MTU Cork Library Catalogue

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Fundamentals of momentum, heat, and mass transfer / James R. Welty, Charles E. Wicks and Robert E. Wilson.

By: Welty, James R.
Contributor(s): Wicks, Charles E | Wilson, Robert E.
Material type: materialTypeLabelBookPublisher: New York ; Chichester : Wiley, 1984Description: xxii, 803 p. ; 23 cm + pbk.ISBN: 0471886653 .Subject(s): Fluid mechanics | Heat -- TransmissionDDC classification: 660.28427
Contents:
Concepts and definitions -- Fluid statics -- Description of a fluid in motion -- Conservation of mass: Control volume approach -- Newton's second law of motion: Control volume approach -- Conservation of energy: Control volume approach -- Shear stress in laminar flow -- Analysis of a differential fluid element in laminar flow -- Differential equations of fluid flow -- Inviscid fluid flow -- Dimensional analysis -- Viscous flow -- The effect of turbulence on momentum transfer -- Flow in closed conduits -- Fundamentals of heat transfer -- Differential equations of heat transfer -- Steady-state conduction -- Unsteady-state conduction -- Convective heat transfer -- Convective heat-transfer correlations -- Boiling and condensation -- Heat-transfer equipment -- Radiation heat transfer -- Fundamentals of mass transfer -- Differential equations of mass transfer -- Steady-state molecular diffusion -- Unsteady-state molecular diffusion -- Convective mass transfer -- Interphase mass transfer -- Convective mass-transfer correlations -- Mass-transfer equipment.
Holdings
Item type Current library Call number Copy number Status Date due Barcode Item holds
General Lending MTU Bishopstown Library Lending 660.28427 (Browse shelf(Opens below)) 1 Available 00020483
General Lending MTU Bishopstown Library Lending 660.28427 (Browse shelf(Opens below)) 1 Available 00083658
Total holds: 0

Includes bibliographical references and indexes.

Concepts and definitions -- Fluid statics -- Description of a fluid in motion -- Conservation of mass: Control volume approach -- Newton's second law of motion: Control volume approach -- Conservation of energy: Control volume approach -- Shear stress in laminar flow -- Analysis of a differential fluid element in laminar flow -- Differential equations of fluid flow -- Inviscid fluid flow -- Dimensional analysis -- Viscous flow -- The effect of turbulence on momentum transfer -- Flow in closed conduits -- Fundamentals of heat transfer -- Differential equations of heat transfer -- Steady-state conduction -- Unsteady-state conduction -- Convective heat transfer -- Convective heat-transfer correlations -- Boiling and condensation -- Heat-transfer equipment -- Radiation heat transfer -- Fundamentals of mass transfer -- Differential equations of mass transfer -- Steady-state molecular diffusion -- Unsteady-state molecular diffusion -- Convective mass transfer -- Interphase mass transfer -- Convective mass-transfer correlations -- Mass-transfer equipment.

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