The sensitivity of atmospheric blocking to upstream latent heating – numerical experiments

Open access
Date
2020-08-24Type
- Journal Article
ETH Bibliography
yes
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Abstract
Recent studies have pointed to an important role of latent heating during cloud formation for the dynamics of anticyclonic circulation anomalies such as atmospheric blocking. However, the effect of latent heating on blocking formation and maintenance has not yet been fully elucidated. To explicitly study this cause-and-effect relationship, we perform sensitivity simulations of five selected blocking events with the Integrated Forecast System (IFS) global weather prediction model in which we artificially eliminate latent heating in clouds upstream of the blocking anticyclones. This elimination has substantial effects on the upper-tropospheric circulation in all case studies, but there is also significant case-to-case variability: some blocking systems do not develop at all without upstream latent heating, while for others the amplitude, size, and lifetime of the blocking anticyclones are merely reduced. This strong influence of latent heating on the midlatitude flow is due to the injection of air masses with low potential vorticity (PV) into the upper troposphere in strongly ascending “warm conveyor belt” airstreams and the interaction of the associated divergent outflow with the upper-level PV structure. The important influence of diabatic heating demonstrated with these experiments suggests that the accurate representation of moist processes in ascending airstreams in weather prediction and climate models is crucial for blocking dynamics. Show more
Permanent link
https://doi.org/10.3929/ethz-b-000456732Publication status
publishedExternal links
Journal / series
Weather and Climate DynamicsVolume
Pages / Article No.
Publisher
CopernicusOrganisational unit
03854 - Wernli, Johann Heinrich / Wernli, Johann Heinrich
Funding
ETH-09 15-2 - Effects of latent heat release on atmospheric blocking: process understanding, model evaluation and potential impacts of climate change (ETHZ)
165941 - Diabatic processes in North Atlantic weather systems: synoptic and mesoscale dynamics (SNF)
787652 - An integrated weather-system perspective on the characteristics, dynamics and impacts of extreme seasons (EC)
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ETH Bibliography
yes
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