Fundamentals of Heat Transfer Part 1
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The next course extends thermodynamic and fluid mechanics analysis by studying heat transfer modes and developing relationships to compute heat transfer rates. The goal of this course is to create the groundwork for the modes of conduction, convection, and radiation. We begin by answering the following questions: What is heat transfer? & How does heat move energy? First and foremost, we wish to assist you in developing an understanding of the underlying concepts and principles that underpin heat transfer processes. Second, we will show how knowledge of heat transfer mechanisms may be used with the first rule of thermodynamics to address challenges in thermal systems engineering.
Furthermore, we shall see how the heat equation, which is based on Fourier’s law and the necessity for energy conservation, may be utilized to calculate the temperature distribution inside a medium under steady-state and transient situations. We also wish to demonstrate how thermal circuits may be utilized to simulate steady-state heat flow in typical geometries such the plane wall, cylinder, sphere, and extended surface (fin). Furthermore, we will tackle transient conduction problems with the lumped capacitance technique, which is useful when a single temperature may be used to define the temporal response of the medium to a boundary change.
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