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    • Rangeland Ecology & Management, Volume 66 (2013)
    • Rangeland Ecology & Management, Volume 66, Number 4 (July 2013)
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    Optimal Placement of Off-Stream Water Sources for Ephemeral Stream Recovery

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    Author
    Rigge, Matthew
    Smart, Alexander
    Wylie, Bruce
    Issue Date
    2013-07-01
    Keywords
    ephemeral streams
    livestock grazing
    NDVI
    off-stream water
    piosphere
    riparian zone
    
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    Citation
    Rigge, M., Smart, A., & Wylie, B. (2013). Optimal placement of off-stream water sources for ephemeral stream recovery. Rangeland Ecology & Management, 66(4), 479-486.
    Publisher
    Society for Range Management
    Journal
    Rangeland Ecology & Management
    URI
    http://hdl.handle.net/10150/642735
    DOI
    10.2111/REM-D-12-00099.1
    Additional Links
    https://rangelands.org/
    Abstract
    Uneven and/or inefficient livestock distribution is often a product of an inadequate number and distribution of watering points. Placement of off-stream water practices (OSWP) in pastures is a key consideration in rangeland management plans and is critical to achieving riparian recovery by improving grazing evenness, while improving livestock performance. Effective OSWP placement also minimizes the impacts of livestock use radiating from OSWP, known as the ‘‘piosphere.’’ The objective of this study was to provide land managers with recommendations for the optimum placement of OSWP. Specifically, we aimed to provide minimum offset distances of OSWP to streams and assess the effective range of OSWP using Normalized Difference Vegetation Index (NDVI) values, an indicator of live standing crop. NDVI values were determined from a time-series of Satellite Pour l’Observation de la Terre (SPOT) 20-m images of western South Dakota mixed-grass prairie. The NDVI values in ephemeral stream channels (in-channel) and uplands were extracted from pre- and post-OSWP images taken in 1989 and 2010, respectively. NDVI values were normalized to a reference imagine and subsequently by ecological site to produce nNDVI. Our results demonstrate a significant (P<0.05) increase in the nNDVI values of in-channel vegetation within 1 250 m of OSWP following their implementation. The area of piospheres (n=9) increased with pasture size (R2=0.49, P=0.05) and increased with average distance to OSWP in a pasture (R2=0.43, P=0.07). Piospheric reduction in nNDVI was observed within 200 m of OSWP, occasionally overlapping in-channel areas. The findings of this study suggest placement of OSWP 200 to 1 250 m from streams to achieve optimal results. These results can be used to increase grazing efficiency by effectively placing OSWP and insure that piospheres do not overlap ecologically important in-channel areas.
    Type
    text
    Article
    Language
    en
    ISSN
    0022-409X
    ae974a485f413a2113503eed53cd6c53
    10.2111/REM-D-12-00099.1
    Scopus Count
    Collections
    Rangeland Ecology & Management, Volume 66, Number 4 (July 2013)

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