Modelling Complex Ecological Dynamics

Modelling Complex Ecological Dynamics

Einband:
Kartonierter Einband
EAN:
9783642050282
Untertitel:
An Introduction into Ecological Modelling for Students, Teachers & Scientists
Herausgeber:
Springer Berlin Heidelberg
Auflage:
2011
Anzahl Seiten:
416
Erscheinungsdatum:
04.03.2011
ISBN:
364205028X

Model development is of vital importance for understanding and management of ecological processes. Identifying the complex relationships between ecological patterns and processes is a crucial task. Ecological modellingboth qualitatively and quantitativelyplays a vital role in analysing ecological phenomena and for ecological theory. This textbook provides a unique overview of modelling approaches. Representing the state-of-the-art in modern ecology, it shows how to construct and work with various different model types. It introduces the background of each approach and its application in ecology. Differential equations, matrix approaches, individual-based models and many other relevant modelling techniques are explained and demonstrated with their use. The authors provide links to software tools and course materials. With chapters written by leading specialists, Modelling Complex Ecological Dynamics is an essential contribution to expand the qualification of students, teachers and scientists alike.

Offers a comprehensive overview of methods, approaches and applications of modelling in ecology Includes cases from different parts of the world Leading specialists explore different biomes and explore their interaction of different types of organisms Includes supplementary material: sn.pub/extras

Autorentext
Editors: Fred Jopp (University of Miami, USA) Hauke Reuter (Leibniz Center for Tropical Marine Ecology, Bremen, Germany) Broder Breckling (University of Bremen, Germany) Authors: Esther M. Borell (The Interuniversity Institute (IUI) for Marine Sciences, Eilat, Israel) Broder Breckling (University of Bremen, Germany) Donald L DeAngelis (University of Miami, USA) Marko Debeljak (Jozef Stefan Institute, Ljubljana, Slovenia) Carsten F. Dormann (Helmholtz Centre for Environmental Research, Leipzig, Germany) Saso Dzeroski (Jozef Stefan Institute, Ljubljana, Slovenia) Alejandro Gallego (Marine Scotland, Aberdeen, UK) Robert H. Gardner (University of Maryland, Frostburg, USA) Aurélie Garnier (Office National de la Chasse et de la Faune Sauvage, Nantes, France) Fred Jopp (University of Miami, USA) Sven Erik Jørgensen (University of Copenhagen, Denmark) Dietmar Kraft (University of Oldenburg, Germany) Andreas Kubicek (Leibniz Center for Tropical Marine Ecology, Bremen, Germany) Winfried Kurth (University of Göttingen, Germany) Christoph Lange (Fraunhofer MEVIS, Bremen, Germany) Dirk Lanwert (University of Göttingen, Germany) Jane Lecomte (Université Paris-Sud 11, France) Horst Malchow (University of Osnabrück, Germany) Agnese Marchini (University of Pavia, Italy) Yiannis G Matsinos (University of the Aegean, Grecce) Felix Müller (University of Kiel, Germany) Søren Nors Nielsen (Copenhagen, Denmark) Guy Pe'er (Helmholtz Centre for Environmental Research, Leipzig, Germny) Hauke Reuter (Leibniz Center for Tropical Marine Ecology, Bremen, Germany) Michael Sieber (University of Osnabrück, Germany) Dagmar Söndgerath (TU Braunschweig, Germany) Marc Taylor (Alfred Wegener Institute, Bremerhaven, Germany) Joel C. Trexler (Florida International University, Miami, USA) Gerd Weigmann (FU Berlin, Germany) Matthias Wolff (Leibniz Center for Tropical Marine Ecology, Bremen, Germany)

Inhalt
Introduction; Theoretical backgrounds: Scope and general definitions used in ecological modelling; What are the general conditions, under which models can be applied?; History of ecological modelling, and modern developments.- Modelling Techniques and Approaches; Context assessment and Systems analysis; Steady State Models of Ecological Systems; Ordinary Differential Equations; Partial Differential Equations Cellular Automata; Leslie-Matrices; Fuzzy Sets; L-Systems, and Fractals; Agent- and Individual-based Models; Modelling landscape dynamics and Habitat Suitability; Decision trees and data mining.- Application fields, case studies and examples; Conceptual and theoretical models (Analysing Landscape Structure using Neutral Models); Case Studies: Application of ecological models in management (Coral-Algae-Interaction; Stage-structured invasion models; Trophic Cascades and Food Web Stability in Fish Communities of the Everglades); Case Studies: Model Coupling and Multi-scale issues (Bio-Physical Models: An Evolving Tool in Marine Ecological Research; Potentials of GIS Model Coupling; Modelling the Everglades Ecosystem).- Strategies of model development; Model validation, Parameter estimation, Sensitivity Analysis.


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