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Theory of Periodic Conjugate Heat Transfer

(Autor)

Buch | Hardcover
XX, 228 Seiten
2011 | 2nd ed. 2012
Springer Berlin (Verlag)
978-3-642-21420-2 (ISBN)
CHF 149,75 inkl. MwSt
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This book presents the theory of periodic conjugate heat transfer in a detailed way. The effects of thermophysical properties and geometry of a solid body on the commonly used and experimentally determined heat transfer coefficient are analytically presented from a general point of view. The main objective of the book is a simplified description of the interaction between a solid body and a fluid as a boundary value problem of the heat conduction equation for the solid body. At the body surface, the true heat transfer coefficient is composed of two parts: the true mean value resulting from the solution of the steady state heat transfer problem and a periodically variable part, the periodic time and length to describe the oscillatory hydrodynamic effects. The second edition is extended by (i) the analysis of stability boundaries in helium flow at supercritical conditions in a heated channel with respect to the interaction between a solid body and a fluid; (ii) a periodic model and a method of heat transfer simulation in a fluid at supercritical pressure and (iii) a periodic quantum-mechanical model for homogeneous vapor nucleation in a fluid with respect to nanoscale effects.

Introduction.- Construction of a general solution of the problem.- Solution of characteristic problems.- Universal algorithm of computation of the factor of conjugation.- Solution of special problems.- Step and non-periodic oscillations of the heat transfer intensity.- Practical applications of the theory.- Wall's thermal effect on hydrodynamic flow stability.- Periodical model of turbulence heat transfer.

Erscheint lt. Verlag 15.9.2011
Reihe/Serie Mathematical Engineering
Zusatzinfo XX, 228 p.
Verlagsort Berlin
Sprache englisch
Maße 155 x 235 mm
Gewicht 515 g
Themenwelt Mathematik / Informatik Mathematik Wahrscheinlichkeit / Kombinatorik
Technik Elektrotechnik / Energietechnik
Technik Maschinenbau
Schlagworte heat conduction equation • Heat transfer coefficient • heat transfer processes book • Hydrodynamic Stability • numerical modeling of heat transfer • parameters of the thermal effect • quantum-mechanical model of heat transfer • Reynolds analogy • Thermophysical properties • thermophysical properties of fluids • Wärmetransport
ISBN-10 3-642-21420-7 / 3642214207
ISBN-13 978-3-642-21420-2 / 9783642214202
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