Hydrologic similarity among catchments under variable flow conditions

An assessment of regional similarity in catchment stream response is often needed for accurate predictions in ungauged catchments. However, it is not clear whether similarity among catchments is preserved at all flow conditions. We address this question through the analysis of flow duration curves f...

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Main Authors: S. Patil, M. Stieglitz
Format: Article
Language:English
Published: Copernicus Publications 2011-03-01
Series:Hydrology and Earth System Sciences
Online Access:http://www.hydrol-earth-syst-sci.net/15/989/2011/hess-15-989-2011.pdf
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spelling doaj-7fb6d980eef445d4a3ccc2f3fad36bd42020-11-24T23:39:31ZengCopernicus PublicationsHydrology and Earth System Sciences1027-56061607-79382011-03-0115398999710.5194/hess-15-989-2011Hydrologic similarity among catchments under variable flow conditionsS. PatilM. StieglitzAn assessment of regional similarity in catchment stream response is often needed for accurate predictions in ungauged catchments. However, it is not clear whether similarity among catchments is preserved at all flow conditions. We address this question through the analysis of flow duration curves for 25 gauged catchments located across four river basins in the northeast United States. The coefficient of variation of streamflow percentiles is used as a measure of variability among catchments across flow conditions. Results show that similarity in catchment stream response is dynamic and highly dependent on flow conditions. Specifically, within each of the four basins, the coefficient of variation is high at low flow percentiles and gradually reduces for higher flow percentiles. Analysis of the inter-annual variation in streamflow percentiles shows a similar reduction in variability from low flow to high flow percentiles. Greater similarity in streamflows is observed during the winter and spring (wet) seasons compared to the summer and fall (dry) seasons. Results suggest that the spatial variability in streamflow at low flows is primarily controlled by the dominance of high evaporative demand during the warm period. On the other hand, spatial variability at high flows during the cold period is controlled by the increased dominance of precipitation input over evapotranspiration. By evaluating variability over the entire range of streamflow percentiles, this work explores the nature of hydrologic similarity from a seasonal perspective.http://www.hydrol-earth-syst-sci.net/15/989/2011/hess-15-989-2011.pdf
collection DOAJ
language English
format Article
sources DOAJ
author S. Patil
M. Stieglitz
spellingShingle S. Patil
M. Stieglitz
Hydrologic similarity among catchments under variable flow conditions
Hydrology and Earth System Sciences
author_facet S. Patil
M. Stieglitz
author_sort S. Patil
title Hydrologic similarity among catchments under variable flow conditions
title_short Hydrologic similarity among catchments under variable flow conditions
title_full Hydrologic similarity among catchments under variable flow conditions
title_fullStr Hydrologic similarity among catchments under variable flow conditions
title_full_unstemmed Hydrologic similarity among catchments under variable flow conditions
title_sort hydrologic similarity among catchments under variable flow conditions
publisher Copernicus Publications
series Hydrology and Earth System Sciences
issn 1027-5606
1607-7938
publishDate 2011-03-01
description An assessment of regional similarity in catchment stream response is often needed for accurate predictions in ungauged catchments. However, it is not clear whether similarity among catchments is preserved at all flow conditions. We address this question through the analysis of flow duration curves for 25 gauged catchments located across four river basins in the northeast United States. The coefficient of variation of streamflow percentiles is used as a measure of variability among catchments across flow conditions. Results show that similarity in catchment stream response is dynamic and highly dependent on flow conditions. Specifically, within each of the four basins, the coefficient of variation is high at low flow percentiles and gradually reduces for higher flow percentiles. Analysis of the inter-annual variation in streamflow percentiles shows a similar reduction in variability from low flow to high flow percentiles. Greater similarity in streamflows is observed during the winter and spring (wet) seasons compared to the summer and fall (dry) seasons. Results suggest that the spatial variability in streamflow at low flows is primarily controlled by the dominance of high evaporative demand during the warm period. On the other hand, spatial variability at high flows during the cold period is controlled by the increased dominance of precipitation input over evapotranspiration. By evaluating variability over the entire range of streamflow percentiles, this work explores the nature of hydrologic similarity from a seasonal perspective.
url http://www.hydrol-earth-syst-sci.net/15/989/2011/hess-15-989-2011.pdf
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AT mstieglitz hydrologicsimilarityamongcatchmentsundervariableflowconditions
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