Analyzing precipitationsheds to understand the vulnerability of rainfall dependent regions
It is well known that rivers connect upstream and downstream ecosystems within watersheds. Here we describe the concept of precipitationsheds to show how upwind terrestrial evaporation source areas contribute moisture for precipitation to downwind sink regions. We illustrate the importance of upwind...
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Copernicus Publications
2012-02-01
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Series: | Biogeosciences |
Online Access: | http://www.biogeosciences.net/9/733/2012/bg-9-733-2012.pdf |
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doaj-e679511f18b04d70a0e93beea923cf5c2020-11-24T23:27:24ZengCopernicus PublicationsBiogeosciences1726-41701726-41892012-02-019273374610.5194/bg-9-733-2012Analyzing precipitationsheds to understand the vulnerability of rainfall dependent regionsP. W. KeysR. J. van der EntL. J. GordonH. HoffR. NikoliH. H. G. SavenijeIt is well known that rivers connect upstream and downstream ecosystems within watersheds. Here we describe the concept of precipitationsheds to show how upwind terrestrial evaporation source areas contribute moisture for precipitation to downwind sink regions. We illustrate the importance of upwind land cover in precipitationsheds to sustain precipitation in critically water stressed downwind areas, specifically dryland agricultural areas. We first identify seven regions where rainfed agriculture is particularly vulnerable to reductions in precipitation, and then map their precipitationsheds. We then develop a framework for qualitatively assessing the vulnerability of precipitation for these seven agricultural regions. We illustrate that the sink regions have varying degrees of vulnerability to changes in upwind evaporation rates depending on the extent of the precipitationshed, source region land use intensity and expected land cover changes in the source region.http://www.biogeosciences.net/9/733/2012/bg-9-733-2012.pdf |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
P. W. Keys R. J. van der Ent L. J. Gordon H. Hoff R. Nikoli H. H. G. Savenije |
spellingShingle |
P. W. Keys R. J. van der Ent L. J. Gordon H. Hoff R. Nikoli H. H. G. Savenije Analyzing precipitationsheds to understand the vulnerability of rainfall dependent regions Biogeosciences |
author_facet |
P. W. Keys R. J. van der Ent L. J. Gordon H. Hoff R. Nikoli H. H. G. Savenije |
author_sort |
P. W. Keys |
title |
Analyzing precipitationsheds to understand the vulnerability of rainfall dependent regions |
title_short |
Analyzing precipitationsheds to understand the vulnerability of rainfall dependent regions |
title_full |
Analyzing precipitationsheds to understand the vulnerability of rainfall dependent regions |
title_fullStr |
Analyzing precipitationsheds to understand the vulnerability of rainfall dependent regions |
title_full_unstemmed |
Analyzing precipitationsheds to understand the vulnerability of rainfall dependent regions |
title_sort |
analyzing precipitationsheds to understand the vulnerability of rainfall dependent regions |
publisher |
Copernicus Publications |
series |
Biogeosciences |
issn |
1726-4170 1726-4189 |
publishDate |
2012-02-01 |
description |
It is well known that rivers connect upstream and downstream ecosystems within watersheds. Here we describe the concept of precipitationsheds to show how upwind terrestrial evaporation source areas contribute moisture for precipitation to downwind sink regions. We illustrate the importance of upwind land cover in precipitationsheds to sustain precipitation in critically water stressed downwind areas, specifically dryland agricultural areas. We first identify seven regions where rainfed agriculture is particularly vulnerable to reductions in precipitation, and then map their precipitationsheds. We then develop a framework for qualitatively assessing the vulnerability of precipitation for these seven agricultural regions. We illustrate that the sink regions have varying degrees of vulnerability to changes in upwind evaporation rates depending on the extent of the precipitationshed, source region land use intensity and expected land cover changes in the source region. |
url |
http://www.biogeosciences.net/9/733/2012/bg-9-733-2012.pdf |
work_keys_str_mv |
AT pwkeys analyzingprecipitationshedstounderstandthevulnerabilityofrainfalldependentregions AT rjvanderent analyzingprecipitationshedstounderstandthevulnerabilityofrainfalldependentregions AT ljgordon analyzingprecipitationshedstounderstandthevulnerabilityofrainfalldependentregions AT hhoff analyzingprecipitationshedstounderstandthevulnerabilityofrainfalldependentregions AT rnikoli analyzingprecipitationshedstounderstandthevulnerabilityofrainfalldependentregions AT hhgsavenije analyzingprecipitationshedstounderstandthevulnerabilityofrainfalldependentregions |
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1725552103950123008 |