Stream network expansion: a riparian water quality factor

Little is known about how active stream network expansion during rainstorms influences the ability of riparian buffers to improve water quality. We used aerial photographs to quantify stream network expansion during the wet winter season in five agricultural catchments in western Oregon, USA. Winter...

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Published in:Hydrological processes Vol. 19; no. 8; pp. 1715 - 1721
Main Authors: Wigington Jr, P. J., Moser, T. J., Lindeman, D. R.
Format: Journal Article
Language:English
Published: Chichester, UK John Wiley & Sons, Ltd 01-05-2005
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Abstract Little is known about how active stream network expansion during rainstorms influences the ability of riparian buffers to improve water quality. We used aerial photographs to quantify stream network expansion during the wet winter season in five agricultural catchments in western Oregon, USA. Winter stream drainage densities were nearly two orders of magnitude greater than summer stream densities, and agricultural land use was much more abundant along transient portions (e.g. swales, road ditches) of stream networks. Water moving from agricultural fields into expanded stream networks during large hydrologic events has the opportunity to bypass downstream riparian buffers along perennial streams and contribute nonpoint‐source pollutants directly into perennial stream channels. Copyright © 2005 John Wiley & Sons, Ltd.
AbstractList Little is known about how active stream network expansion during rainstorms influences the ability of riparian buffers to improve water quality. We used aerial photographs to quantify stream network expansion during the wet winter season in five agricultural catchments in western Oregon, USA. Winter stream drainage densities were nearly two orders of magnitude greater than summer stream densities, and agricultural land use was much more abundant along transient portions (e.g. swales, road ditches) of stream networks. Water moving from agricultural fields into expanded stream networks during large hydrologic events has the opportunity to bypass downstream riparian buffers along perennial streams and contribute nonpoint-source pollutants directly into perennial stream channels.
Little is known about how active stream network expansion during rainstorms influences the ability of riparian buffers to improve water quality. We used aerial photographs to quantify stream network expansion during the wet winter season in five agricultural catchments in western Oregon, USA. Winter stream drainage densities were nearly two orders of magnitude greater than summer stream densities, and agricultural land use was much more abundant along transient portions (e.g. swales, road ditches) of stream networks. Water moving from agricultural fields into expanded stream networks during large hydrologic events has the opportunity to bypass downstream riparian buffers along perennial streams and contribute nonpoint‐source pollutants directly into perennial stream channels. Copyright © 2005 John Wiley & Sons, Ltd.
Author Wigington Jr, P. J.
Moser, T. J.
Lindeman, D. R.
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  surname: Wigington Jr
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  surname: Moser
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  surname: Lindeman
  fullname: Lindeman, D. R.
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Cites_doi 10.2134/jeq1994.00472425002300050007x
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Issue 8
Keywords impact statements
catchment
aerial photography
fertilizers
nitrogen
agricultural waste
streams
concentration
drainage patterns
nitrates
pollution
nonpoint sources
North America
pollutants
agriculture
drainage basins
stream network expansion
land use
hydrochemistry
water quality
water resource management
drainage
riparian environment
riparian areas
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Snippet Little is known about how active stream network expansion during rainstorms influences the ability of riparian buffers to improve water quality. We used aerial...
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SubjectTerms aerial photography
agriculture
catchment
Earth sciences
Earth, ocean, space
Engineering and environment geology. Geothermics
Exact sciences and technology
Freshwater
Hydrology
Hydrology. Hydrogeology
Pollution, environment geology
riparian areas
stream network expansion
water quality
Water resources
Title Stream network expansion: a riparian water quality factor
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