Literature DB >> 18663518

Linking theory and practice for restoration of step-pool streams.

Anne Chin1, Shannah Anderson, Andrew Collison, Barbara J Ellis-Sugai, Jeffrey P Haltiner, Johan B Hogervorst, G Mathias Kondolf, Linda S O'Hirok, Alison H Purcell, Ann L Riley, Ellen Wohl.   

Abstract

Step-pools sequences are increasingly used to restore stream channels. This increase corresponds to significant advances in theory for step-pools in recent years. The need for step-pools in stream restoration arises as urban development encroaches into steep terrain in response to population pressures, as stream channels in lower-gradient areas require stabilization due to hydrological alterations associated with land-use changes, and as step-pools are recognized for their potential to enhance stream habitats. Despite an increasingly voluminous literature and great demand for restoration using step-pool sequences, however, the link between theory and practice is limited. In this article, we present four unique cases of stream restoration using step-pools, including the evolution of the approaches, the project designs, and adjustments in the system following restoration. Baxter Creek in El Cerrito, California demonstrates an early application of artificial step-pools in which natural adjustments occurred toward geomorphic stability and ecological improvement. Restoration of East Alamo Creek in a large residential development near San Ramon, California illustrates an example of step-pools increasingly used in locations where such a channel form would not naturally occur. Construction of a step-pool channel in Karnowsky Creek within the Siuslaw National Forest, Oregon overcame constraints posed by access and the type and availability of materials; the placement of logs allowed natural scouring below steps. Dry Canyon Creek on the property of the Mountains Restoration Trust in Calabasas, California afforded a somewhat experimental approach to designing step-pools, allowing observation and learning in the future. These cases demonstrate how theories and relationships developed for step-pool sequences over the past two decades have been applied in real-world settings. The lessons from these examples enable us to develop considerations useful for deriving an appropriate course of design, approval, and construction of artificial step-pool systems. They also raise additional fundamental questions concerning appropriate strategies for restoration of step-pool streams. Outstanding challenges are highlighted as opportunities for continuing theoretical work.

Mesh:

Year:  2008        PMID: 18663518     DOI: 10.1007/s00267-008-9171-x

Source DB:  PubMed          Journal:  Environ Manage        ISSN: 0364-152X            Impact factor:   3.266


  3 in total

1.  Post-project appraisals in adaptive management of river channel restoration.

Authors:  Peter W Downs; G Mathias Kondolf
Journal:  Environ Manage       Date:  2002-04       Impact factor: 3.266

2.  Ecology. Synthesizing U.S. river restoration efforts.

Authors:  E S Bernhardt; M A Palmer; J D Allan; G Alexander; K Barnas; S Brooks; J Carr; S Clayton; C Dahm; J Follstad-Shah; D Galat; S Gloss; P Goodwin; D Hart; B Hassett; R Jenkinson; S Katz; G M Kondolf; P S Lake; R Lave; J L Meyer; T K O'donnell; L Pagano; B Powell; E Sudduth
Journal:  Science       Date:  2005-04-29       Impact factor: 47.728

3.  Assessment of stream ecosystem function and sensitivity in the Bighorn National Forest, Wyoming.

Authors:  Ellen Wohl; David Cooper; LeRoy Poff; Frank Rahel; Dennis Staley; David Winters
Journal:  Environ Manage       Date:  2007-06-04       Impact factor: 3.644

  3 in total

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