Modelling of convective heat and mass transfer in rotating flows. (2016)
- Record Type:
- Book
- Title:
- Modelling of convective heat and mass transfer in rotating flows. (2016)
- Main Title:
- Modelling of convective heat and mass transfer in rotating flows
- Further Information:
- Note: Igor V. Shevchuk.
- Authors:
- Shevchuk, Igor V
- Contents:
- Preface; Contents; Nomenclature; 1 Overview of Rotating Flows; 1.1 Applications of Rotating Flows; 1.2 Volume Forces and Their Description; 1.3 Differential Equations of Continuity, Momentum, and Heat Transfer; 1.4 Differential Equation of Convective Diffusion; References; 2 Mathematical Modeling of Convective Heat Transfer in Rotating-Disk Systems; 2.1 Differential and Integral Equations; 2.1.1 Navier -- Stokes and Energy Equations in Differential Form; 2.1.2 Differential Equations of the Boundary Layer; 2.1.3 Integral Equations of the Boundary Layer; 2.2 Methods of Solution. 2.2.1 Self-similar Solution2.2.2 Approximate Analytical Methods for Laminar Flow; 2.2.3 Numerical Methods; 2.3 Integral Methods; 2.3.1 Momentum Boundary Layer; 2.3.2 Thermal Boundary Layer; 2.4 Improved Integral Method; 2.4.1 Structure of the Method; 2.4.2 Turbulent Flow: Velocity and Temperature Profiles; 2.4.3 Surface Friction and Heat Transfer; 2.4.3.1 Integral Equations; 2.5 Disk Rotation in a Fluid Rotating as a Solid Body and Simultaneous Accelerating Imposed Radial Flow; References; 3 Free Rotating Disk; 3.1 Laminar Flow; 3.2 Transition to Turbulent Flow; 3.3 Turbulent Flow. 3.3.1 Parameters of the Boundary Layer3.3.2 Surface Heat Transfer: Different Experiments and Solutions; 3.3.3 Effect of Approximation of the Radial Velocity Profile; 3.3.4 Arbitrary Distribution of the Wall Temperature; 3.4 Generalized Analytical Solution for Laminar and Turbulent Flow; 3.5 Finding a Wall TemperaturePreface; Contents; Nomenclature; 1 Overview of Rotating Flows; 1.1 Applications of Rotating Flows; 1.2 Volume Forces and Their Description; 1.3 Differential Equations of Continuity, Momentum, and Heat Transfer; 1.4 Differential Equation of Convective Diffusion; References; 2 Mathematical Modeling of Convective Heat Transfer in Rotating-Disk Systems; 2.1 Differential and Integral Equations; 2.1.1 Navier -- Stokes and Energy Equations in Differential Form; 2.1.2 Differential Equations of the Boundary Layer; 2.1.3 Integral Equations of the Boundary Layer; 2.2 Methods of Solution. 2.2.1 Self-similar Solution2.2.2 Approximate Analytical Methods for Laminar Flow; 2.2.3 Numerical Methods; 2.3 Integral Methods; 2.3.1 Momentum Boundary Layer; 2.3.2 Thermal Boundary Layer; 2.4 Improved Integral Method; 2.4.1 Structure of the Method; 2.4.2 Turbulent Flow: Velocity and Temperature Profiles; 2.4.3 Surface Friction and Heat Transfer; 2.4.3.1 Integral Equations; 2.5 Disk Rotation in a Fluid Rotating as a Solid Body and Simultaneous Accelerating Imposed Radial Flow; References; 3 Free Rotating Disk; 3.1 Laminar Flow; 3.2 Transition to Turbulent Flow; 3.3 Turbulent Flow. 3.3.1 Parameters of the Boundary Layer3.3.2 Surface Heat Transfer: Different Experiments and Solutions; 3.3.3 Effect of Approximation of the Radial Velocity Profile; 3.3.4 Arbitrary Distribution of the Wall Temperature; 3.4 Generalized Analytical Solution for Laminar and Turbulent Flow; 3.5 Finding a Wall Temperature Distribution for Arbitrary Nusselt Numbers; 3.5.1 Solution of the Problem; 3.5.2 The Limiting Case of the Solution; 3.5.3 Properties of the Solution for the Temperature Difference on the Wall; 3.5.4 Analysis of the Solution; 3.6 Theory of Local Modelling. 3.7 Unsteady Heat Transfer3.7.1 Transient Experimental Technique; 3.7.2 Self-similar Equations for Unsteady Convective Heat Transfer; 3.7.3 Cooling of an Isothermal Rotating Disk; 3.7.4 Unsteady Two-Dimensional Heat Conduction in a Non-uniformly Heated Disk; References; 4 Forced External Flow Over a Rotating Disk; 4.1 Rotating Disk in a Fluid Rotating as a Solid Body; 4.1.1 Turbulent Flow; 4.1.2 Laminar Flow; 4.2 Flow Impingement onto an Orthogonal Disk; 4.2.1 Experimental and Computational Data of Different Authors; 4.2.2 Turbulent Flow; 4.2.2.1 Laminar Flow. 4.3 Forced Outward Flow Between Corotating Disks4.3.1 Ekman Layers; 4.3.2 Flow Structure in Forced Outward Flow Between Corotating Disks; 4.3.3 Radial Variation of the Swirl Parameter; 4.3.4 Local Nusselt Numbers; 4.3.5 Effect of the Radial Distribution of the Disk Temperature; References; 5 Heat and Mass Transfer in Rotating Cone-and-Disk Systems for Laminar Flows; 5.1 General Characterization of the Problem; 5.2 Self-similar Navier -- Stokes and Energy Equations; 5.3 Rotating Disk and/or Cone; 5.3.1 Numerical Values of Parameters in the Computations; 5.3.2 Rotating Cone and Stationary Disk. … (more)
- Publisher Details:
- Cham : Springer
- Publication Date:
- 2016
- Extent:
- 1 online resource, illustrations (some color)
- Subjects:
- 536.25
Engineering
Heat -- Transmission -- Mathematical models
Mass transfer -- Mathematical models
Disks, Rotating -- Thermal properties -- Mathematical models
SCIENCE -- Mechanics -- Thermodynamics
Heat -- Transmission -- Mathematical models
Mass transfer -- Mathematical models
Mathematics -- Differential Equations
Technology & Engineering -- Power Resources -- General
Technology & Engineering -- Mechanical
Differential calculus & equations
Energy technology & engineering
Mechanics of fluids
Differential Equations
Hydraulic engineering
Science -- Mechanics -- Dynamics -- Thermodynamics
Engineering thermodynamics
Electronic books
Electronic books - Languages:
- English
- ISBNs:
- 9783319209616
3319209612
3319209604
9783319209609 - Related ISBNs:
- 9783319209609
- Notes:
- Note: Includes bibliographical references.
Note: Online resource; title from PDF title page (Ebsco, viewed July 30, 2015). - Access Rights:
- Legal Deposit; Only available on premises controlled by the deposit library and to one user at any one time; The Legal Deposit Libraries (Non-Print Works) Regulations (UK).
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- Restricted: Printing from this resource is governed by The Legal Deposit Libraries (Non-Print Works) Regulations (UK) and UK copyright law currently in force.
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- Physical Locations:
- British Library HMNTS - ELD.DS.347874
- Ingest File:
- 01_302.xml