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Showing 1 - 11 of 11 matches in All Departments

Mathematical Aspects of Multi-Porosity Continua (Hardcover, 1st ed. 2017): Brian Straughan Mathematical Aspects of Multi-Porosity Continua (Hardcover, 1st ed. 2017)
Brian Straughan
R1,896 Discovery Miles 18 960 Ships in 10 - 15 working days

This book is devoted to describing theories for porous media where such pores have an inbuilt macro structure and a micro structure. For example, a double porosity material has pores on a macro scale, but additionally there are cracks or fissures in the solid skeleton. The actual body is allowed to deform and thus the underlying theory is one of elasticity. Various different descriptions are reviewed. Chapter 1 introduces the classical linear theory of elastodynamics together with uniqueness and continuous dependence results. Chapters 2 and 3 review developments of theories for double and triple porosity using a pressure-displacement structure and also using voids-displacement. Chapter 4 compares various aspects of the pressure-displacement and voids-displacement theories via uniqueness studies and wave motion analysis. Mathematical analyses of double and triple porosity materials are included concentrating on uniqueness and stability studies in chapters 5 to 7. In chapters 8 and 9 the emphasis is on wave motion in double porosity materials with special attention paid to nonlinear waves. The final chapter embraces a novel area where an elastic body with a double porosity structure is analyzed, but the thermodynamics allows for heat to travel as a wave rather than simply by diffusion. This book will be of value to mathematicians, theoretical engineers and other practitioners who are interested in double or triple porosity elasticity and its relevance to many diverse applications.

Heat Waves (Hardcover, 2011 ed.): Brian Straughan Heat Waves (Hardcover, 2011 ed.)
Brian Straughan
R4,025 Discovery Miles 40 250 Ships in 18 - 22 working days

This book surveys significant modern contributions to the mathematical theories of generalized heat wave equations. The first three chapters form a comprehensive survey of most modern contributions also describing in detail the mathematical properties of each model. Acceleration waves and shock waves are the focus in the next two chapters. Numerical techniques, continuous data dependence, and spatial stability of the solution in a cylinder, feature prominently among other topics treated in the following two chapters. The final two chapters are devoted to a description of selected applications and the corresponding formation of mathematical models. Illustrations are taken from a broad range that includes nanofluids, porous media, thin films, nuclear reactors, traffic flow, biology, and medicine, all of contemporary active technological importance and interest. This book will be of value to applied mathematicians, theoretical engineers and other practitioners who wish to know both the theory and its relevance to diverse applications.

Continuum Mechanics and Applications in Geophysics and the Environment (Hardcover, 2001 ed.): Brian Straughan, Ralf Greve,... Continuum Mechanics and Applications in Geophysics and the Environment (Hardcover, 2001 ed.)
Brian Straughan, Ralf Greve, Harald Ehrentraut, Yongqi Wang
R2,871 Discovery Miles 28 710 Ships in 18 - 22 working days

This topical volume reviews applications of continuum mechanics to systems in geophysics and the environment. Part of the text is devoted to numerical simulations and modeling. The topics covered include soil mechanics and porous media, glacier and ice dynamics, climatology and lake physics, climate change as well as numerical algorithms. The book, written by well-known experts, addresses researchers and students interested in physical aspects of our environment.

The Energy Method, Stability, and Nonlinear Convection (Hardcover, 2nd ed. 2004): Brian Straughan The Energy Method, Stability, and Nonlinear Convection (Hardcover, 2nd ed. 2004)
Brian Straughan
R2,902 Discovery Miles 29 020 Ships in 18 - 22 working days

This volume is a substantially revised new edition of the earlier book of the same title. Six new chapters (14-19) deal with topics of current interest: multi-component convection diffusion, convection in a compressible fluid, convenction with temperature dependent viscosity and thermal conductivity, penetrative convection, nonlinear stability in ocean circulation models, and numerical solution of eigenvalue problems. The book presents convection studies in a variety of fluid and porous media contexts. It begins at an elementary level and should be accessible to a wide audience of applied mathematicians, physicists, and engineers.

Stability and Wave Motion in Porous Media (Hardcover, 2008 ed.): Brian Straughan Stability and Wave Motion in Porous Media (Hardcover, 2008 ed.)
Brian Straughan
R2,895 Discovery Miles 28 950 Ships in 18 - 22 working days

This book describes several tractable theories for fluid flow in porous media. The important mathematical quations about structural stability and spatial decay are address. Thermal convection and stability of other flows in porous media are covered. A chapter is devoted to the problem of stability of flow in a fluid overlying a porous layer. Nonlinear wave motion in porous media is analysed. In particular, waves in an elastic body with voids are investigated while acoustic waves in porous media are also analysed in some detail. A chapter is enclosed on efficient numerical methods for solving eigenvalue problems which occur in stability problems for flows in porous media. Brian Straughan is a professor at the Department of Mathemactical Sciences at Durham University, United Kingdom.

Explosive Instabilities in Mechanics (Hardcover, illustrated edition): Brian Straughan Explosive Instabilities in Mechanics (Hardcover, illustrated edition)
Brian Straughan
R1,414 Discovery Miles 14 140 Ships in 18 - 22 working days

This book deals with blow-up of a solution to a system of PDEs that arise in practical situations. It begins with a relatively simple account of blow-up in systems of interaction-diffusion equations, then concentrates on mechanics. In particular it deals with the Euler equations, Navier--Stokes equations, models for glacier physics, Korteweg--de-Vries equations, and ferro-hydrodynamics. Blow-up is treated in Volterra equations, stressing how these equations arise in mechanics, e.g. in combustion theory. Further topics are chemotaxis in mathematical biology, change of type, from hyperbolic to elliptic, instability in soils, instability in sea ice dynamics, instability in pressure-dependent viscosity flow, and energy growth in parallel shear flows. It addresses graduate students and researchers in mechanics.

Explosive Instabilities in Mechanics (Paperback, Softcover reprint of the original 1st ed. 1998): Brian Straughan Explosive Instabilities in Mechanics (Paperback, Softcover reprint of the original 1st ed. 1998)
Brian Straughan
R1,385 Discovery Miles 13 850 Ships in 18 - 22 working days

This book deals with explosive instabilities in mechanics, deriving a solution to a system of PDEs that arise in practical situations. It begins with a relatively simple account of blow-up in systems of interaction-diffusion equations. Among the topics presented are: classical fluid equations, catastrophic behavior in nonlinear fluid theories, blow-up in Volterra equations, and rapid energy growth in parallel flows.

The Energy Method, Stability, and Nonlinear Convection (Paperback, Softcover reprint of hardcover 2nd ed. 2004): Brian Straughan The Energy Method, Stability, and Nonlinear Convection (Paperback, Softcover reprint of hardcover 2nd ed. 2004)
Brian Straughan
R2,830 Discovery Miles 28 300 Ships in 18 - 22 working days

Six new chapters (14-19) deal with topics of current interest: multi-component convection diffusion, convection in a compressible fluid, convenction with temperature dependent viscosity and thermal conductivity, penetrative convection, nonlinear stability in ocean circulation models, and numerical solution of eigenvalue problems.

Continuum Mechanics and Applications in Geophysics and the Environment (Paperback, Softcover reprint of hardcover 1st ed.... Continuum Mechanics and Applications in Geophysics and the Environment (Paperback, Softcover reprint of hardcover 1st ed. 2001)
Brian Straughan, Ralf Greve, Harald Ehrentraut, Yongqi Wang
R2,684 Discovery Miles 26 840 Ships in 18 - 22 working days

The topics covered include soil mechanics and porous media, glacier and ice dynamics, climatology and lake physics, climate change as well as numerical algorithms. The book, written by well-known experts, addresses researchers and students interested in physical aspects of our environment.

Stability and Wave Motion in Porous Media (Paperback, Softcover reprint of hardcover 1st ed. 2008): Brian Straughan Stability and Wave Motion in Porous Media (Paperback, Softcover reprint of hardcover 1st ed. 2008)
Brian Straughan
R2,696 Discovery Miles 26 960 Ships in 18 - 22 working days

This book describes several tractable theories for fluid flow in porous media. The important mathematical quations about structural stability and spatial decay are address. Thermal convection and stability of other flows in porous media are covered. A chapter is devoted to the problem of stability of flow in a fluid overlying a porous layer.

Nonlinear wave motion in porous media is analysed. In particular, waves in an elastic body with voids are investigated while acoustic waves in porous media are also analysed in some detail.

A chapter is enclosed on efficient numerical methods for solving eigenvalue problems which occur in stability problems for flows in porous media.

Brian Straughan is a professor at the Department of Mathemactical Sciences at Durham University, United Kingdom.

Heat Waves (Paperback, 2011 ed.): Brian Straughan Heat Waves (Paperback, 2011 ed.)
Brian Straughan
R3,999 Discovery Miles 39 990 Ships in 18 - 22 working days

This book surveys significant modern contributions to the mathematical theories of generalized heat wave equations. The first three chapters form a comprehensive survey of most modern contributions also describing in detail the mathematical properties of each model. Acceleration waves and shock waves are the focus in the next two chapters. Numerical techniques, continuous data dependence, and spatial stability of the solution in a cylinder, feature prominently among other topics treated in the following two chapters. The final two chapters are devoted to a description of selected applications and the corresponding formation of mathematical models. Illustrations are taken from a broad range that includes nanofluids, porous media, thin films, nuclear reactors, traffic flow, biology, and medicine, all of contemporary active technological importance and interest.

This book will be of value to applied mathematicians, theoretical engineers and other practitioners who wish to know both the theory and its relevance to diverse applications.

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