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Vapor-compression refrigeration
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Mechanical engineering
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Related lectures (31)
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Entropy and Second Law
Explores entropy calculations for reversible and irreversible processes, emphasizing the increase in total entropy for irreversible transformations.
Energy Conservation and Thermodynamic Cycles
Explores energy conservation in closed systems and the significance of thermodynamic cycles, emphasizing performance and efficiency.
Stirling Cycle
Explores the Stirling cycle, a thermodynamic process with continuous combustion and versatile fuel options, suitable for refrigeration and heat pump applications.
Vapor-Liquid Phase Diagrams: Applications in Separation Processes
Explains vapor-liquid phase diagrams and their role in designing separation processes, including practical applications in biofuel concentration.
Thermodynamics: Energy Conversion in Engines and Cycles
Explores thermodynamics principles in energy conversion systems, focusing on engine cycles and efficiency calculations.
Untitled
Energy Conversion Systems: Composite Curves
Explains the use of composite curves in defining energy conversion systems and optimizing efficiency in industrial processes.
Compressor Performance: Efficiency and Volumetric Modulation
Explores compressor efficiency, suction volume modulation, and injected compressors for heat pumps.
Stirling Cycle: Principles and Calculations
Explores the Stirling cycle, its efficiency, practical implementation, historical context, and modern applications in refrigeration technology.
Two-Phase Flow and Heat Transfer: Fundamentals
Covers the basics of two-phase flow and heat transfer in various applications.
Leidenfrost Phenomenon: Experimental Observations and Analysis
Explores the Leidenfrost phenomenon through experimental observations, vapor flow dynamics, and film thickness variations on hot surfaces.
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