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Lecture
Heat Transfer from Extended Surfaces: Fins
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Forced-Free Convection: Recap and Concepts
Covers the recap of forced and free convection, including the definition of convection and the general procedure to determine the convection coefficient.
Internal Forced Convection
Explores internal forced convection, covering convection coefficients, velocity profiles, and energy balances in pipes.
Overall Heat Transfer Coefficient
Explores heat transfer mechanisms, thermal resistances, and heat exchanger design.
Real Surfaces: Example
Covers exercises on surface radiative properties, including spectral absorptivity, reflectivity, emissivity, and temperature changes.
Classical Size Effects: Transport Parallel to Boundaries
Explores classical size effects in energy transport parallel to boundaries, emphasizing kinetic and thermal energy characteristics.
Transient Heat Diffusion: Lumped Capacitance Model
Introduces the lumped capacitance model for solving transient heat conduction under convective cooling, emphasizing the importance of the Biot number.
Forced Boiling: Internal Flow
Covers forced boiling, focusing on internal flow, heat transfer, and critical heat flux.
Heat Exchangers: Fundamentals and Applications
Explores the fundamentals of heat exchangers, including conduction, convection, and temperature profiles, with practical examples.
Heat Diffusion with Heat Sources
Explores heat diffusion in 1D steady-state conduction with heat sources and discusses thermal resistance and Kirchhoff's laws.
Condensation Correlations
Explores condensation principles, including fluid motion factors and correlations for convection coefficients in different scenarios.