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Lecture
Combustion: Fundamentals and Applications
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Thermal Machines: Carnot Cycle and Efficiency
Discusses the Carnot cycle, its efficiency, and the principles of thermal machines in thermodynamics.
Closing the Energy Balance: Process Integration Techniques
Covers methods for closing the energy balance in industrial processes through utility integration and optimization techniques.
Energy Conservation and Thermodynamic Cycles
Explores energy conservation in closed systems and the significance of thermodynamic cycles, emphasizing performance and efficiency.
Heat Recovery Principles: Maximizing Efficiency
Explores maximizing heat recovery potential in industrial processes through the plus and minus principle.
Renewable Energy Systems: Thermodynamics and Applications
Provides an overview of renewable energy systems, focusing on thermodynamic principles and their applications in energy conversion technologies.
Heat Transfer Interfaces: Pinch Point Analysis
Analyzes heat transfer interfaces, pinch points, energy optimization, pressure changes, heat cascades, and heat pump efficiency.
Thermodynamic Identities
Explores thermodynamic identities, entropy changes, and thermal machine efficiencies, including Carnot and Otto cycles, heat pumps, and heating methods.
Thermodynamics: Energy Conversion and System Analysis
Covers the basics of thermodynamics, focusing on energy conversion systems and the principles governing heat to work conversion.
Carnot Cycle: Rankine Cycles and Water Applications
Explores the Carnot cycle, Rankine cycles, and water applications in energy conversion.
Electrochemical Thermodynamics: Efficiency and Potentials
Explores electrochemical thermodynamics, efficiency, potentials, and their practical applications in fuel cells and non-standard conditions.