A characterisation of climate variability and trends in hydrological extremes in the Severn Uplands

Hydrological and climatic characteristics were investigated within the Severn Uplands to determine the interconnection between variables with a focus on understanding changes in hydrological extremes. Time series of precipitation and flows over a 30-year period were analysed for trends in extremes....

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Published in:International Journal of Climatology
Main Authors: Biggs, Eloise M., Atkinson, Peter M.
Format: Article in Journal/Newspaper
Language:unknown
Published: 2011
Subjects:
Online Access:https://eprints.lancs.ac.uk/id/eprint/77073/
https://doi.org/10.1002/joc.2176
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spelling ftulancaster:oai:eprints.lancs.ac.uk:77073 2023-08-27T04:11:00+02:00 A characterisation of climate variability and trends in hydrological extremes in the Severn Uplands Biggs, Eloise M. Atkinson, Peter M. 2011-09 https://eprints.lancs.ac.uk/id/eprint/77073/ https://doi.org/10.1002/joc.2176 unknown Biggs, Eloise M. and Atkinson, Peter M. (2011) A characterisation of climate variability and trends in hydrological extremes in the Severn Uplands. International Journal of Climatology, 31 (11). pp. 1634-1652. ISSN 0899-8418 Journal Article PeerReviewed 2011 ftulancaster https://doi.org/10.1002/joc.2176 2023-08-03T22:28:33Z Hydrological and climatic characteristics were investigated within the Severn Uplands to determine the interconnection between variables with a focus on understanding changes in hydrological extremes. Time series of precipitation and flows over a 30-year period were analysed for trends in extremes. The Mann–Kendall (MK) non-parametric test was used to detect trends at six rain gauges and five flow gauges across the catchment. Maxima, percentiles and N-day maxima of precipitation and flow distributions were investigated to identify changes in extreme intensity, frequency and persistence, respectively. Results indicated some significant statistical trends at annual, seasonal, and monthly scales. The largest number of significant trends in extreme precipitation was identified at mountainous gauge locations where significant increases in extreme precipitation persistence were detected annually and during spring and winter. Additionally, significant increases in extreme precipitation frequency were observed annually and during autumn and winter. Trends in flow identified an increase in extreme intensity on an annual basis, as well as during winter and the month of July, and a decrease in extreme frequency at certain stations during spring. Changes in climate variables were investigated to identify causal relationships with precipitation and flow hydrological extremes. Extremes were found to coincide with certain weather types, generally characteristic of cyclonic conditions and/or orographic enhancement. These were largely correlated with strong positive and negative stages of the North Atlantic oscillation, particularly during winter. Snow cover records indicated rapid decline in the Severn Uplands and a reduction in snow indicated a link to changes in spring hydrological extremes. All changes seemed to be driven by the underlying climate variable of air temperature, which coincided with changes in observed national and global temperature records. Hydroclimatological changes indicated a possible temporal shift in ... Article in Journal/Newspaper North Atlantic North Atlantic oscillation Lancaster University: Lancaster Eprints Kendall ENVELOPE(-59.828,-59.828,-63.497,-63.497) International Journal of Climatology 31 11 1634 1652
institution Open Polar
collection Lancaster University: Lancaster Eprints
op_collection_id ftulancaster
language unknown
description Hydrological and climatic characteristics were investigated within the Severn Uplands to determine the interconnection between variables with a focus on understanding changes in hydrological extremes. Time series of precipitation and flows over a 30-year period were analysed for trends in extremes. The Mann–Kendall (MK) non-parametric test was used to detect trends at six rain gauges and five flow gauges across the catchment. Maxima, percentiles and N-day maxima of precipitation and flow distributions were investigated to identify changes in extreme intensity, frequency and persistence, respectively. Results indicated some significant statistical trends at annual, seasonal, and monthly scales. The largest number of significant trends in extreme precipitation was identified at mountainous gauge locations where significant increases in extreme precipitation persistence were detected annually and during spring and winter. Additionally, significant increases in extreme precipitation frequency were observed annually and during autumn and winter. Trends in flow identified an increase in extreme intensity on an annual basis, as well as during winter and the month of July, and a decrease in extreme frequency at certain stations during spring. Changes in climate variables were investigated to identify causal relationships with precipitation and flow hydrological extremes. Extremes were found to coincide with certain weather types, generally characteristic of cyclonic conditions and/or orographic enhancement. These were largely correlated with strong positive and negative stages of the North Atlantic oscillation, particularly during winter. Snow cover records indicated rapid decline in the Severn Uplands and a reduction in snow indicated a link to changes in spring hydrological extremes. All changes seemed to be driven by the underlying climate variable of air temperature, which coincided with changes in observed national and global temperature records. Hydroclimatological changes indicated a possible temporal shift in ...
format Article in Journal/Newspaper
author Biggs, Eloise M.
Atkinson, Peter M.
spellingShingle Biggs, Eloise M.
Atkinson, Peter M.
A characterisation of climate variability and trends in hydrological extremes in the Severn Uplands
author_facet Biggs, Eloise M.
Atkinson, Peter M.
author_sort Biggs, Eloise M.
title A characterisation of climate variability and trends in hydrological extremes in the Severn Uplands
title_short A characterisation of climate variability and trends in hydrological extremes in the Severn Uplands
title_full A characterisation of climate variability and trends in hydrological extremes in the Severn Uplands
title_fullStr A characterisation of climate variability and trends in hydrological extremes in the Severn Uplands
title_full_unstemmed A characterisation of climate variability and trends in hydrological extremes in the Severn Uplands
title_sort characterisation of climate variability and trends in hydrological extremes in the severn uplands
publishDate 2011
url https://eprints.lancs.ac.uk/id/eprint/77073/
https://doi.org/10.1002/joc.2176
long_lat ENVELOPE(-59.828,-59.828,-63.497,-63.497)
geographic Kendall
geographic_facet Kendall
genre North Atlantic
North Atlantic oscillation
genre_facet North Atlantic
North Atlantic oscillation
op_relation Biggs, Eloise M. and Atkinson, Peter M. (2011) A characterisation of climate variability and trends in hydrological extremes in the Severn Uplands. International Journal of Climatology, 31 (11). pp. 1634-1652. ISSN 0899-8418
op_doi https://doi.org/10.1002/joc.2176
container_title International Journal of Climatology
container_volume 31
container_issue 11
container_start_page 1634
op_container_end_page 1652
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