Bentham is offering subject-based scholarly content collections which are tailored to meet specific research needs. Researchers can access related articles from current and back volumes by purchasing access to these collections. Subscribers will also have access to new articles as soon as they are published and added to these collections. With new articles being added to these collections on a daily basis, the collections serve as an ideal tool to keep researchers updated with new developments in the respective fields.
DOI: 10.2174/97816080577881130101 eISBN: 978-1-60805-778-8, 2013 ISBN: 978-1-60805-777-1
Back Recommend this Book to your Library Cite as
Cite this Book as:
For Books István Faragó, Ágnes Havasi, Zahari Zlatev , " Advanced Numerical Methods for Complex Environmental Models: Needs and Availability ", Bentham Science Publishers (2013). https://doi.org/10.2174/97816080577881130101
Print ISBN978-1-60805-777-1
Online ISBN978-1-60805-778-8
Page: i-ii (2) Author: László Bozó DOI: 10.2174/9781608057788113010001
Page: iii-iv (2) Author: Clemens Mensink DOI: 10.2174/9781608057788113010002
Page: v-vi (2) Author: István Faragó, Ágnes Havasi and Zahari Zlatev DOI: 10.2174/9781608057788113010003
Page: vii-ix (3) Author: István Faragó, Ágnes Havasi and Zahari Zlatev DOI: 10.2174/9781608057788113010004
Page: 3-28 (26) Author: Adolf Ebel and Michael Memmesheimer DOI: 10.2174/9781608057788113010005 PDF Price: $30
Page: 29-52 (24) Author: Bram van Es, Barry Koren and Hugo J. de Blank DOI: 10.2174/9781608057788113010006 PDF Price: $30
Page: 53-78 (26) Author: István Faragó, Ágnes Havasi and Zahari Zlatev DOI: 10.2174/9781608057788113010007 PDF Price: $30
Page: 79-125 (47) Author: István Faragó, Ágnes Havasi and Zahari Zlatev DOI: 10.2174/9781608057788113010008 PDF Price: $30
Page: 126-165 (40) Author: István Faragó, Ágnes Havasi and Zahari Zlatev DOI: 10.2174/9781608057788113010009 PDF Price: $30
Page: 166-202 (37) Author: Zahari Zlatev, Krassimir Georgiev and Ivan Dimov DOI: 10.2174/9781608057788113010010 PDF Price: $30
Page: 203-275 (73) Author: Tamás Práger and Fanni Dóra Kelemen DOI: 10.2174/9781608057788113010011 PDF Price: $30
Page: 276-300 (25) Author: Dacian N. Daescu and Ionel M. Navon DOI: 10.2174/9781608057788113010012 PDF Price: $30
Page: 301-326 (26) Author: Zahari Zlatev, Krassimir Georgiev and Ivan Dimov DOI: 10.2174/9781608057788113010013 PDF Price: $30
Page: 327-364 (38) Author: Carlos Borrego, Jorge H. Amorim, Oxana Tchepel, Ana M. Costa and Ana I. Miranda DOI: 10.2174/9781608057788113010014 PDF Price: $30
Page: 365-393 (29) Author: Roberto San José, Juan L. Pérez and Rosa M. González DOI: 10.2174/9781608057788113010015 PDF Price: $30
Page: 394-415 (22) Author: Ildikó Pieczka, Rita Pongrácz and Judit Bartholy DOI: 10.2174/9781608057788113010016 PDF Price: $30
Page: 416-424 (9) Author: István Faragó, Ágnes Havasi and Zahari Zlatev DOI: 10.2174/9781608057788113010017
High air pollution levels pose a significant threat to plants, animals and human beings. Efforts by researchers are directed towards keeping air pollution levels below well defined ‘critical‘ levels in order to maintain a sustainable atmosphere and environmental system. The application of advanced mathematical models is important for researchers to achieve this goal as efficiently as possible. Mathematical models can be used to predict answers to many important questions about the environment. This application comes with several complex theoretical and practical obstacles which need to be resolved. A successfully applicable mathematical model needs to enable researchers to • Mathematically describe all important physical and chemical processes. • Apply fast and sufficiently accurate numerical methods. • Ensure that the model runs efficiently on modern high speed computers. • Use high quality input data, both meteorological data and emission inventories, in the runs. • Verify the model results by comparing them with reliable measurements taken in different parts of the spatial domain of the model. • Carry out long series of sensitivity experiments to check the response of the model to changes of different key parameters. • Visualize and animate the output results in order to make them easily understandable even to non-specialists. This monograph thoroughly describes mathematical methods useful for various situations in environmental modeling - including finite difference methods, splitting methods, parallel computation, etc. - and provides a framework for resolving problems posed in relation to the points listed above. Chapters are written by well-known specialists making this book a handy reference for researchers, university teachers and students working and studying in the areas of air pollution, meteorology, applied mathematics and computer science.
Boundary Element Methods for Heat Transfer with Phase Change Problems: Theory and Application
On Generalized Growth rates of Integer Translated Entire and Meromorphic Functions
Introductory Statistics
Advanced Mathematical Applications in Data Science
Advanced Calculus - Fundamentals of Mathematics
Advances in Time Series Forecasting
Current Developments in Mathematical Sciences
Uncertain Analysis in Finite Elements Models