4.7 Article

Stratospheric drivers of extreme events at the Earth's surface

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SPRINGERNATURE
DOI: 10.1038/s43247-020-00060-z

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  1. Swiss National Science Foundation [PP00P2_170523]
  2. NSF [1756958]
  3. Swiss National Science Foundation (SNF) [PP00P2_170523] Funding Source: Swiss National Science Foundation (SNF)
  4. Directorate For Geosciences
  5. Div Atmospheric & Geospace Sciences [1756958] Funding Source: National Science Foundation

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The stratosphere, the layer of the atmosphere at heights between 10-50 km, is an important source of variability for the weather and climate at the Earth's surface on timescales of weeks to decades. Since the stratospheric circulation evolves more slowly than that of the troposphere below, it can contribute to predictability at the surface. Our synthesis of studies on the coupling between the stratosphere and the troposphere reveals that the stratosphere also contributes substantially to a wide range of climate-related extreme events. These extreme events include cold air outbreaks and extreme heat, air pollution, wildfires, wind extremes, and storm clusters, as well as changes in tropical cyclones and sea ice cover, and they can have devastating consequences for human health, infrastructure, and ecosystems. A better understanding of the vertical coupling in the atmosphere, along with improved representation in numerical models, is therefore expected to help predict extreme events on timescales from weeks to decades in terms of the event type, magnitude, frequency, location, and timing. With a better understanding of stratosphere-troposphere coupling, it may be possible to link more tropospheric extremes to stratospheric forcing, which will be crucial for emergency planning and management. Coupling between the stratosphere and the troposphere contributes to extreme events at the Earth's surface, and can help with predictability on timescales from weeks to decades, according to a synthesis of the influence of the stratosphere on surface climate.

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