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High‐resolution climate characteristics of the Arabian Gulf based on a validated regional reanalysis.

Authors :
Dasari, Hari Prasad
Viswanadhapalli, Yesubabu
Langodan, Sabique
Abualnaja, Yasser
Desamsetti, Srinivas
Vankayalapati, Koteswararao
Thang, Luong
Hoteit, Ibrahim
Source :
Meteorological Applications; Sep/Oct2022, Vol. 29 Issue 5, p1-24, 24p
Publication Year :
2022

Abstract

The regional climate of the Arabian Gulf (AG) and its variability are examined based on a 40‐year (1980–2019), 5‐km regional reanalysis of the Arabian Peninsula (AP reanalysis). The AP reanalysis fields were first validated against the available observations over the AG, suggesting that this high‐resolution reanalysis well reproduces the spatio‐temporal features of the AG atmospheric circulations. The validated AP reanalysis fields were then analysed to examine the climatic characteristics over the AG including the monthly mean, maximum and minimum temperatures, and the seasonal variations in winds, relative humidity and rainfall over the AG. The AG climate is mostly dry between May and October, and experiences moderate rainfall between December and January. The higher (lower) pressure difference between the northwest and southeast AG during summer (winter) generates the northwesterly Shamal winds over the north (central) AG. The mean Shamal winds are relatively stronger (weaker) and prolonged (shorter) during summer (winter); however, the short lived Shamal jet events in winter can be occasionally stronger than summer. In terms of interannual variability, the Shamal winds are stronger and more persistent in summer during El Niño years and in winter during La Niña years. These differences are mainly associated with changes in temperature gradients between the eastern AG and northwestern AP. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
13504827
Volume :
29
Issue :
5
Database :
Complementary Index
Journal :
Meteorological Applications
Publication Type :
Academic Journal
Accession number :
159936931
Full Text :
https://doi.org/10.1002/met.2102