Declining summer circulation over the Eastern Mediterranean and Middle East
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Harikishan Gandham
[1
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Hari Prasad Dasari
[2
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Thang M. Luong
[1
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Raju Attada
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National Center for Meteorology,Climate Change CenterKing Abdullah University of Science and Technology (KAUST),Physical Sciences and Engineering Division
Raju Attada
[2
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Waqar Ul Hassan
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King Abdullah University of Science and Technology (KAUST),Physical Sciences and Engineering DivisionKing Abdullah University of Science and Technology (KAUST),Physical Sciences and Engineering Division
Waqar Ul Hassan
[1
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Prajeesh Athippatta Gopinathan
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National Center for Meteorology,Climate Change CenterKing Abdullah University of Science and Technology (KAUST),Physical Sciences and Engineering Division
Prajeesh Athippatta Gopinathan
[2
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Md Saquib Saharwardi
[3
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Ibrahim Hoteit
[1
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[1] King Abdullah University of Science and Technology (KAUST),Physical Sciences and Engineering Division
[2] National Center for Meteorology,Climate Change Center
[3] Indian Institute of Science Education and Research Mohali,Department of Earth and Environmental Sciences
This study investigates the climatological and interdecadal (1980–2024) variations in summer (June–August) circulation over the Eastern Mediterranean and Middle East (EMME) using ERA5 global atmospheric reanalysis. The EMME summer climate is governed by the evolution of several key atmospheric circulation features: (1) High mean sea level pressure over the eastern Mediterranean (EM), along with a thermal low over the Arabian Peninsula (AP) and, (2) strong subsidence and downward advection of temperature in mid-troposphere centered over the EM, stretching into northern parts of Africa and AP. Diabatic heating released from ISM rainfall induces equatorially trapped westward-propagating Gill-type Rossby wave structure to its west. The interaction of this structure with the midlatitude westerlies gives rise to the aforementioned circulation features over the EMME. Our analysis reveals a substantial decline in the intensity of these circulation features over the study period, indicating an overall weakening of the summer circulation over the EMME. Further investigation points to a marked reduction in the subtropical westerly jet and the underlying westerlies during summer. This weakening may have contributed to reduced subsidence and a further decline in summer circulation strength over the EMME. Consequently, both Etesian winds over the EM and Shamal winds over the northern AP have shown notable declines in their occurrences. The weakened summer wind system has contributed to an abnormal increase in human-perceived temperatures and reduced dust activity.
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Cyprus Inst, Energy Environm & Water Res Ctr, CY-2121 Nicosia, CyprusCyprus Inst, Energy Environm & Water Res Ctr, CY-2121 Nicosia, Cyprus
Tyrlis, Evangelos
Lelieveld, Jos
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Cyprus Inst, Energy Environm & Water Res Ctr, CY-2121 Nicosia, Cyprus
Max Planck Inst Chem, D-55020 Mainz, Germany
King Saud Univ, Riyadh 11451, Saudi ArabiaCyprus Inst, Energy Environm & Water Res Ctr, CY-2121 Nicosia, Cyprus
Lelieveld, Jos
Steil, Benedikt
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Max Planck Inst Chem, D-55020 Mainz, GermanyCyprus Inst, Energy Environm & Water Res Ctr, CY-2121 Nicosia, Cyprus
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Karlsruhe Institute of Technology (KIT),Institute of Meteorology and Climate Research (IMKTRO)Karlsruhe Institute of Technology (KIT),Institute of Meteorology and Climate Research (IMKTRO)
Melissa Latt
Marianna Adinolfi
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CMCC Foundation - Euro-Mediterranean Center on Climate Change,Fredy and Nadine Herrmann Institute of Earth SciencesKarlsruhe Institute of Technology (KIT),Institute of Meteorology and Climate Research (IMKTRO)
Marianna Adinolfi
Paola Mercogliano
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CMCC Foundation - Euro-Mediterranean Center on Climate Change,Fredy and Nadine Herrmann Institute of Earth SciencesKarlsruhe Institute of Technology (KIT),Institute of Meteorology and Climate Research (IMKTRO)
Paola Mercogliano
Assaf Hochman
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The Hebrew University of Jerusalem,undefinedKarlsruhe Institute of Technology (KIT),Institute of Meteorology and Climate Research (IMKTRO)