This textbook provides engineers with the capability, tools and
confidence to solve real-world heat transfer problems. It includes
many advanced topics, such as Bessel functions, Laplace transforms,
separation of variables, Duhamel's theorem and complex combination,
as well as high order explicit and implicit numerical integration
algorithms. These analytical and numerical solution methods are
applied to topics not considered in most textbooks. Examples
include heat exchangers involving fluids with varying specific
heats or phase changes; heat exchangers in which axial conduction
is a concern; and regenerators. Derivations of important results
are presented completely, without skipping steps, which reduces
student frustration and improves readability and retention. The
examples are not trivial 'textbook' exercises; they are rather
complex and timely real-world problems that are inherently
interesting. This book integrates the computational software
packages Maple, MATLAB (R), FEHT and Engineering Equation Solver
(EES) directly with the heat transfer material.
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