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Apprenez de nouveaux concepts auprès d'experts du secteur
Acquérez une compréhension de base d'un sujet ou d'un outil
Développez des compétences professionnelles avec des projets pratiques
Obtenez un certificat professionnel partageable
Il y a 4 modules dans ce cours
This bridge engineering course equips you to transform bridge concepts into reality. It explores bridge types and their suitability for various applications. You'll delve into bridge history, appreciating how past designs influence modern practices. The course emphasizes the roles of bridge components: the superstructure and the substructure in ensuring stability and functionality.
Moving forward, you'll explore conceptual bridge design. This involves analyzing the landscape where the bridge will be built, considering factors like soil conditions, traffic flow, and environmental impact. Conducting thorough investigations is crucial to ensure the bridge can withstand the elements. The course also explores how aesthetics play a role in bridge design.
Bridges are designed to endure various forces. The course explores design considerations for dead load, live load, wind, temperature changes, water currents, and even potential accidents. By the end, you'll be able to design bridges strong enough to handle these forces.
The final leg of the course delves into the engineering calculations that ensure a bridge's structural integrity. You'll be introduced to analysis methods like traditional hand calculations and advanced computer software. Techniques like grillage analysis will be explored. This equips you to analyze and design bridges that can withstand everyday use.
By completing this course, you'll gain a comprehensive understanding of the entire bridge-building process, from concept to analysis. This knowledge is valuable for careers in bridge engineering, construction, or any field where understanding structures is important.
Delve into the world of bridge engineering in this introductory module! We'll explore the history of bridges, how they're classified by material, form, use, and more. We'll break down the key components that make up a bridge, from its main structure to its safety features. By the end, you'll have the ability to identify the different components and types of bridges.
Inclus
12 vidéos1 devoir
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12 vidéos•Total 105 minutes
About the Specialization•3 minutes
About the Course•2 minutes
Introduction•10 minutes
What is a Bridge?•11 minutes
Historical Development•6 minutes
Type of Bridges - Based on Material•13 minutes
Type of Bridges - Based on Structural Form•14 minutes
Type of Bridges - Based on Usage•6 minutes
Type of Bridges - Based on Span and support•8 minutes
Type of Bridges - Based on alignment and deck•8 minutes
Components of Bridges•13 minutes
Auxilliary Components of Bridges•12 minutes
1 devoir•Total 30 minutes
Assessment on Introduction to Bridge Engineering•30 minutes
Conceptual Design of Bridges
Module 2•2 heures à terminer
Détails du module
We'll delve into the intricate process of bringing a bridge from concept to reality. We'll explore the planning stages, analyzing factors like site characteristics, traffic flow, and environmental impact. Detailed investigations into soil conditions, water currents, and wind conditions ensure a safe and durable structure. Then, we'll dive into the design phase, considering bridge type, functionality, and even aesthetics. Finally, we'll cover the meticulous execution process, from construction planning to testing and commissioning. By the end of this module, you'll be able to explain the journey a bridge takes in the stage of planning.
Inclus
9 vidéos1 devoir
Afficher les informations sur le contenu du module
9 vidéos•Total 65 minutes
Bridge planning, stages in planning, design and execution•8 minutes
Important steps in Planning of a River Bridge•3 minutes
Important steps in Planning of viaducts for Rail based transit systems•3 minutes
Functional and other design requirements•7 minutes
Geometrical aspects-As per IRC Codes/ Design Manuals•4 minutes
1 devoir•Total 30 minutes
Assessment on Conceptual Design of Bridges•30 minutes
Design Loads on Bridges
Module 3•3 heures à terminer
Détails du module
Dive into the world of bridge design by understanding the forces they have to withstand! The module explores various types of loads, from permanent loads to dynamic loads. We'll analyze how these loads are combined for design purposes, following IRC guidelines. You'll learn about specific loads for highway, railway, and pedestrian bridges, including construction phase considerations. Thermal effects, water current forces, and accidental impacts are factored in. By the end, you'll be equipped to design bridges that can handle the full spectrum of forces they'll encounter throughout their lifespan.
Inclus
17 vidéos1 devoir
Afficher les informations sur le contenu du module
17 vidéos•Total 155 minutes
Types of Loads•6 minutes
Load combinations: Principles and IRC recommendations•6 minutes
Permanent Loads-Dead Load and Super imposed dead load, WC•12 minutes
Live Load - Highway Bridges-Vehicles and lanes•14 minutes
Live Load - Railway and Metro Bridges- Axles loads, gauge types•10 minutes
Live Load -Surcharge, Braking and Traction, Pedestrian / Footpath•12 minutes
Live Load - Construction stage•4 minutes
Thermal Loads•7 minutes
Seismic Loads Part 1•14 minutes
Seismic Loads Part 2•13 minutes
Forces due to Water Current•8 minutes
Wind Loads Part 1•6 minutes
Wind Loads Part 2•15 minutes
Accidental Loads - Vehicle Collision and Barge Impact•8 minutes
Creep and shrinkage•6 minutes
Settlement effects•3 minutes
1 devoir•Total 30 minutes
Assessment on Design Loads on Bridges•30 minutes
Structural Analysis
Module 4•1 heure à terminer
Détails du module
We'll delve into the calculations that ensure a bridge's strength. We'll explore various analysis methods, from traditional hand calculations like Pigeaud's method for slabs to advanced computer-aided tools like Finite Element Analysis (FEM). You'll learn about grillage analysis, which breaks down a bridge deck into a network of beams to understand load distribution. We'll also tackle examples using grillage analysis for different bridge configurations like slab bridges and slab & beam bridges. By the end, you'll possess a strong foundation for analyzing and designing bridges that can withstand various stresses and strains.
Inclus
8 vidéos1 devoir
Afficher les informations sur le contenu du module
8 vidéos•Total 47 minutes
Introduction & Types of Analysis Methods•6 minutes
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Excellent Learning on Bridge planning, design and monitoring.. It caters the learners need in the planning and design field of bridge.
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