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Title: | Potential changes in temperature extreme events under global warming at 1.5 ◦C and 2 ◦C over Cote d’Ivoire |
Authors: | N’Datchoh, E.T. Kouadio, K. Silué, S. Bamba, A. Naabil, E. Djè, K.B. Diedhiou, A. Sylla, M.B. Anquetin, S. Lennard, C. |
Keywords: | extreme event temperature climatic zones Cote d’Ivoire global warming level |
Issue Date: | Jul-2022 |
Publisher: | Environmental Research Climate |
Abstract: | This work investigated the impact of 1.5 ◦C and 2 ◦C of global warming levels (GWLs) above pre-industrial levels on annual and seasonal mean changes in temperature extremes over Cˆote d’Ivoire and its different climatic zones. We used the multi-model Coordinated Regional Climate Downscaling Experiment for Africa of 25 regional climate models under the RCP8.5 scenario. The changes in temperature are quantified relative to the period 1971–2000 based on five Expert Team on Climate Change Detection and Indices indexes namely for warm spells, hot nights, hot days, cold nights and cold days. We show that a global warming of 1.5 ◦C and 2 ◦C will lead to an increase in the frequency of warm days and warm nights and a decrease in the occurrence of cold days and cold nights across Cˆote d’Ivoire in all climatic zones and seasons. More than 80% of the model ensemble members project this change at both GWLs. Moreover, the assessment of differences in GWLs highlights that the difference between the 1.5 ◦C and 2 ◦C thresholds may intensify the changes over all the country, climatic zones and seasons. Therefore this 0.5 ◦C difference in global warming is likely to impact upon energy demand and the agricultural system throughout the country and over all of the seasons. This study provides climate information for decision makers related to sectors such as agriculture, energy in their adaptation strategies. |
Description: | Research Article |
URI: | http://197.159.135.214/jspui/handle/123456789/720 |
Appears in Collections: | West African Climate Systems |
Files in This Item:
File | Description | Size | Format | |
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Potential changes in temperature extreme events under global.pdf | 2.01 MB | Adobe PDF | View/Open |
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