Non-Hydrostatic Free Surface Flows

Non-Hydrostatic Free Surface Flows

Einband:
Fester Einband
EAN:
9783319479699
Untertitel:
Advances in Geophysical and Environmental Mechanics and Mathematics
Autor:
Willi H. Hager, Oscar Castro-Orgaz
Herausgeber:
Springer International Publishing
Auflage:
1st edition 2017
Anzahl Seiten:
712
Erscheinungsdatum:
04.04.2017
ISBN:
3319479695

This book provides essential information on the higher mathematical level of approximation over the gradually varied flow theory, also referred to as the Boussinesq-type theory. In this context, it presents higher order flow equations, together with their applications in a broad range of pertinent engineering and environmental problems, including open channel, groundwater, and granular material flows.

Offers the first compilation on the Boussinesq theory Presents essential mathematical theory together with its applications Presents detailed derivations step by step Includes open channel, groundwater, and granular material flows Includes supplementary material: sn.pub/extras

Autorentext
Oscar Castro-Orgaz is a Professor of Hydraulic Engineering at the University of Córdoba, Spain. He has written more than 50 papers in peer-reviewed journals of hydraulics and fluid mechanics and serves
as reviewer for the main journals on these topics. He is also Associate Editor of the Journal of Hydraulic Engineering ASCE, and Editorial Board Member of Environmental Fluid Mechanics,
Springer.
Willi H. Hager is Professor of Hydraulics at the Swiss Federal Institute of Technology, ETHZ. He has written more than 500 papers, of which more than half in peer-reviewed journal, mainly on open channel flows, pipe flows, scour, erosion, impulse waves, wastewater hydraulics and supercritical flows. He also wrote more than 20 books in these topics. He served from 2006 to 2011 as Editor of the Journal of Hydraulic Research, and was the recipient of various international awards.

Inhalt
1. Introduction.- 2. Vertically integrated non-hydrostatic free surface flow equations.- 3. Inviscid channel flows.- 4. Seepage flows.- 5. Viscous channel flows.- 6. Granular flows.- 7. Concluding remarks.- Appendices.


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