Heat Transfer (13): Transient heat conduction, lumped heat capacity model and examples
14
Heat Transfer (14): Transient heat conduction, approx. solution model (spatial effects) and examples
15
Heat Transfer (15): Introduction to radiation heat transfer, blackbodies, blackbody examples
16
Heat Transfer (16): Radiation heat transfer surface properties (reflectivity, transmissivity, etc.)
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Heat Transfer (17): Radiation heat transfer surface properties examples
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Heat Transfer (18): View factors, simple view factor examples
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Heat Transfer (19): 2D and 3D view factors, 2D and 3D view factor examples
20
Heat Transfer (20): Surface and space resistances, radiation network models and examples
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Heat Transfer (21): Radiation network examples
22
Heat Transfer (22): Radiation heat shields and examples, hypothetical surfaces and examples
23
Heat Transfer (23): Convection heat transfer over external surfaces, flat plate analysis
Description:
Explore the fundamental principles and applications of heat transfer in this comprehensive 17-hour course. Delve into the three main modes of heat transfer: conduction, convection, and radiation. Learn to perform energy balance calculations, analyze heat diffusion equations, and solve problems involving various geometries and materials. Master techniques for handling 1D and 2D conduction, extended surfaces (fins), and transient heat conduction. Investigate radiation heat transfer, including blackbody concepts, surface properties, view factors, and radiation network models. Examine convection heat transfer over external surfaces, with a focus on flat plate analysis. Apply these concepts through numerous examples and problem-solving exercises throughout the course.