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Thermal and solutal convection in some hydromagnetic flows
紀錄類型:
書目-語言資料,印刷品 : Monograph/item
正題名/作者:
Thermal and solutal convection in some hydromagnetic flows/ by Nazibuddin Ahmed.
作者:
Ahmed, Nazibuddin.
出版者:
Singapore :Springer Nature Singapore : : 2022.,
面頁冊數:
xix, 199 p. :ill. (some col.), digital ; : 24 cm.;
Contained By:
Springer Nature eBook
標題:
Engineering Thermodynamics, Heat and Mass Transfer. -
電子資源:
https://doi.org/10.1007/978-981-19-7153-2
ISBN:
9789811971532
Thermal and solutal convection in some hydromagnetic flows
Ahmed, Nazibuddin.
Thermal and solutal convection in some hydromagnetic flows
[electronic resource] /by Nazibuddin Ahmed. - Singapore :Springer Nature Singapore :2022. - xix, 199 p. :ill. (some col.), digital ;24 cm.
1. Introduction and Basic Concepts -- 2. MHD Transient Flow with Diffusion-Thermo and Radiation -- 3. MHD Flow with Diffusion-Thermo and Induced Magnetic Field -- 4. MHD Flow with Soret Effect and Induced Magnetic Field -- 5. MHD Flow with Parabolic Conditions and Diffusion-Thermo -- 6. MHD Flow with Radiation, Chemical Reaction, and Diffusion-Thermo -- 7. MHD Flow with Thermal Diffusion, Thermal Radiation, and Chemical Reaction -- 8. Natural Convection in Transient MHD Dissipative Flow -- 9. MHD Radiating Flow with Thermal Diffusion, and Diffusion-Thermo.
This book presents a theoretical analysis of several problems in thermal and solutal convections in magneto-hydrodynamic (MHD) flows. It provides a systemic discussion on the development of fluid dynamics, continuum hypothesis, Newton's law of viscosity, heat transfer, mass transfer, thermal diffusion, diffusion-thermo-MHD, gray and non-gray gases, Fourier's law of conduction, and Fick's law of diffusion in such a way that readers with little knowledge in physics will find it easier to understand the contents. Some physical principles, such as those governing fluid motion, fluid temperature, and fluid concentration, are presented in vector form, allowing the corresponding form to be derived in any orthogonal curvilinear coordinate system. Laplace transform technique in closed form is used to obtain exact solutions to unsteady one-dimensional flow problems, an implicit finite difference method of Crank-Nicholson type is used to solve unsteady two-dimensional flow problems, and an asymptotic series expansion method is used to solve the governing equations of the steady three-dimensional flow problem analytically. Flow and transport phenomena are thoroughly treated in each chapter separately. This book emphasizes the influence of an induced magnetic field. The outcomes of the works are graphically depicted so that readers can gain a tangible understanding of the problems. It also includes a list of inverse Laplace transforms (ILTs) for several specific functions, some of which are not found in the existing literature. The ILTs of special functions are given in brief form and can further be utilized as standard formulae in finding those as special cases. Some new special functions are introduced in the book, along with appropriate definitions. As a result, the formulations for velocity, temperature, concentration, skin friction, Nusselt number, and Sherwood number have been appeared in brief and convenient forms that are uncommon in other literature. This book addresses numerous areas of contemporary magneto-fluid dynamics research that have major implications in engineering. It is primarily intended for researchers working in the field of heat and mass transfer in hydromagnetic flows.
ISBN: 9789811971532
Standard No.: 10.1007/978-981-19-7153-2doiSubjects--Topical Terms:
769147
Engineering Thermodynamics, Heat and Mass Transfer.
LC Class. No.: QB462.3
Dewey Class. No.: 523.01
Thermal and solutal convection in some hydromagnetic flows
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1. Introduction and Basic Concepts -- 2. MHD Transient Flow with Diffusion-Thermo and Radiation -- 3. MHD Flow with Diffusion-Thermo and Induced Magnetic Field -- 4. MHD Flow with Soret Effect and Induced Magnetic Field -- 5. MHD Flow with Parabolic Conditions and Diffusion-Thermo -- 6. MHD Flow with Radiation, Chemical Reaction, and Diffusion-Thermo -- 7. MHD Flow with Thermal Diffusion, Thermal Radiation, and Chemical Reaction -- 8. Natural Convection in Transient MHD Dissipative Flow -- 9. MHD Radiating Flow with Thermal Diffusion, and Diffusion-Thermo.
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This book presents a theoretical analysis of several problems in thermal and solutal convections in magneto-hydrodynamic (MHD) flows. It provides a systemic discussion on the development of fluid dynamics, continuum hypothesis, Newton's law of viscosity, heat transfer, mass transfer, thermal diffusion, diffusion-thermo-MHD, gray and non-gray gases, Fourier's law of conduction, and Fick's law of diffusion in such a way that readers with little knowledge in physics will find it easier to understand the contents. Some physical principles, such as those governing fluid motion, fluid temperature, and fluid concentration, are presented in vector form, allowing the corresponding form to be derived in any orthogonal curvilinear coordinate system. Laplace transform technique in closed form is used to obtain exact solutions to unsteady one-dimensional flow problems, an implicit finite difference method of Crank-Nicholson type is used to solve unsteady two-dimensional flow problems, and an asymptotic series expansion method is used to solve the governing equations of the steady three-dimensional flow problem analytically. Flow and transport phenomena are thoroughly treated in each chapter separately. This book emphasizes the influence of an induced magnetic field. The outcomes of the works are graphically depicted so that readers can gain a tangible understanding of the problems. It also includes a list of inverse Laplace transforms (ILTs) for several specific functions, some of which are not found in the existing literature. The ILTs of special functions are given in brief form and can further be utilized as standard formulae in finding those as special cases. Some new special functions are introduced in the book, along with appropriate definitions. As a result, the formulations for velocity, temperature, concentration, skin friction, Nusselt number, and Sherwood number have been appeared in brief and convenient forms that are uncommon in other literature. This book addresses numerous areas of contemporary magneto-fluid dynamics research that have major implications in engineering. It is primarily intended for researchers working in the field of heat and mass transfer in hydromagnetic flows.
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