Sector-specific

BIM. 2D modelling with IBER

Smart Construction. BIM 40 hours

Introduction

The BIM course. 2D modelling with IBER offers you the opportunity to enter a rapidly expanding field with growing demand for skilled workers. The 2D modelling is an essential tool for design and analysis in civil and environmental engineering, enabling you to optimise resources and improve the accuracy of decision-making. Through this course, you will learn how to use the two-dimensional model of HEC-RAS and to carry out advanced flow modelling, as well as to interpret calculations and results effectively. This approach will enable you to acquire valuable technical skills for today’s job market, where efficiency and precision are essential. Furthermore, as this is an online course, you’ll have the flexibility to learn from anywhere, adapting to your own needs and learning pace. Join this course and stand out in a sector that is constantly growing and evolving.

Objectives

- To understand the two-dimensional HEC-RAS model for use in engineering projects.

- Develop skills in 2D modelling using the HEC-RAS software.

- To analyse water flow in two-dimensional models and its impact on the environment.

- Interpret the results of flow models and implement effective solutions.

- To develop skills in calculating flows using advanced digital tools.

- Evaluate the results obtained from the modelling to optimise designs.

- Apply technical knowledge to solve problems relating to hydrographic modelling.

Table of Contents

TEACHING UNIT 1. THE TWO-DIMENSIONAL MODEL OF HEC-RAS

The two-dimensional HEC-RAS model
The digital elevation model in 2D modelling
Creating plots of land with RAS Mapper
Creating geometry data with RAS Mapper
Hydraulic conditions under variable flow conditions

TEACHING UNIT 2. MODELLING WITH HEC-RAS

Creating 2D geometries in HEC-RAS
Hydraulic conditions in two-dimensional modelling using HEC-RAS
Relationships between geometric elements
Hydraulic conditions in two-dimensional modelling using HEC-RAS
2D simulation under variable conditions

TEACHING UNIT 3. INTRODUCTION AND FLOW MODELLING

Introduction to the IBER model and software installation
Hydraulic bases
Setting up the IBER environment
Preparation and import of geometries
Fluid conditions and boundary conditions

TEACHING UNIT 4. CALCULATIONS AND RESULTS

Definition of roughness
Types and methods of meshing
Calculation and interpretation of results
Obtaining cross-sections
Hazard maps

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