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  4. Groundwater influence on the frequency of heatwaves: A global perspective
 
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Groundwater influence on the frequency of heatwaves: A global perspective

Publikationstyp
Conference Paper
Date Issued
2024-04
Sprache
English
Author(s)
Vogelbacher, Anastasia  
Geohydroinformatik B-9  
Aminzadeh, Milad  
Geo-Hydroinformatics B-9  
Afshar, Mehdi H.  
Geo-Hydroinformatics B-9  
Shokri, Nima  
Geohydroinformatik B-9  
TORE-URI
https://tore.tuhh.de/handle/11420/53059
Citation
European Geosciences Union General Assembly, EGU24
Contribution to Conference
European Geosciences Union General Assembly, EGU24  
Publisher DOI
10.5194/egusphere-egu24-10493
Groundwater plays a crucial role in land-atmosphere interactions through its effect on soil moisture, evaporation and thus surface heat fluxes (1). Variation of rainfall patterns in a changing climate and the increase in water demands are expected to influence groundwater dynamics that affect soil moisture-air temperature feedback processes and subsequently the occurrence of heatwaves. The decline in groundwater levels with intensified abstraction could hinder its buffer capacities to impede soil desiccation and onset of heatwaves. The current understanding of the relationship between shallow groundwater tables and heatwave events is often limited to regional studies or specific land covers, with a very few endeavors seeking to characterize global-scale trends and responses. We thus aim to globally investigate the relation between groundwater levels and heatwave events considering different land cover types and environmental variables by conducting a wide-ranging statistical analysis. Our approach involved leveraging a comprehensive dataset, allowing us to distinguish potential links between groundwater tables and the frequency of heatwaves over a range of geographical and climatological parameters. The findings from our investigation provide valuable insights into the relationship between groundwater dynamics and heatwave frequency within the broader context of the interactions between soil moisture and air temperature. This information will aid in devising effective action plan to mitigate the adverse effects of climate change.
Subjects
heatwaves
groundwater
DDC Class
577: Ecology
624.15: Geotechnical Engineering
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