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Lecture
Heat Recovery in Industrial Processes
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Closing the Energy Balance: Process Integration Techniques
Covers methods for closing the energy balance in industrial processes through utility integration and optimization techniques.
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.
Energy Conversion Systems: Composite Curves
Explains the use of composite curves in defining energy conversion systems and optimizing efficiency in industrial processes.
Heat Recovery Principles: Maximizing Efficiency
Explores maximizing heat recovery potential in industrial processes through the plus and minus principle.
Heat Recovery in Process Units
Explores heat recovery in process units, emphasizing energy efficiency and the use of heat exchangers to optimize heat distribution.
Heat Pumps: Thermodynamic Cycles and Efficiency
Explores heat pumps, thermodynamic cycles, energy balance, and efficiency in heating and cooling systems.
Heat Transfer Analysis in Process Units
Explores heat transfer analysis in process units, emphasizing the importance of balancing mass and energy for optimizing energy efficiency.
Heat Recovery in Process Units
Explores heat recovery, heat exchanger calculation, and pinch analysis for energy optimization.
Geothermal Energy: Power Generation and Applications
Explores geothermal power generation, efficiency evolution, concentrated solar power, and refrigeration systems.
Renewable Energy Systems: Thermodynamics and Applications
Provides an overview of renewable energy systems, focusing on thermodynamic principles and their applications in energy conversion technologies.