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Project Overview

This tutorial investigates the seismic response of a multi-story frame with and without viscous dampers using the Abaqus software.

The main objective is to compare the structural response in the two cases and investigate how the use of a viscous damper affects horizontal displacement, base shear, and energy dissipation during earthquake loading.

Model Description

The structural model consists of a 7-story frame with 3 spans. The height between consecutive stories is 3 meters.

Two different models are considered in this tutorial: a frame with a viscous damper and a frame without a viscous damper. The results obtained from both models are compared to evaluate the effect of the damper on the seismic response of the structure.

Seven-story frame with viscous damper in Abaqus
Seven-story frame considered in the Abaqus analysis.

Earthquake Loading

The Kobe earthquake is applied at the base of the frame to investigate its response under seismic loading.

The earthquake excitation is used to evaluate the horizontal displacement and base shear of the frame and to investigate the distribution of earthquake energy throughout the structure.

Horizontal Displacement

The horizontal displacement of the frame is obtained for both the model with a viscous damper and the model without a viscous damper.

The comparison of the results shows that the use of a viscous damper reduces the horizontal displacement of the frame under earthquake loading.

Horizontal displacement of frame with and without viscous damper
Comparison of horizontal displacement for the two frame models.
Horizontal displacement of frame with and without viscous damper
Comparison of horizontal displacement for the two frame models.

Base Shear

The base shear of the frame is also obtained from the Abaqus analysis for both cases.

According to the obtained results, the use of a viscous damper decreases the base shear of the frame during the earthquake.

Base shear of frame with and without viscous damper
Base shear comparison between the frame with and without viscous damper.

Energy Balance

One of the main objectives of this tutorial is to investigate the energy balance equation during earthquake loading. The different forms of energy involved in the analysis are obtained from Abaqus and compared for the two structural models.

The external work represents the energy introduced into the structure by the earthquake. This energy is distributed among kinetic energy, strain energy, plastic dissipation, viscous dissipation, and frictional dissipation.

Energy components for frame with viscous damper
Energy components for the frame with a viscous damper.

Energy Dissipation with Viscous Damper

When a viscous damper is used, a significant portion of the earthquake energy is absorbed through viscous dissipation. Therefore, less energy is converted into plastic deformation of the structural members.

The viscous damper dissipates a considerable amount of the energy introduced into the structure by the earthquake.

Energy components for frame without viscous damper
Energy components for the frame with a viscous damper.

Energy Dissipation Without Viscous Damper

In the model without a viscous damper, a larger portion of the earthquake energy is converted into plastic dissipation.

In other words, more of the earthquake energy is consumed through deformation and plastic behavior of the structural members.

Energy components for frame without viscous damper
Energy components for the frame without a viscous damper.

Energy Components in Abaqus

The following energy quantities are used to investigate the energy balance of the structure:

  • ALLFD – Frictional dissipation
  • ALLKE – Kinetic energy
  • ALLPD – Plastic dissipation
  • ALLSE – Strain energy or elastic strain energy
  • ALLVD – Viscous dissipation or energy absorbed by damper
  • ALLWK – External work

Internal Energy

The internal energy of the structure is also investigated in this tutorial. The internal energy is obtained from the sum of the strain energy and plastic dissipation:

Internal Energy = Strain Energy + Plastic Dissipation

In Abaqus, these quantities correspond to ALLSE and ALLPD, respectively.

Internal energy equation in Abaqus
Internal energy and its components.

What You Will Learn

  • How to model a multi-story frame in Abaqus.
  • How to model a viscous damper in a structural frame.
  • How to analyze a frame with and without a viscous damper.
  • How to apply earthquake loading to a structural model.
  • How to use the Kobe earthquake record in Abaqus.
  • How to obtain the horizontal displacement of the frame.
  • How to obtain the base shear of the structure.
  • How to investigate the energy balance of a structure.
  • How to extract kinetic energy from Abaqus.
  • How to extract strain energy from Abaqus.
  • How to obtain plastic and viscous dissipation.
  • How to calculate internal energy from Abaqus results.
  • How to compare the energy dissipation of frames with and without dampers.

Key Features

  • Seven-story, three-span structural frame.
  • Story height of 3 meters.
  • Frame with viscous damper.
  • Frame without viscous damper.
  • Kobe earthquake loading.
  • Horizontal displacement comparison.
  • Base shear comparison.
  • Energy balance analysis.
  • Kinetic energy (ALLKE).
  • Strain energy (ALLSE).
  • Plastic dissipation (ALLPD).
  • Viscous dissipation (ALLVD).
  • Frictional dissipation (ALLFD).
  • External work (ALLWK).
  • Internal energy calculation.
  • Free Abaqus tutorial.
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
Numerical Results
Results extracted from the Abaqus analysis
📊 Excel
Steel Materials
Material data for St-37
📊 Excel
Earthquake Records
Kobe earthquake
🎥 Video
Full Video
Step-by-step explanation of the project

Project Information

Important information about this project

🎥
Video Tutorial Available
📦
Project Type Free Tutorial
💻
Abaqus Version Abaqus 2017
🌐
Language English
📥
Access Free

Payment & Support

Need help with this tutorial?

🎓

Free Tutorial

This Abaqus tutorial is available free of charge.

✉️

Need Help?

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

saeedofmoeini@gmail.com

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