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This book is a follow-up to the introductory text written by the same authors. The primary emphasis on this book is linear and nonlinear partial differential equations with particular concentration on the equations of viscous fluid motion.
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Introduction to Hamiltonian Fluid Dynamics and Stability Theory offers a comprehensive introduction to Hamiltonian fluid dynamics and describes aspects of hydrodynamic stability theory within the context of the Hamiltonian formalism.
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Standard numerical methods are of little use in solving problems involving boundary layers. This volume presents a numerical technique that gives... Læs mere
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Solving nonlinear problems is inherently difficult, and the stronger the nonlinearity, the more intractable solutions become. This book... Læs mere
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This monograph considers the motion of incompressible fluids described by the Navier-Stokes equations... Læs mere
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This monograph provides an introduction to field-theoretic simulations in classical soft matter and Bose quantum fluids. The method represents a new class of molecular computer simulation in which continuous fields, rather than particle coordinates, are sampled and evolved.
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This book provides a resource for understanding the effluent discharge mechanisms and the approaches for modeling them. It bridges... Læs mere
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This text describes the theory of wave turbulence and applies this framework to examples in a variety of fields, providing an interdisciplinary view of the subject. It is... Læs mere
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This edited book provides invited and reviewed contributions in mathematical, physical and experimental modelling and simulations in all fluid mechanics branches.