Numerical Modelling: Applications to Marine Systems

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The thirteen papers presented in this book are based on talks given at the workshop on Numerical Modelling of Marine Systems held at the University of Adelaide, South Australia in February 1986. Several of the articles are a direct outcome of two special sessions held on modelling of Open Boundary Conditions and on the Transport of Pollutants. Other articles in the book cover topics such as numerical modelling of wind-driven flow in shallow seas, sediment transport in estuaries, internal tides and comparison of numerical methods for solving tidal and pollutant transport problems.

Author(s): John Noye (Eds.)
Series: North-Holland Mathematics Studies 145
Publisher: North-Holland
Year: 1987

Language: English
Commentary: +OCR
Pages: iii-ix, 1-295

Content:
Edited by
Page iii

Copyright page
Page iv

Preface
Page v
John Noye

Workshop Organising Committee
Page vii

Acknowledgements
Page ix

Numerical Modelling of Marine Systems Original Research Article
Pages 1-24
Alan M. Davies

A Three-Dimensional Numerical Model of the Eastern Irish Sea Original Research Article
Pages 25-45
Roger Proctor

Modelling Wind-Driven Flow in Shallow Systems on the Southwest Australian Coast Original Research Article
Pages 47-57
C.J. Hearn, J.R. Hunter

Diagnostic Modelling of Large-Scale Convection and Other Three-Dimensional Processes in The Coastal Ocean Original Research Article
Pages 59-76
Richard Nunes

A Numerical Sediment Transport Model for Application to Natural Estuaries, Harbours and Rivers Original Research Article
Pages 77-105
Kerry Black

Numerical Modelling of Internal Tides Original Research Article
Pages 107-122
Peter D. Craig

Comparison of Finite Difference and Galerkin Methods in Modelling Depth-Dependent Tidal Flow in Channels Original Research Article
Pages 123-143
K. Jung, P. Bills, M. Stevens, J. Noye

An Improved Open Boundary Condition for A Tidal Model of Bass Strait Original Research Article
Pages 145-158
R.J. Arnold

An Investigation of Open Boundary Conditions for Tidal Models of Shallow Seas Original Research Article
Pages 159-194
Peter Bills, John Noye

Numerical Methods for Solving the Transport Equation Original Research Article
Pages 195-229
John Noye

Finite Difference Methods for Solving the One-Dimensional Transport Equation Original Research Article
Pages 231-256
John Noye

The Application of Lagrangian Particle-Tracking Techniques to Modelling of Dispersion in The Sea Original Research Article
Pages 257-269
J.R. Hunter

Time-Splitting the One-Dimensional Transport Equation Original Research Article
Pages 271-295
John Noye