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Measuring spatial patterns in floodplains: A step towards understanding the complexity of floodplain ecosystems

Research output: Chapter in Book/Report/Conference proceedingChapterResearchpeer-review

17 Citations (Scopus)

Abstract

Floodplains can be viewed as complex adaptive systems (Levin, 1998) because they are comprised of many different biophysical components, such as morphological features, soil groups, and vegetation communities, which interact and adapt over time (Stanford et al., 2005). Interactions and feedbacks among the biophysical components often result in emergent phenomena occuring over a range of scales, often in the absence of any controlling factors (sensu Hallet, 1990). The emergence of new biophysical features and rates of processing feeds back into floodplain adaptive cycles and can lead to alternative stable states of floodplain structure and function which are dynamic over multiple scales (cf. Hughes, 1997; Stanford et al., 2005). Interactions between different biophysical components, feedbacks, self emergence, and scale are all key properties of complex adaptive systems (Levin, 1998; Phillips, 2003; Murray et al., 2014) and therefore will influence the manner in which we study and view floodplain spatial patterns.
Original languageEnglish
Title of host publicationRiver Science: Research and Management for the 21st Century
EditorsDavid Gilvear, Malcolm T Greenwood, Martin C Thoms, Paul J Wood
Place of PublicationChichester, United Kingdom
PublisherJohn Wiley & Sons Ltd
Pages103-131
Edition1
ISBN (Print)9781118643518, 9781119994343, 9781118643525
DOIs
Publication statusPublished - 2016

Keywords

  • Surface Processes
  • Physical Geography and Environmental Geoscience

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