Computational Methods in Environmental Fluid Mechanics

Computational Methods in Environmental Fluid Mechanics
Title Computational Methods in Environmental Fluid Mechanics PDF eBook
Author Olaf Kolditz
Publisher Springer Science & Business Media
Pages 408
Release 2002-01-01
Genre Computers
ISBN 9783540428954

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Fluids play an important role in environmental systems appearing as surface water in rivers, lakes, and coastal regions or in the subsurface as well as in the atmosphere. Mechanics of environmental fluids is concerned with fluid motion, associated mass and heat transport as well as deformation processes in subsurface systems. In this reference work the fundamental modelling approaches based on continuum mechanics for fluids in the environment are described, including porous media and turbulence. Numerical methods for solving the process governing equations as well as its object-oriented computer implementation are discussed and illustrated with examples. Finally, the application of computer models in civil and environmental engineering is demonstrated.

Computational Methods for Fluid Dynamics

Computational Methods for Fluid Dynamics
Title Computational Methods for Fluid Dynamics PDF eBook
Author Joel H Ferziger
Publisher
Pages 380
Release 1996-02-14
Genre
ISBN 9783642976520

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Computational Methods in Environmental Fluid Mechanics

Computational Methods in Environmental Fluid Mechanics
Title Computational Methods in Environmental Fluid Mechanics PDF eBook
Author Olaf Kolditz
Publisher Springer Science & Business Media
Pages 382
Release 2013-03-09
Genre Computers
ISBN 3662047616

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Fluids play an important role in environmental systems appearing as surface water in rivers, lakes, and coastal regions or in the subsurface as well as in the atmosphere. Mechanics of environmental fluids is concerned with fluid motion, associated mass and heat transport as well as deformation processes in subsurface systems. In this reference work the fundamental modelling approaches based on continuum mechanics for fluids in the environment are described, including porous media and turbulence. Numerical methods for solving the process governing equations as well as its object-oriented computer implementation are discussed and illustrated with examples. Finally, the application of computer models in civil and environmental engineering is demonstrated.

Environmental Fluid Mechanics

Environmental Fluid Mechanics
Title Environmental Fluid Mechanics PDF eBook
Author Hillel Rubin
Publisher CRC Press
Pages 750
Release 2001-08-17
Genre Technology & Engineering
ISBN 9780203908495

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Environmental Fluid Mechanics provides comprehensive coverage of a combination of basic fluid principles and their application in a number of different situations-exploring fluid motions on the earth's surface, underground, and in oceans-detailing the use of physical and numerical models and modern computational approaches for the analysis of environmental processes. Environmental Fluid Mechanics covers novel scaling methods for a variety of environmental issues; equations of motion for boundary layers; hydraulic characteristics of open channel flow; surface and internal wave theory; the advection diffusion equation; sediment and associated contaminant transport in lakes and streams; mixed layer modeling in lakes; remediation; transport processes at the air/water interface; and more.

Computational Fluid Dynamics for Built and Natural Environments

Computational Fluid Dynamics for Built and Natural Environments
Title Computational Fluid Dynamics for Built and Natural Environments PDF eBook
Author Zhiqiang (John) Zhai
Publisher Springer Nature
Pages 267
Release 2019-08-24
Genre Technology & Engineering
ISBN 9813298200

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This book introduces readers to the fundamentals of simulating and analyzing built and natural environments using the Computational Fluid Dynamics (CFD) method. CFD offers a powerful tool for dealing with various scientific and engineering problems and is widely used in diverse industries. This book focuses on the most important aspects of applying CFD to the study of urban, buildings, and indoor and outdoor environments. Following the logical procedure used to prepare a CFD simulation, the book covers e.g. the governing equations, boundary conditions, numerical methods, modeling of different fluid flows, and various turbulence models. Furthermore, it demonstrates how CFD can be applied to solve a range of engineering problems, providing detailed hands-on exercises on air and water flow, heat transfer, and pollution dispersion problems that typically arise in the study of buildings and environments. The book also includes practical guidance on analyzing and reporting CFD results, as well as writing CFD reports/papers.

Computational Fluid Mechanics and Heat Transfer, Second Edition

Computational Fluid Mechanics and Heat Transfer, Second Edition
Title Computational Fluid Mechanics and Heat Transfer, Second Edition PDF eBook
Author Richard H. Pletcher
Publisher CRC Press
Pages 828
Release 1997-04-01
Genre Science
ISBN 9781560320463

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This comprehensive text provides basic fundamentals of computational theory and computational methods. The book is divided into two parts. The first part covers material fundamental to the understanding and application of finite-difference methods. The second part illustrates the use of such methods in solving different types of complex problems encountered in fluid mechanics and heat transfer. The book is replete with worked examples and problems provided at the end of each chapter.

Computational Methods for Multiphase Flow

Computational Methods for Multiphase Flow
Title Computational Methods for Multiphase Flow PDF eBook
Author Andrea Prosperetti
Publisher Cambridge University Press
Pages 392
Release 2009-06-25
Genre Mathematics
ISBN 1139459902

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Thanks to high-speed computers and advanced algorithms, the important field of modelling multiphase flows is an area of rapid growth. This one-stop account – now in paperback, with corrections from the first printing – is the ideal way to get to grips with this topic, which has significant applications in industry and nature. Each chapter is written by an acknowledged expert and includes extensive references to current research. All of the chapters are essentially independent and so the book can be used for a range of advanced courses and the self-study of specific topics. No other book covers so many topics related to multiphase flow, and it will therefore be warmly welcomed by researchers and graduate students of the subject across engineering, physics, and applied mathematics.