Heatwave Location Changes in Relation to Rossby Wave Phase Speed

Author:

Wicker Wolfgang1ORCID,Harnik Nili2ORCID,Pyrina Maria34ORCID,Domeisen Daniela I. V.13ORCID

Affiliation:

1. Faculty of Geosciences and Environment University of Lausanne Lausanne Switzerland

2. Porter School of the Environment and Earth Sciences Tel Aviv University Tel Aviv Israel

3. Institute for Atmospheric and Climate Science ETH Zurich Zurich Switzerland

4. Center for Climate Systems Modeling (C2SM) Zurich Switzerland

Abstract

AbstractSurface anticyclones connected to the ridge of an upper‐tropospheric Rossby wave are the main dynamical drivers of mid‐latitude summer heatwaves. It is, however, unclear to what extent an anomalously low zonal phase speed of the wave in the upper troposphere is necessary for persistent temperature extremes at the surface. Here, we use spectral decomposition to separate fast and slow synoptic‐scale waves. A composite analysis of ERA5 reanalysis data reveals that, while in some regions heatwaves become more frequent during episodes of weak or no phase propagation, temperature extremes in other regions are commonly associated with more rapidly eastward propagating Rossby waves. Reflected in the mean heatwave duration as well, this relationship is possibly linked to a longitudinal phase preference of slow and fast waves or a meridional storm track shift. These findings open up new questions about the influence of mid‐latitude dynamics on temperature extremes.

Funder

European Research Council

Publisher

American Geophysical Union (AGU)

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