Fundamentals of Environmental Discharge Modeling

Nonfiction, Science & Nature, Technology, Engineering, Industrial, Mathematics, Applied, Science, Biological Sciences, Environmental Science
Cover of the book Fundamentals of Environmental Discharge Modeling by Lorin R. Davis, CRC Press
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Author: Lorin R. Davis ISBN: 9781351446624
Publisher: CRC Press Publication: May 4, 2018
Imprint: CRC Press Language: English
Author: Lorin R. Davis
ISBN: 9781351446624
Publisher: CRC Press
Publication: May 4, 2018
Imprint: CRC Press
Language: English

This book examines engineering and mathematical models for documenting and approving mechanical and environmental discharges. The author emphasizes engineering design considerations as well as applications to waste water and atmospheric discharges.
Chapters discuss:

the fundamentals of turbulent jet mixing, dilution concepts, and mixing zone concepts

diffuser configurations and head loss calculations

different modeling techniques and accepted models - discussed in detail with theoretical background, restrictions, input, output, and examples

Lagrangian and the EPA UM 2-dimensional diffuser model

the PLUMES interface

Eulerian integral methods, EPA UDKHG 3-dimensional diffuser model, and PDSG surface discharge model

empirical techniques, RSB diffuser model, the CORMIX family of models for both diffusers and surface discharge

numerical methods with a discussion of shelf commercial models

Gaussian atmospheric plume models
Fundamentals of Environmental Discharge Modeling includes numerous case studies and examples for each model and problem.

View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart

This book examines engineering and mathematical models for documenting and approving mechanical and environmental discharges. The author emphasizes engineering design considerations as well as applications to waste water and atmospheric discharges.
Chapters discuss:

the fundamentals of turbulent jet mixing, dilution concepts, and mixing zone concepts

diffuser configurations and head loss calculations

different modeling techniques and accepted models - discussed in detail with theoretical background, restrictions, input, output, and examples

Lagrangian and the EPA UM 2-dimensional diffuser model

the PLUMES interface

Eulerian integral methods, EPA UDKHG 3-dimensional diffuser model, and PDSG surface discharge model

empirical techniques, RSB diffuser model, the CORMIX family of models for both diffusers and surface discharge

numerical methods with a discussion of shelf commercial models

Gaussian atmospheric plume models
Fundamentals of Environmental Discharge Modeling includes numerous case studies and examples for each model and problem.

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