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Lecture
Two-Phase Flow and Heat Transfer
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Condensation and Heat Transfer
Covers condensation, heat transfer, Nusselt solution, correlations, simplified equations, mass flux, Nusselt numbers, flow regimes, different geometries, Reynolds number effects, thin films behavior, and thermal transfer intensification.
Heat Transfer Fundamentals
Introduces heat transfer principles, including conduction, convection, and radiation, as well as momentum conservation and fluid viscosity.
Heat Transfer in Microreactors
Explores heat transfer in microreactors, focusing on micro-channels and geometries.
Heat Transfer in Microreactors
Explores heat transfer in microreactors, covering Nusselt numbers, channel geometries, and thermal sensitivity analysis.
Introduction to Free Convection: Governing Equations
Explores free convection, laminar flow boundary layer equations, and heat transfer principles.
Condensation Systems: Heat Transfer & Phase Changes
Explores the significance of condensation in industrial applications, focusing on heat removal by phase changes and condensation on vertical surfaces.
Heat Transfer: Convection and Boundary Layer
Explores convection, boundary layer, Nusselt number, and heat exchange in fluid flow.
Transport Effects in Heterogeneous Catalysis
Explores transport effects in heterogeneous catalysis, emphasizing the impact of mass transfer on reaction kinetics and mechanisms.
Thermal Bridges in Building Technology
Explores the physics of thermal bridges and heat transfer in building elements, emphasizing energy efficiency.
Internal Forced Convection: Hydrodynamic Aspects
Covers the hydrodynamic and thermal aspects of internal forced convection.