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Process-Based Ecological River Restoration: Visualizing Three-Dimensional Connectivity and Dynamic Vectors to Recover Lost Linkages

  • GM Kondolf
  • , Andrew Boulton
  • , H Huber
  • , S Koljonen
  • , P Louhi
  • , K Nakamura
  • , S O'Daniel
  • , GC Poole
  • , FJ Rahel
  • , EH Stanley
  • , E Wohl
  • , A Bang
  • , J Carlstrom
  • , C Cristoni

Research output: Contribution to journalArticlepeer-review

326 Citations (Scopus)

Abstract

Human impacts to aquatic ecosystems often involve changes in hydrologic connectivity and flow regime. Drawing upon examples in the literature and from our experience, we developed conceptual models and used simple bivariate plots to visualize human impacts and restoration efforts in terms of connectivity and flow dynamics. Human-induced changes in longitudinal, lateral, and vertical connectivity are often accompanied by changes in flow dynamics, but in our experience restoration efforts to date have more often restored connectivity than flow dynamics. Restoration actions have included removing dams to restore fish passage, reconnecting flow through artificially cut-off side channels, setting back or breaching levees, and removing fine sediment deposits that block vertical exchange with the bed, thereby partially restoring hydrologic connectivity, i.e., longitudinal, lateral, or vertical. Restorations have less commonly affected flow dynamics, presumably because of the social and economic importance of water diversions or flood control. Thus, as illustrated in these bivariate plots, the trajectories of ecological restoration are rarely parallel with degradation trajectories because restoration is politically and economically easier along some axes more than others.
Original languageEnglish
Article numberArticle 5
JournalEcology and Society
Volume11
Issue number2
Publication statusPublished - 2006

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 15 - Life on Land
    SDG 15 Life on Land

Keywords

  • Freshwater Ecology

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