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Aerospace Heat Sink
 Boundary Value Problems of Heat Conduction by M. Necati Ozisik, Intended for a first-year graduate course in heat transfer, including topics relevant to aerospace engineering and chemical and nuclear engineering, this hardcover book deals systematically and comprehensively with modern mathematical methods of solving problems in heat conduction and diffusion. Chapter One offers exceptionally precise coverage of heat flux as a vector, derivation of the conduction equations, integral-transform technique and coordinate transformations. Chapter Two through Four deal with problem characteristics peculiar to cartesian, cylindrical and spherical coordinates. Chapter Five discusses the application of Duhamel's method and a comparison with the integral-transform technique, including the use of Green's function in solving boundary-value problems. Chapter Six covers the solution of heat-conduction problems in one-dimensional composite slabs, cylinders and spheres. Chapter Seven discusses the integral method of solution of nonlinear conduction problems involving temperature-dependent thermal properties, a change of phase and irregular geometries. Chapter Eight applies a number of useful transformations in the solution of nonlinear boundary value problems of heat conduction. Chapter Nine introduces numerical techniques such as the finite differences and the Monte-Carlo method. Chapter Ten treats anisotropic solids using the resistivity and conductivity tensors. Each chapter includes illustrative examples and problems, and there are a number of helpful appendices that will prove handy in solving problems. Selected references at the end of each chapter and a carefully prepared index further enhance the value of this volume as a textbook and a practical reference.Unabridged, corrected Dover republication of the edition published by the International Textbook Company, Scranton, Pa., 1968. Preface. Problems. Appendices. 134 line illustrations.
 Design and Analysis of Heat Sinks: Theory and Design by Allan Kraus, This book presents new design techniques that permit an engineer to design devices with predictable results, and in doing so utilize very complex shapes instead of being limited to simple shapes. Includes coverage of the material properties of the devices.
Heat sink - A heat sink is an environment or object capable of absorbing heat from another object with which it is in thermal contact (either direct contact or radiational "contact"). In common use, it is a device made of metal brought into contact with the hot surface of a component (in most cases, some kind of thermal interface material is put between the heat sink and the heat source to increase thermal throughput), such as a microprocessor chip or other power handling semiconductor ... Heat sink (disambiguation) - A heat sink is Heat engine - In engineering and thermodynamics, a heat engine performs the conversion of heat energy to mechanical work by exploiting the temperature gradient between a hot "source" and a cold "sink". Heat is transferred to the sink from the source, and in this process some of the heat is converted into work. Deep lake water cooling - Deep lake water cooling uses cold water pumped from the bottom of a lake as a heat sink for climate control systems. Because heat pump efficiency improves as the heat sink gets colder, deep lake water cooling can reduce the electrical demands of large cooling systems where it is available.
aerospaceheatsink
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