Increased U.S. coastal hurricane risk under climate change

Author:

Balaguru Karthik1ORCID,Xu Wenwei1ORCID,Chang Chuan-Chieh1,Leung L. Ruby1ORCID,Judi David R.1,Hagos Samson M.1,Wehner Michael F.2ORCID,Kossin James P.3,Ting Mingfang4ORCID

Affiliation:

1. Pacific Northwest National Laboratory, Richland, WA, USA.

2. Lawrence Berkeley National Laboratory, Berkeley, CA, USA.

3. The Climate Service, an S&P Global Company, Madison, WI, USA.

4. Lamont-Doherty Earth Observatory, Columbia University, Palisades, NY, USA.

Abstract

Several pathways for how climate change may influence the U.S. coastal hurricane risk have been proposed, but the physical mechanisms and possible connections between various pathways remain unclear. Here, future projections of hurricane activity (1980–2100), downscaled from multiple climate models using a synthetic hurricane model, show an enhanced hurricane frequency for the Gulf and lower East coast regions. The increase in coastal hurricane frequency is driven primarily by changes in steering flow, which can be attributed to the development of an upper-level cyclonic circulation over the western Atlantic. The latter is part of the baroclinic stationary Rossby waves forced mainly by increased diabatic heating in the eastern tropical Pacific, a robust signal across the multimodel ensemble. Last, these heating changes also play a key role in decreasing wind shear near the U.S. coast, further aggravating coastal hurricane risk enhanced by the physically connected steering flow changes.

Publisher

American Association for the Advancement of Science (AAAS)

Subject

Multidisciplinary

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