Transient Heat Transfer [electronic resource] / by Donatello Annaratone.

Por: Annaratone, Donatello [author.]Colaborador(es): SpringerLink (Online service)Tipo de material: TextoTextoSeries SpringerBriefs in Applied Sciences and Technology; -3Descripción: X, 46p. 18 illus. online resourceISBN: 9783642197772 99783642197772Tema(s): Engineering | Engineering | HYDRAULIC ENGINEERING | ENGINEERING FLUID DYNAMICS | ENGINEERING THERMODYNAMICS, HEAT AND MASS TRANSFERClasificación CDD: 621.4021 Recursos en línea: ir a documento
Contenidos:
Introduction -- General Law of Thermal Conduction -- Heat Diffusion in a Plate of Infinite Thickness -- Heat Diffusion in a Plate of Finite Thickness -- Plate immersed in Fluid -- Plate Heated or Cooled on one Side -- Tube Heated or Cooled on Outside Surface -- Plate Radiated on Both Sides -- Plate Radiated on One Side -- Transient Heat Transfer through a Plane Wall -- Transient Heat Transfer through a Curved Wall (tube).
Resumen: This book presents a new and direct computational method for transient heat transfer. The approach uses the well-known dimensionless Biot number and a second dimensionless number introduced by the author. The methodology allows for a transient heat transfer calculations without using finite difference programs. The book presents many examples and various tables demonstrating the potential of this new methodology. Many diagrams illustrate the physical phenomena.
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Introduction -- General Law of Thermal Conduction -- Heat Diffusion in a Plate of Infinite Thickness -- Heat Diffusion in a Plate of Finite Thickness -- Plate immersed in Fluid -- Plate Heated or Cooled on one Side -- Tube Heated or Cooled on Outside Surface -- Plate Radiated on Both Sides -- Plate Radiated on One Side -- Transient Heat Transfer through a Plane Wall -- Transient Heat Transfer through a Curved Wall (tube).

This book presents a new and direct computational method for transient heat transfer. The approach uses the well-known dimensionless Biot number and a second dimensionless number introduced by the author. The methodology allows for a transient heat transfer calculations without using finite difference programs. The book presents many examples and various tables demonstrating the potential of this new methodology. Many diagrams illustrate the physical phenomena.

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