Hydrodynamics and Transport for Water Quality Modeling
Book Details
Format
Hardback or Cased Book
ISBN-10
0873716124
ISBN-13
9780873716123
Publisher
Taylor & Francis Inc
Imprint
CRC Press Inc
Country of Manufacture
US
Country of Publication
GB
Publication Date
Dec 15th, 1998
Print length
816 Pages
Weight
1,666 grams
Dimensions
18.50 x 26.10 x 5.10 cms
Ksh 28,100.00
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Presenting various techniques, this book provides an overview of the methods used to describe or predict transport in aquatic systems, with emphasis on water quality modeling. It features descriptions of various methods, supported by sample applications and case studies drawn from the authors' years of experience in the field.
Hydrodynamics and Transport for Water Quality Modeling presents a complete overview of current methods used to describe or predict transport in aquatic systems, with special emphasis on water quality modeling. The book features detailed descriptions of each method, supported by sample applications and case studies drawn from the authors'' years of experience in the field. Each chapter examines a variety of modeling approaches, from simple to complex. This unique text/reference offers a wealth of information previously unavailable from a single source.
The book begins with an overview of basic principles, and an introduction to the measurement and analysis of flow. The following section focuses on rivers and streams, including model complexity and data requirements, methods for estimating mixing, hydrologic routing methods, and unsteady flow modeling. The third section considers lakes and reservoirs, and discusses stratification and temperature modeling, mixing methods, reservoir routing and water balances, and dynamic modeling using one-, two-, and three-dimensional models. The book concludes with a section on estuaries, containing topics such as origins and classification, tides, mixing methods, tidally averaged estuary models, and dynamic modeling. Over 250 figures support the text.
This is a valuable guide for students and practicing modelers who do not have extensive backgrounds in fluid dynamics.
The book begins with an overview of basic principles, and an introduction to the measurement and analysis of flow. The following section focuses on rivers and streams, including model complexity and data requirements, methods for estimating mixing, hydrologic routing methods, and unsteady flow modeling. The third section considers lakes and reservoirs, and discusses stratification and temperature modeling, mixing methods, reservoir routing and water balances, and dynamic modeling using one-, two-, and three-dimensional models. The book concludes with a section on estuaries, containing topics such as origins and classification, tides, mixing methods, tidally averaged estuary models, and dynamic modeling. Over 250 figures support the text.
This is a valuable guide for students and practicing modelers who do not have extensive backgrounds in fluid dynamics.
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