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Theory of periodic conjugate heat tr...
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Zudin, Yuri B.
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Theory of periodic conjugate heat transfer
Record Type:
Electronic resources : Monograph/item
Title/Author:
Theory of periodic conjugate heat transfer/ by Yuri B. Zudin.
Author:
Zudin, Yuri B.
Published:
Cham :Springer International Publishing : : 2023.,
Description:
xxxvi, 440 p. :ill., digital ;24 cm.
[NT 15003449]:
Introduction -- Construction of a General Solution -- Solution of Characteristic Problems -- Algorithm of Computation of the Factor of Conjugation -- Solution of Special Problems -- Engineering Applications of the Theory -- Wall Thermal Effect on Hydrodynamic Flow Stability -- Liquid Film Evaporation (Landau Instability) -- Hyperbolic Heat Conduction Equation -- Bubbles Dynamics in Liquid -- Taylor bubble (Rise Velocity and Geometric Characteristics) -- Periodical Model of Turbulent Heat Transfer -- Variable Heat Transfer Coefficient (Heat Conduction Problem) -- Model of the Evaporating Meniscus.
Contained By:
Springer Nature eBook
Subject:
Heat - Transmission -
Online resource:
https://doi.org/10.1007/978-3-031-25167-2
ISBN:
9783031251672
Theory of periodic conjugate heat transfer
Zudin, Yuri B.
Theory of periodic conjugate heat transfer
[electronic resource] /by Yuri B. Zudin. - Fourth edition. - Cham :Springer International Publishing :2023. - xxxvi, 440 p. :ill., digital ;24 cm. - Mathematical engineering,2192-4740. - Mathematical engineering..
Introduction -- Construction of a General Solution -- Solution of Characteristic Problems -- Algorithm of Computation of the Factor of Conjugation -- Solution of Special Problems -- Engineering Applications of the Theory -- Wall Thermal Effect on Hydrodynamic Flow Stability -- Liquid Film Evaporation (Landau Instability) -- Hyperbolic Heat Conduction Equation -- Bubbles Dynamics in Liquid -- Taylor bubble (Rise Velocity and Geometric Characteristics) -- Periodical Model of Turbulent Heat Transfer -- Variable Heat Transfer Coefficient (Heat Conduction Problem) -- Model of the Evaporating Meniscus.
An original method of investigation of the conjugate conductive-convective problem of periodic heat transfer is developed. The novelty of the approach is that a particular conjugate problem is replaced by a general boundary-value problem for the heat conduction equation in the solid. Within the framework of the hyperbolic model of thermal conductivity, the effect of self-reinforcement of the degree of conjugation by increasing the period of oscillations is found. The processes of hydrodynamics and heat exchange with periodic internal structure are considered: periodic model of turbulent heat transfer, hydrodynamic instability, bubbles dynamics in liquid, and model of evaporating meniscus. The book is intended as a source and reference work for researchers and graduate students interested in the field of conjugate heat transfer.
ISBN: 9783031251672
Standard No.: 10.1007/978-3-031-25167-2doiSubjects--Topical Terms:
686895
Heat
--Transmission
LC Class. No.: TJ265
Dewey Class. No.: 536.25015118
Theory of periodic conjugate heat transfer
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Introduction -- Construction of a General Solution -- Solution of Characteristic Problems -- Algorithm of Computation of the Factor of Conjugation -- Solution of Special Problems -- Engineering Applications of the Theory -- Wall Thermal Effect on Hydrodynamic Flow Stability -- Liquid Film Evaporation (Landau Instability) -- Hyperbolic Heat Conduction Equation -- Bubbles Dynamics in Liquid -- Taylor bubble (Rise Velocity and Geometric Characteristics) -- Periodical Model of Turbulent Heat Transfer -- Variable Heat Transfer Coefficient (Heat Conduction Problem) -- Model of the Evaporating Meniscus.
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$a
An original method of investigation of the conjugate conductive-convective problem of periodic heat transfer is developed. The novelty of the approach is that a particular conjugate problem is replaced by a general boundary-value problem for the heat conduction equation in the solid. Within the framework of the hyperbolic model of thermal conductivity, the effect of self-reinforcement of the degree of conjugation by increasing the period of oscillations is found. The processes of hydrodynamics and heat exchange with periodic internal structure are considered: periodic model of turbulent heat transfer, hydrodynamic instability, bubbles dynamics in liquid, and model of evaporating meniscus. The book is intended as a source and reference work for researchers and graduate students interested in the field of conjugate heat transfer.
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Mathematics and Statistics (SpringerNature-11649)
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