by email.

saeedofmoeini@gmail.com

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