Kinematic Wave Modeling in Water Resources
Title | Kinematic Wave Modeling in Water Resources PDF eBook |
Author | Vijay P. Singh |
Publisher | John Wiley & Sons |
Pages | 1424 |
Release | 1996-03-29 |
Genre | Technology & Engineering |
ISBN | 9780471109457 |
Kinematic wave modeling methods are gaining wide acceptance as a fast and accurate way of handling a wide range of water modeling problems. This is the first book to provide a thorough reference to the application of KW methods to such problems as the spatial representation of watersheds, overland flow routing, and channel flow routing.
Applied Mechanics Reviews
Title | Applied Mechanics Reviews PDF eBook |
Author | |
Publisher | |
Pages | 628 |
Release | 1974 |
Genre | Mechanics, Applied |
ISBN |
Numerical Modeling of Water Waves
Title | Numerical Modeling of Water Waves PDF eBook |
Author | Pengzhi Lin |
Publisher | CRC Press |
Pages | 500 |
Release | 2008-04-30 |
Genre | Technology & Engineering |
ISBN | 1482265915 |
Modelling large-scale wave fields and their interaction with coastal and offshore structures has become much more feasible over the last two decades with increases in computer speeds. Wave modelling can be viewed as an extension of wave theory, a mature and widely published field, applied to practical engineering through the use of computer tools.
Dispersive Shallow Water Waves
Title | Dispersive Shallow Water Waves PDF eBook |
Author | Gayaz Khakimzyanov |
Publisher | Springer Nature |
Pages | 296 |
Release | 2020-09-15 |
Genre | Mathematics |
ISBN | 3030462676 |
This monograph presents cutting-edge research on dispersive wave modelling, and the numerical methods used to simulate the propagation and generation of long surface water waves. Including both an overview of existing dispersive models, as well as recent breakthroughs, the authors maintain an ideal balance between theory and applications. From modelling tsunami waves to smaller scale coastal processes, this book will be an indispensable resource for those looking to be brought up-to-date in this active area of scientific research. Beginning with an introduction to various dispersive long wave models on the flat space, the authors establish a foundation on which readers can confidently approach more advanced mathematical models and numerical techniques. The first two chapters of the book cover modelling and numerical simulation over globally flat spaces, including adaptive moving grid methods along with the operator splitting approach, which was historically proposed at the Institute of Computational Technologies at Novosibirsk. Later chapters build on this to explore high-end mathematical modelling of the fluid flow over deformed and rotating spheres using the operator splitting approach. The appendices that follow further elaborate by providing valuable insight into long wave models based on the potential flow assumption, and modified intermediate weakly nonlinear weakly dispersive equations. Dispersive Shallow Water Waves will be a valuable resource for researchers studying theoretical or applied oceanography, nonlinear waves as well as those more broadly interested in free surface flow dynamics.
Nonlinear Dispersive Waves
Title | Nonlinear Dispersive Waves PDF eBook |
Author | David Henry |
Publisher | Springer Nature |
Pages | 288 |
Release | |
Genre | |
ISBN | 3031635124 |
CANCAM Proceedings
Title | CANCAM Proceedings PDF eBook |
Author | |
Publisher | |
Pages | 458 |
Release | 1989 |
Genre | Fluid mechanics |
ISBN |
Linear and Nonlinear Waves
Title | Linear and Nonlinear Waves PDF eBook |
Author | G. B. Whitham |
Publisher | John Wiley & Sons |
Pages | 660 |
Release | 2011-10-18 |
Genre | Science |
ISBN | 1118031202 |
Now in an accessible paperback edition, this classic work is just as relevant as when it first appeared in 1974, due to the increased use of nonlinear waves. It covers the behavior of waves in two parts, with the first part addressing hyperbolic waves and the second addressing dispersive waves. The mathematical principles are presented along with examples of specific cases in communications and specific physical fields, including flood waves in rivers, waves in glaciers, traffic flow, sonic booms, blast waves, and ocean waves from storms.