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Related lectures (24)
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Hydropower: Physics, Turbines, and Integration
Explores the physics of hydropower, turbine types, system integration, and future potential.
Hydraulic Transients of Turbines: Hydroacoustic Modeling
Explores hydraulic turbine modeling, stability, and historical development, emphasizing the selection criteria for Francis turbines.
Hydraulic Machines: Types and Applications
Covers the main types of hydraulic machines, focusing on hydraulic turbines and their operational principles.
Three-Phase Systems Introduction
Covers three-phase electrical systems, energy generation methods, hydroelectric power plants, turbines, wind energy, and nuclear power plants.
Introduction to Turbomachines: Hydropower and Historical Development
Introduces turbomachines, focusing on hydropower systems and their historical development.
Hydropower Innovations: Water Turbines and Pump-Turbines
Covers the importance of water turbines and pump-turbines in advancing hydropower technology and sustainability.
Gas Turbines and Combined Cycles
Explores gas turbines, efficiency, and combined cycles, emphasizing optimization for enhanced performance.
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Thermodynamics: Energy Conversion in Engines and Cycles
Explores thermodynamics principles in energy conversion systems, focusing on engine cycles and efficiency calculations.
Turbomachines: Design and Operation
Explores the design and operation of turbomachines, emphasizing compressors and turbines, efficiency calculations, and various applications.
Energy Conservation in Turbomachinery: Key Principles and Applications
Covers energy conservation principles in turbomachinery, focusing on the Bernoulli equation and its applications in real-world scenarios.
CO2 Capture and Storage: Concepts and Processes
Explores CO2 capture and storage methods, challenges, and solutions in power plants and industrial processes.
Liquid Bi-propellant Propulsion Systems: Fundamentals and Architectures
Covers the fundamentals of liquid bi-propellant propulsion systems and their operational architectures.
Renewable Energy Systems: Thermodynamics and Applications
Provides an overview of renewable energy systems, focusing on thermodynamic principles and their applications in energy conversion technologies.
Thermodynamic Cycles: Efficiency and Optimization
Explores thermodynamic cycles, focusing on Rankine cycle efficiency and optimization strategies for mechanical power production.
Reservoirs and Dams: Hydraulic Construction and Sizing
Explores sizing reservoirs and dams using cumulative flow curves and tank dimensioning for dry and rainy periods.
Coal Power Plants: Generation and Efficiency
Explores coal power plants' thermal energy generation, efficiency, and emission treatment technologies.
Geothermal Energy Systems: Principles and Applications
Provides an overview of geothermal energy systems, covering thermodynamic principles, heat pump technologies, and the classification of geothermal reservoirs.
Geothermal Energy: Power Generation and Applications
Explores geothermal power generation, efficiency evolution, concentrated solar power, and refrigeration systems.
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