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Heatwaves in Mozambique 1983–2016: Characteristics, trends and city-level summaries using high-resolution CHIRTS-daily

Authors :
Carolina Pereira Marghidan
Maarten van Aalst
Justine Blanford
Kiswendsida Guigma
Izidine Pinto
Genito Maure
Tatiana Marrufo
Source :
Weather and Climate Extremes, Vol 40, Iss , Pp 100565- (2023)
Publication Year :
2023
Publisher :
Elsevier, 2023.

Abstract

The intensity, frequency, and duration of heatwaves are increasing worldwide. Still, heatwaves are systematically underreported and underresearched across the African continent. This study examines heatwaves across Mozambique, a country highly vulnerable to a variety of climate risks yet where heatwaves have received little to no attention. A spatio-temporal analysis was conducted for five heatwave characteristics (heatwave number, frequency, duration, amplitude, and magnitude) and corresponding trends from 1983 to 2016. This was done using the remotely sensed CHIRTS-daily, which presents one of the most accurate and highest resolution (5 × 5 km) daily temperature product currently available, especially for data-scarce regions. Three heatwave definitions were analyzed and compared, which are based on (1) the 90th percentile of daily maximum temperature (TX90), (2) the 90th percentile of daily minimum temperature (TN90), and (3) the Excess Heat Factor (EHF). Results were overlayed with high-resolution population data to obtain heatwave exposure and likely potential implications. Our findings show that Mozambique has experienced many heatwaves over the past decades. On average, 2–18.6 annual heatwave days (HWF) were recorded with the longest heatwaves (HWD) lasting X- 11.5 days. More and longer heatwaves were observed in the North and along the coast of Mozambique. Heatwave magnitude (HWM) ranged from 0.3 to 6.8 °C and amplitude (HWA) from 0.8 to 11.7 °C, with highest values in South and Central Mozambique. Heatwave events, days, and duration were found to be significantly increasing (p

Details

Language :
English
ISSN :
22120947
Volume :
40
Issue :
100565-
Database :
Directory of Open Access Journals
Journal :
Weather and Climate Extremes
Publication Type :
Academic Journal
Accession number :
edsdoj.64530bd7becc4b26a10e7ec99a4669da
Document Type :
article
Full Text :
https://doi.org/10.1016/j.wace.2023.100565