Three-dimensional Unstructured Finite Difference and Volume Model for Barotropic Coastal and Estuarine Circulation and Application to Hurricane Ivan (2004) and Dennis (2005)

Three-dimensional Unstructured Finite Difference and Volume Model for Barotropic Coastal and Estuarine Circulation and Application to Hurricane Ivan (2004) and Dennis (2005)
Author: Jun Lee
Publisher:
Total Pages:
Release: 2008
Genre:
ISBN:


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The propagation term was implemented by a semi-implicit numerical scheme, the so-called [theta]-method, for numerical stability. UFDVM exploited finite volume numerical scheme in horizontal diffusion term. Because the model used orthogonal unstructured computational grid, much flexibility to resolve complex coastal boundaries was allowed without any transformation of governing equations. The model has ability to treat wetting and drying of land. UFDVM was implemented Z-grid in vertical direction. The equilibrium turbulence model is used to determine the vertical eddy viscosity.

Three-Dimensional Models of Marine and Estuarine Dynamics

Three-Dimensional Models of Marine and Estuarine Dynamics
Author: J.C.J. Nihoul
Publisher: Elsevier
Total Pages: 643
Release: 1987-05-01
Genre: Science
ISBN: 008087083X


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These proceedings represent the most recent and complete state of the art review of three-dimensional models of the modern generation for the study of marine hydrodynamics and management of the marine system. The book is well illustrated by application to well-documented case studies.

Hydrodynamics and Transport for Water Quality Modeling

Hydrodynamics and Transport for Water Quality Modeling
Author: James L. Martin
Publisher: CRC Press
Total Pages: 820
Release: 2018-05-04
Genre: Technology & Engineering
ISBN: 1351439871


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Hydrodynamics and Transport for Water Quality Modeling presents a complete overview of current methods used to describe or predict transport in aquatic systems, with special emphasis on water quality modeling. The book features detailed descriptions of each method, supported by sample applications and case studies drawn from the authors' years of experience in the field. Each chapter examines a variety of modeling approaches, from simple to complex. This unique text/reference offers a wealth of information previously unavailable from a single source. The book begins with an overview of basic principles, and an introduction to the measurement and analysis of flow. The following section focuses on rivers and streams, including model complexity and data requirements, methods for estimating mixing, hydrologic routing methods, and unsteady flow modeling. The third section considers lakes and reservoirs, and discusses stratification and temperature modeling, mixing methods, reservoir routing and water balances, and dynamic modeling using one-, two-, and three-dimensional models. The book concludes with a section on estuaries, containing topics such as origins and classification, tides, mixing methods, tidally averaged estuary models, and dynamic modeling. Over 250 figures support the text. This is a valuable guide for students and practicing modelers who do not have extensive backgrounds in fluid dynamics.

A Three-dimensional, Finite Element Numerical Model of Circulation and Diffusion-advection Processes for Estuarine and Coastal Application (with Application to Bay of Ilha Grande, Brazil)

A Three-dimensional, Finite Element Numerical Model of Circulation and Diffusion-advection Processes for Estuarine and Coastal Application (with Application to Bay of Ilha Grande, Brazil)
Author: Sergio Romano Signorini
Publisher:
Total Pages: 374
Release: 1979
Genre: Ocean currents
ISBN:


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Three Dimensional Coastal Ocean Models

Three Dimensional Coastal Ocean Models
Author: Norman S. Heaps
Publisher: American Geophysical Union
Total Pages: 232
Release: 1987
Genre: Nature
ISBN:


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Published by the American Geophysical Union as part of the Coastal and Estuarine Sciences, Volume 4. The AGU Monograph Series on Coastal and Estuarine Regimes provides timely summaries and reviews of major process and regional studies, both observational and theoretical, and of theoretical and numerical models. It grew out of an IAPSO/SCOR/ECOR working group initiative several years ago intended to enhance scientific communications on this topic. The series' authors and editors are drawn from the international community. The ultimate goal is to stimulate bringing the theory, observations, and modeling of coastal and estuarine regimes together on the global scale.

Numerical Models of Oceans and Oceanic Processes

Numerical Models of Oceans and Oceanic Processes
Author: Lakshmi H. Kantha
Publisher: Elsevier
Total Pages: 981
Release: 2000-08-08
Genre: Science
ISBN: 0080512909


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Oceans play a pivotal role in our weather and climate. Ocean-borne commerce is vital to our increasingly close-knit global community. Yet we do not fully understand the intricate details of how they function, how they interact with the atmosphere, and what the limits are to their biological productivity and their tolerance to wastes. While satellites are helping us to fill in the gaps, numerical ocean models are playing an important role in increasing our ability to comprehend oceanic processes, monitor the current state of the oceans, and to a limited extent, even predict their future state.Numerical Models of Oceans and Oceanic Processes is a survey of the current state of knowledge in this field. It brings together a discussion of salient oceanic dynamics and processes, numerical solution methods, and ocean models to provide a comprehensive treatment of the topic. Starting with elementary concepts in ocean dynamics, it deals with equatorial, mid-latitude, high latitude, and coastal dynamics from the perspective of a modeler. A comprehensive and up-to-date chapter on tides is also included. This is followed by a discussion of different kinds of numerical ocean models and the pre- and post-processing requirements and techniques. Air-sea and ice-ocean coupled models are described, as well as data assimilation and nowcast/forecasts. Comprehensive appendices on wavelet transforms and empirical orthogonal functions are also included.This comprehensive and up-to-date survey of the field should be of interest to oceanographers, atmospheric scientists, and climatologists. While some prior knowledge of oceans and numerical modeling is helpful, the book includes an overview of enough elementary material so that along with its companion volume, Small Scale Processes in Geophysical Flows, it should be useful to both students new to the field and practicing professionals. * Comprehensive and up-to-date review* Useful for a two-semester (or one-semester on selected topics) graduate level course* Valuable reference on the topic* Essential for a better understanding of weather and climate