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Related lectures (31)
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Combustion: Fundamentals and Applications
Explores combustion fundamentals, heat sources, fuel origins, environmental impact, fuel composition, boiler efficiency, and heat recovery.
Electrochemical Thermodynamics: Efficiency and Potentials
Explores electrochemical thermodynamics, efficiency, potentials, and their practical applications in fuel cells and non-standard conditions.
Cogeneration Benefits: Marginal Efficiencies and Substitution
Explores the benefits of cogeneration, emphasizing marginal efficiencies and the substitution of heat and electricity.
Energy Conversion Systems: Composite Curves
Explains the use of composite curves in defining energy conversion systems and optimizing efficiency in industrial processes.
Heat Capacity and Degrees of Freedom in Thermodynamics
Covers heat capacity, degrees of freedom, and their implications in thermodynamics.
Carnot Cycle: Rankine Cycles and Water Applications
Explores the Carnot cycle, Rankine cycles, and water applications in energy conversion.
Rankine Cycles: Basics and Energy Balances
Covers the basic concept of Rankine cycles, energy balances, improvements, and limitations.
Cogeneration: Introduction
Covers the working principle and benefits of cogeneration in replacing conventional technologies and achieving potential savings.
Radiative Exchange in Heat Transfer: View Factors and Properties
Discusses radiative exchange principles, focusing on view factors and their applications in heat transfer calculations.
Closing the Energy Balance: Process Integration Techniques
Covers methods for closing the energy balance in industrial processes through utility integration and optimization techniques.