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Lecture
Heat Recovery Optimization
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Related lectures (32)
Introduction to Heat Exchangers
Explores heat transfer mechanisms and the design of heat exchangers for various applications.
Heat Recovery Principles: Maximizing Efficiency
Explores maximizing heat recovery potential in industrial processes through the plus and minus principle.
Microscopic Heat Transport: Modes and Laws
Explores microscopic heat transport modes and laws, including Fourier's law and Newton's law, highlighting thermal conductivity principles.
Overall Heat Transfer Coefficient
Explores heat transfer mechanisms, thermal resistances, and heat exchanger design.
Effectiveness-NTU Method
Covers the Effectiveness-NTU method for analyzing heat exchangers and determining the highest heat transfer.
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 Transfer Fundamentals
Covers the fundamentals of heat transfer, including radiative properties, boundary layer theory, and Prandtl number.
Heat Exchanger Networks: Pinch Analysis
Explores the integration of heat pumps in heat exchanger networks using the pinch point method to optimize heat recovery.
DTmin Optimization Theory
Explores delta T minimum optimization for heat recovery efficiency projects.
Heat Transfer Fundamentals
Explores the fundamentals of heat transfer, including radiation, convection, and conduction, emphasizing boundary layers and Nusselt numbers.
Heat Transfer Interfaces: Pinch Point Analysis
Analyzes heat transfer interfaces, pinch points, and energy optimization strategies in unit operations, emphasizing the importance of optimizing heat pump placement.
Radiative Exchange in Heat Transfer: View Factors and Properties
Discusses radiative exchange principles, focusing on view factors and their applications in heat transfer calculations.
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