Sector-specific

Practical Analysis of Structures Using Finite Elements

Civil Engineering and Structures 40 hours

Introduction

The Course: Practical Analysis of Structures Using Finite Elements It’s your gateway to the world of dDesign and structural analysis, a sector that is constantly growing and where demand for labour is on the rise. With advances in technology, the finite element method has become an essential tool for engineers and architects, thereby optimising and ensuring safety in steel and concrete structures. This course will equip you with the skills needed to model and analyse complex structures, assess steel connections and apply structural analogies to planar and volumetric elements. Upon completing this course, you will be prepared to tackle the industry’s current challenges, with knowledge that will set you apart in the job market. Take advantage of the flexibility of the online format to study from anywhere and at your own pace, ensuring you acquire the essential skills for your professional development in the field of structural engineering.

Objectives

- To understand the basic principles of structural analysis of steel structures using the finite element method.

- Apply finite element modelling techniques to concrete structures.

- To identify and analyse metal joints in complex structures.

- Interpret structural analogies using planar and volumetric finite elements.

- To assess the effectiveness of structural models in practical situations.

- Develop skills to optimise structural designs using specialist software.

- Apply finite element concepts to the analysis of various structures.

Table of Contents

TEACHING UNIT 1. FINITE ELEMENT METHOD FOR THE STRUCTURAL ANALYSIS OF STEEL STRUCTURES

Calculation of a metal tank using CYPE3D.
Calculation of a metal tank using STAAD-PRO.
Calculation of a pipe truss/rack using CYPE3D.
Calculation of a pipe truss/rack using STAAD-PRO.
Manual calculation of metal storage tanks and pipe racks/gantries.

TEACHING UNIT 2. FINITE ELEMENT ANALYSIS OF CONCRETE STRUCTURES

Calculation of a concrete slab using STAAD-PRO.
Calculation of a concrete slab using SAP2000.
Calculation of a concrete underpass using SAP2000.
Strut plate floor design using STAAD PRO.
Manual calculation of concrete slabs, concrete frames and hollow-core slabs.

TEACHING UNIT 3. CALCULATION OF METAL JOINTS

Calculation of the lifting of a beam using STAAD-PRO.
Design of a stiffened base plate using STAAD PRO.
Calculation of a bolted joint using SIMULATION.
Calculation of a welded joint using SIMULATION (SOLIDWORKS).
Manual calculation of joints.

TEACHING UNIT 4. STRUCTURAL ANALOGIES. PLANE AND VOLUMETRIC FINITE ELEMENTS

Calculating a bridge girder deck using SIMULATION (SOLIDWORKS).
Calculation of a bridge deck slab using SIMULATION (SOLIDWORKS).
Buckling analysis of a reinforced beam using STAAD PRO.
Calculation of composite beams or beams with mixed cross-sections using SIMULATION (SOLIDWORKS).
Manual calculation

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