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There are 4 modules in this course
This course offers a comprehensive examination of the critical components and design principles involved in hydropower engineering. Key topics include storage zones within reservoirs and water level control, forces impacting gravity dams, and hydraulic design principles for dams, barrages, and desilting basins. The course also addresses basic design requirements and procedures for embankment dams. The learners will explore water conductor systems, power intake structures, and methods for hydraulic and structural analysis of these components. The course covers the design of head race tunnels, including considerations for economic diameter, structural integrity, and seepage control. Additionally, the course delves into surge tanks, surge shafts, and surge chambers, focusing on hydraulic and structural design principles. Penstocks and pressure shafts are discussed, including classifications, design load conditions, and design procedures. The course also covers the design of turbine and generator floors, stability analysis of powerhouse structures, and considerations for underground powerhouses.
Target Learners:
Undergraduate students of Civil Engineering
Post-Graduate Students of Integrated Water Resources Management
Post-Graduate Students of Structural Engineering
Faculties of Civil Engineering Domain
Working Professionals in the above domain & other aspiring learners
Pre-requisites:
Fundamental knowledge on Fluid Mechanics, Applied Hydraulics, Water Resources Engineering
Exposure to Indian codal standards
This module outline focuses on the hydraulic and structural design considerations essential for headworks and structural components. It begins with an examination of storage zones and reservoir control levels, followed by an analysis of the forces acting on gravity dams and the general hydraulic design principles for dams. The module then delves into the specific hydraulic design aspects of barrages and desilting basins, covering both foundational requirements and detailed procedures. Finally, it addresses the basic design requirements and procedures for embankment dams, providing a comprehensive overview of dam design and hydraulic engineering.
What's included
6 videos1 assignment3 plugins
Show info about module content
6 videos•Total 56 minutes
About the Specialization•2 minutes
About the Course•3 minutes
Storage zones and reservoir control levels in a dam•6 minutes
Forces acting on garvity dams •15 minutes
Hydraulic Design of Dams•21 minutes
Basic Design Requirements of Embankment Dams •9 minutes
1 assignment•Total 30 minutes
Assessment on Design of Headworks, Desiliting Basin & Embankment Dam•30 minutes
3 plugins•Total 45 minutes
Hydraulic design for barrage •15 minutes
Hydraulic Design for Desilting Basin•15 minutes
Embankment dam - design procedures•15 minutes
Analysis and Design of power intake structures
Module 2•2 hours to complete
Module details
This module focuses on the critical components and analyses related to water intake in hydropower systems. It begins with an overview of the water conductor system. The module then delves into the design and function of power intake structures, followed by a detailed exploration of hydraulic analysis. Finally, it addresses the stability and structural analysis of power intake structures ensuring their integrity under various operational loads. This comprehensive approach ensures a thorough understanding of power intake design and performance.
What's included
7 videos1 assignment
Show info about module content
7 videos•Total 97 minutes
Water conductor system•5 minutes
Power intake structures •22 minutes
Hydraulic analysis of power intake - Part I•16 minutes
Hydraulic analysis of power intake - Part II•19 minutes
Stability and structural analysis of power intake - Part I•10 minutes
Stability and structural analysis of power intake - Part II•10 minutes
Stability and structural analysis of power intake - Part III•16 minutes
1 assignment•Total 30 minutes
Assessment on Analysis and Design of power intake structures•30 minutes
Design of Head Race Tunnel & Surge Shaft
Module 3•2 hours to complete
Module details
This module focuses on the design and construction aspects of head race tunnels and surge systems in hydropower projects. It covers the determination of the economic diameter for head race tunnels, their structural design, and methods for seepage control. The module also addresses the excavation and rock support systems necessary for tunnel construction. It further delves into the design of surge systems, including surge tanks, the hydraulic design of surge shafts, and the structural design of surge chambers, providing a comprehensive overview of these critical components in hydropower infrastructure.
What's included
3 videos1 assignment4 plugins
Show info about module content
3 videos•Total 31 minutes
Economic diameter of head race tunnel•8 minutes
Excavation and rock support system in head race tunnel•16 minutes
Surge tank•8 minutes
1 assignment•Total 30 minutes
Assessment on Design of Head Race Tunnel & Surge Shaft•30 minutes
4 plugins•Total 60 minutes
Structural design of head race tunnel •15 minutes
Seepage control in head race tunnel•15 minutes
Hydraulic design of surge shaft •15 minutes
Structural design of surge chambers•15 minutes
Design of pressure shaft and Powerhouse
Module 4•3 hours to complete
Module details
This module outline focuses on the design and structural analysis of penstocks, pressure shafts, and powerhouses in hydropower projects. It covers the classifications and design load conditions for penstocks, including pressure rise calculations and loads for both underground and surface installations. The module details the design procedures for pressure shafts and pipes, followed by the structural design of turbine and generator floors, including data collection, load combinations, and stability analysis. It further addresses the design considerations for underground powerhouses, covering superstructure and substructure design, as well as the management of joints and flood protection, providing a comprehensive overview of these critical structural elements.
What's included
4 videos1 assignment9 plugins
Show info about module content
4 videos•Total 32 minutes
Penstocks, Classifications and Design Load Conditions•10 minutes
Pressure rise calculation•5 minutes
Underground Powerhouse•6 minutes
Superstructure Design•11 minutes
1 assignment•Total 30 minutes
Assessment on Design of pressure shaft and Powerhouse•30 minutes
9 plugins•Total 135 minutes
Design Loads For Underground Pressure Shafts•15 minutes
Design Procedures of Pressure Shaft and Pressure Pipe•15 minutes
Design Loads in Surface and Buried Penstock•15 minutes
Turbine and Generator Floor•15 minutes
Design Steps and Data Collection•15 minutes
Design Loads and Design Load ombination•15 minutes
Stability Analysis of the Powerhouse Structure•15 minutes
Substructure Design •15 minutes
Joints in Powerhouse and Flood Protection •15 minutes
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Larsen & Toubro popularly known as L&T is an Indian Multinational conglomerate. L&T has over 8 decades of expertise in executing some of the most complex projects including the World's tallest statue - the Statue of Unity. L&T has a wide portfolio that includes engineering, construction, manufacturing, realty, ship building, defense, aerospace, IT & financial services. L&T EduTech is a e learning platform within the L&T Group, that offers courses that are curated & delivered by industry experts.
In the world of engineering and technology, change and advancements are happening at the speed of light. Academia needs to keep pace with this change and career professionals need to adapt. This is the need gap L&T EduTech will fill. The vision for L&T EduTech is to be the bridge between academia and industry, between career professionals and ever-changing technology. L&T EduTech firmly believes that, only when these need gaps are filled, will we have truly empowered and knowledgeable workforce that will lead India in the future.
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