Uniquely outlines CFD theory in a manner relevant to environmental applications. This book addresses the basic topics in CFD modelling in a thematic manner to provided the necessary theoretical background, as well as providing global cases studies showing how CFD models can be used in practice demonstrating how good practice can be achieved, with reference to both established and new applications.
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Paul D. Bates is a Professor of Hydrology at the University of Bristol, UK. He is a Fellow of the American Geophysical Union and a Royal Society Wolfson Research Merit Award holder.
Stuart N. Lane is the editor of Computational Fluid Dynamics: Applications in Environmental Hydraulics, published by Wiley.
Robert I. Ferguson is the editor of Computational Fluid Dynamics: Applications in Environmental Hydraulics, published by Wiley.
Computational fluid dynamics (CFD) was developed over 30 years ago by engineers and mathematicians. Recent years have seen a massive growth of interest in the numerical simulation of environmental flow processes in rivers, lakes and coastal environments, but CFD has only recently gained acceptance in Environmental Science.
Environmental applications of CFD have identified new research agendas not anticipated by engineering studies and raised fundamental questions regarding how such codes should be applied to complex, uncertain systems. Computational Fluid Dynamics: Applications in Environmental Hydraulics provides an accessible introduction to the theory underlying CFD codes.
Part one addresses the basic topics in CFD modelling in a thematic manner providing the necessary theoretical background. Part two includes global case studies showing how CFD models can be used in practice with reference to both new and established applications.
This is essential reading for researchers and professionals in fluvial geomorphology, environmental modelling and water resources. It is a useful reference for 2nd and 3rd year undergraduates and postgraduates of fluvial geomorphology, environmental modelling and computational fluid dynamics in Departments of Geography and Civil Engineering.
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