This tutorial focuses on the impact of a water column on a
rigid barrier using the Coupled Eulerian-Lagrangian
(CEL) method in the Abaqus software.
The main objective of this simulation is to investigate the behavior
of the water column when it impacts the rigid barrier and to observe
the deformation and turbulence of the water flow during the analysis.
Model Description
The model consists of a water column, a tank, and a rigid
barrier. The water column is modeled using the
Eulerian approach, while the tank and barrier are
modeled as discrete rigid bodies.
Geometry of the water column, tank, and rigid barrier.
Eulerian Modeling of Water
In this model, the water column is simulated using the
Eulerian method. The Eulerian formulation is suitable
for fluid problems involving large deformation and significant
movement of the material.
During the simulation, the water moves through the Eulerian domain
and impacts the rigid barrier.
Water Impact on the Rigid Barrier
After the water column impacts the rigid barrier, the water undergoes
significant deformation and changes its flow pattern.
The simulation captures the interaction between the water and the
rigid barrier and provides a clear visualization of the water flow
during the impact process.
Impact of the water column on the rigid barrier.
Water Flow and Turbulence
One of the important results of this simulation is the observation of
water deformation and turbulence after the impact.
The water flow changes significantly as it interacts with the rigid
barrier, allowing the development of complex flow patterns to be
observed during the analysis.
Deformation and turbulence of the water flow after impact.
Simulation Results
The Abaqus results demonstrate the behavior of the water column during
impact with the rigid barrier. The deformation and turbulence of the
water flow can be clearly observed throughout the simulation.
T=0.46 S.
T=0.93 S.
T=1.62 S.
What You Will Learn
How to model a water column using the Eulerian approach.
How to model a tank as a discrete rigid body.
How to model a rigid barrier as a discrete rigid body.
How to perform a CEL analysis in Abaqus.
How to simulate water impact on a rigid barrier.
How to investigate large deformation of water.
How to observe turbulence and complex water flow patterns.
How to visualize the interaction between water and a rigid barrier.
Key Features
Water column impact on a rigid barrier.
Coupled Eulerian-Lagrangian (CEL) analysis.
Eulerian modeling of the water column.
Discrete rigid modeling of the tank.
Discrete rigid modeling of the barrier.
Large deformation of the water.
Water flow and turbulence.
Visualization of the impact process.
Abaqus CEL simulation.
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
🎥
Video
Full Video
Step-by-step explanation of the project
Project Information
Important information about this project
🎥
Video TutorialAvailable
📦
Project TypeFree Tutorial
💻
Abaqus VersionAbaqus 2017
🌐
LanguageEnglish
📥
AccessFree
Payment & Support
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Free Tutorial
This Abaqus tutorial is available free of charge.
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This tutorial was incredibly clear and detailed! It covered every step thoroughly, making complex concepts easy to understand. Highly recommended for anyone needing guidance on this topic!
Alex
This tutorial was incredibly clear and detailed! It covered every step thoroughly, making complex concepts easy to understand. Highly recommended for anyone needing guidance on this topic!