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Project Overview

In this Abaqus project, the behavior of a Uboot roof under live and dead loads is simulated and investigated.

The Uboot roof has a length and width of 13 m. The Uboot elements are arranged next to one another at a specified distance to create hollow cavities inside the concrete roof.

Uboot roof model in Abaqus

Uboot roof model developed in Abaqus.

Uboot Roof Configuration

In this model, the Uboot elements are positioned beside one another at a certain distance. Two wire meshes are then placed above and below the Uboot elements, and concrete is finally poured around them.

The Uboot elements create hollow cavities inside the concrete roof. This configuration reduces the amount of concrete required and consequently decreases the weight of the roof.

Uboot elements and wire mesh inside concrete roof

Arrangement of Uboot elements and wire meshes inside the concrete roof.

Concrete Material

The concrete material is defined using the Concrete Damaged Plasticity (CDP) model in Abaqus. This model is used to describe the nonlinear behavior and damage of concrete under the applied loads.

Reinforcement

The roof is reinforced using wire mesh positioned above and below the Uboot elements. The reinforcement material is defined as St-37.

Live and Dead Loads

A Static General analysis step is used to investigate the structural response of the Uboot roof. In this step, the live and dead loads acting on the roof are applied to the model.

Live and dead loads applied to Uboot roof

Arrangement of Uboot elements and wire meshes inside the concrete roof.

Analysis Results

The Abaqus analysis can be used to investigate the structural response of the Uboot roof under the applied loading conditions. The deformation and stress state of the concrete and reinforcement can be evaluated from the simulation results.

What You Will Learn

  • How to model a Uboot roof in Abaqus.
  • How to arrange Uboot elements inside a concrete roof.
  • How to create hollow cavities inside the concrete structure.
  • How to model wire mesh reinforcement.
  • How to define St-37 as the reinforcement material.
  • How to define concrete using the CDP model.
  • How to apply live and dead loads in Abaqus.
  • How to use the Static General analysis step.
  • How to evaluate the structural response of the Uboot roof.

Key Features

  • 13 × 13 m Uboot roof.
  • Uboot elements for creating hollow cavities.
  • Two wire meshes positioned above and below the Uboot elements.
  • Concrete Damaged Plasticity (CDP) model.
  • St-37 reinforcement material.
  • Static General analysis.
  • Live and dead roof loads.
  • Concrete and reinforcement analysis.
  • Abaqus CAE file.
  • Abaqus INP file.
  • Excel file containing material and concrete data.
  • Step-by-step training video.
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
Concrete Material
Concrete material properties used in the Abaqus CDP model
🎥 Video
Full Video
Step-by-step explanation of the project

Project Information

Important information about this project

🎥
Video Duration 42 Minutes
📦
Total File Size 318 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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