Social-media and newspaper reports reveal large-scale meteorological drivers of floods on Sumatra

Author:

Baranowski Dariusz B.ORCID,Flatau Maria K.,Flatau Piotr J.,Karnawati Dwikorita,Barabasz Katarzyna,Labuz Michal,Latos Beata,Schmidt Jerome M.,Paski Jaka A. I.,Marzuki ORCID

Abstract

AbstractFloods are a major contributor to natural disasters in Sumatra. However, atmospheric conditions leading to floods are not well understood due, among other factors, to the lack of a complete record of floods. Here, the 5 year flood record for Sumatra derived from governmental reports, as well as from crowd-sourcing data, based on Twitter messages and local newspapers’ reports, is created and used to analyze atmospheric phenomena responsible for floods. It is shown, that for the majority of analyzed floods, convectively coupled Kelvin waves, large scale precipitation systems propagating at ∼12 m/s along the equator, play the critical role. While seasonal and intraseasonal variability can also create conditions favorable for flooding, the enhanced precipitation related to Kelvin waves was found in over 90% of flood events. In 30% of these events precipitation anomalies were attributed to Kelvin waves only. These results indicate the potential for increased predictability of flood risk.

Funder

Fundacja na rzecz Nauki Polskiej

United States Department of Defense | United States Navy | U.S. Naval Research Laboratory

National Science Foundation

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry

Reference49 articles.

1. MunichRe. NatCatSERVICE Database (Munich Reinsurance Company, Geo Risks Research, Munich). https://natcatservice.munichre.com/. Accessed 8 May 2019 (2019).

2. Jongman, B. et al. Declining vulnerability to river floods and the global benefits of adaptation. Proc. Natl Acad. Sci. USA 112, E2271–E2280 (2015).

3. National Academies of Sciences & Medicine. Framing the Challenge of Urban Flooding in the United States. https://www.nap.edu/catalog/25381/framing-the-challenge-of-urban-flooding-in-the-united-states. (The National Academies Press, Washington, DC, 2019).

4. Hallegatte, S., Green, C., Nicholls, R. J. & Corfee-Morlot, J. Future flood losses in major coastal cities. Nat. Clim. Change 3, 802–806 (2013).

5. Kundzewicz, Z. W. et al. lood risk and climate change: global and regional perspectives. Hydrological Sci. J. 59, 1–28 (2014).

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