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Journal Article

Integrating fast and slow processes is essential for simulating human–freshwater interactions

Nicole K. Ward; Leah Fitchett; Julia A. Hart; Lele Shu; Jemma Stachelek; Weizhe Weng; Yu Zhang; Hilary Dugan; Amy Hetherington; Kevin Boyle; Cayelan C. Carey; Kelly M. Cobourn; Paul C. Hanson; Armen R. Kemanian; Michael G. Sorice; Kathleen C. Weathers
Ambio · Vol. 48, Issue 10 · pp. 1169-1182 · 2019

Abstract

Integrated modeling is a critical tool to evaluate the behavior of coupled human–freshwater systems. However, models that do not consider both fast and slow processes may not accurately reflect the feedbacks that define complex systems. We evaluated current coupled human–freshwater system modeling approaches in the literature with a focus on categorizing feedback loops as including economic and/or socio-cultural processes and identifying the simulation of fast and slow processes in human and biophysical systems. Fast human and fast biophysical processes are well represented in the literature, but very few studies incorporate slow human and slow biophysical system processes. Challenges in simulating coupled human–freshwater systems can be overcome by quantifying various monetary and non-monetary ecosystem values and by using data aggregation techniques. Studies that incorporate both fast and slow processes have the potential to improve complex system understanding and inform more sustainable decision-making that targets effective leverage points for system change.

Bibliographic Information

JournalAmbio
PublisherSpringer
Publication Date2019-10-15
Publication Year2019
Volume48
Issue10
Pages1169-1182
Document TypeJournal Article
Print ISSN0044-7447
eISSN1654-7209
DOI10.1007/s13280-018-1136-6

Access Information

NARA Access Coverage2010-01-01~Current
Journal Homepagehttps://www.springer.com/journal/13280
Publisher PageOpen Publisher Page
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