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Equatorial Waves Triggering Extreme Rainfall and Floods in Southwest Sulawesi, Indonesia.

Authors :
LATOS, BEATA
LEFORT, THIERRY
FLATAU, MARIA K.
FLATAU, PIOTR J.
PERMANA, DONALDI S.
BARANOWSKI, DARIUSZ B.
PASKI, JAKA A. I.
MAKMUR, ERWIN
SULYSTYO, EKO
PEYRILLÉ, PHILIPPE
ZHE FENG
MATTHEWS, ADRIAN J.
SCHMIDT, JEROME M.
Source :
Monthly Weather Review; May2021, Vol. 149 Issue 5, p1381-1401, 21p
Publication Year :
2021

Abstract

On the basis of detailed analysis of a case study and long-term climatology, it is shown that equatorial waves and their interactions serve as precursors for extreme rain and flood events in the central Maritime Continent region of southwest Sulawesi, Indonesia. Meteorological conditions on 22 January 2019 leading to heavy rainfall and devastating flooding in this area are studied. It is shown that a convectively coupled Kelvin wave (CCKW) and a convectively coupled equatorial Rossby wave (CCERW) embedded within the larger-scale envelope of the Madden--Julian oscillation (MJO) enhanced convective phase, contributed to the onset of a mesoscale convective system that developed over the Java Sea. Low-level convergence from the CCKW forced mesoscale convective organization and orographic ascent of moist air over the slopes of southwest Sulawesi. Climatological analysis shows that 92% of December--February floods and 76% of extreme rain events in this region were immediately preceded by positive low-level westerly wind anomalies. It is estimated that both CCKWs and CCERW spropagating over Sulawesi double the chance of floods and extreme rain event development, while the probability of such hazardous events occurring during their combined activity is 8 times greater than on a random day. While the MJO is a key component shaping tropical atmospheric variability, it is shown that its usefulness as a single factor for extreme weather-driven hazard prediction is limited. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00270644
Volume :
149
Issue :
5
Database :
Complementary Index
Journal :
Monthly Weather Review
Publication Type :
Academic Journal
Accession number :
150098981
Full Text :
https://doi.org/10.1175/MWR-D-20-0262.1