Buy Environmental Modeling: Using MATLAB on ✓ FREE SHIPPING on qualified orders. Environmental Modeling – using MATLAB. version ( MB) by Ekkehard Holzbecher 2DCT: Two Dimensional Contaminant Transport Modeling. Summary: Summary: “The book has two aims: to introduce basic concepts of environmental modeling and to facilitate the application of the concepts using.

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Environmental modeling : using MATLAB / Ekkehard Holzbecher – Details – Trove

Duplication hllzbecher this publication or parts thereof is permitted only under the provisions of the German Moveling Law of September 9,in its current version, and permission for use must always be obtained from Springer. Holxbecher are liable for prosecution under the German Copyright Law. The use of general descriptive names, registered names, trademarks, etc.

Environmental modeling is a eikehard that uses mathematics and computers to simulate physical and chemical phenomena in the environment e. This science holbecher initially based on pen-and-paper calculations using simple equations. These packages have been particularly successful for users of personal computers. Mathematical software provides a set of tools for solving equations both analytically and numerically. This is a major improvement in comparison to the programming tools e.

The use of these tools also minimizes the risk of programming errors. I highly recommend this book to both beginners and expert environmental professionals. The book will be particularly useful to those scientists who have postponed the learning and using mathematical software.

This book will open an ew world to them! To the target group belong all natural scientists who are dealing with the environment: As the book is concerned with modeling, it inevitably demands some mathematical insight. The book is designed to. Other mathematical products could have been selected from the market, which would perform similarly well for most application problems presented in the various chapters.

There are twenty chapters in the book.


Flow, if present, is an important, but mostly also complex part within an environmental compartment. At the very end special topics appear: A book on such a wide topic as this one includes experiences and knowledge shared with lots of other people. I ask for understanding that I mention no names here.

To be fair, giving one name would make it necessary to add numerous others. As one and only exception I want to mention my wife Susanne for reading the entire book, correcting stylistic errors, providing improved modelibg and for mental support. Special thanks to the students who attended the modeling courses at FUB, for their questions and for their ideas.

Without them I would not have become so familiar with the software.

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Parts of the book are based on seminar scripts. De groei van de reken — en geheugencapaciteit van computers is nog steeds indrukwekkend, maar de bolzbecher ontwickelingen zien we momenteel toch gebeuren of het gebiet van de software. There are various types of models in the environmental sciences, and surely there is no unique opinion about the essence of an environmental model.

Concerning the scope, this book is relatively open; i. However, the examples are selected for demonstration purposes and can in no way represent the vast variety of phenomena and approaches, which can be met in publications and studies of all types of environmental systems.

In this book modeling is process-oriented and deterministic. T hese two terms characterize ekkeahrd all presented methods, which, according to many opinions, represent the most important approach to understand environmental systems.

There are environmental problems, for which other approaches not tackled here work ekkehwrd successfully. Statistical or stochastic methods are not mentioned, for example.

Data processing, either graphical or numerical, as for ekkhard in Geo-Information Systems GISappears rudimentary in this book. Processes are in the focus of the presented approach. In the modeling concept of this book processes can be of physical, chemical or biological nature. The reproduction of biological species is a process, death is another; degradation of biochemical species, or decay of radioactive species are other examples. Some relevant processes are explained in detail: There are models of the entire globe.

There are models of technical devices for environmental purposes, in addition. Experimental set-ups in laboratories are simulated in order to understand relevant processes.


The methods presented in this book are deterministic, throughout.

A search for any statistics would be in vain. The description of processes is translated into mathematical terms. Nowadays the solution of such equations is not as tedious as in former ekkehaed. The aim of the book is to introduce basic concepts of environmental modeling. Starting from basic concepts the problems are transformed into mathematical formulations. Strategies for the solution of the mathematical problems on the computer are outlined.

Ek,ehard main aim of the book is to communicate the entire path of such a modeling approach. At some points algorithmic details will be omitted for the general aim. Who is interested strictly in computer algorithms, will be better served with a book on numerics, applied mathematics or computational methods. It is important that the modeler has a basic understanding of the underlying numerics.

There is no need, however, to dive so deep into the algorithms that one would be able to program them oneself.

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In fact, it is environkental advantage of the chosen software that modeling tasks, which could be handled only by people with profound programming knowledge and skills, become now available to a wider audience. In a broader sense everyone is addressed, who is dealing with or is interested in the simulation of environmental systems on a computer. In another similarly big part of the book special implementations are introduced and described.

If someone is very familiar with another mathematical software, the book may be of help too, as most of the described models can also be realized using other maths modelijg programs. McCuen treats statistical methods which do not appear here for modeling hydrologic change. Trauth focuses on image- and dataprocessing, as uzing as statistical methods for geoscientists.

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