Near invariance of poleward atmospheric heat transport in response to mid-latitude orography

Journal of Climate(2022)

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摘要
Abstract Total poleward atmospheric heat transport (AHT) is similar in both magnitude and latitudinal structure between the Northern and Southern Hemispheres. These similarities occur despite more major mountain ranges in the Northern Hemisphere, which help create substantial stationary eddy AHT that is largely absent in the Southern Hemisphere. However, this hemispheric difference in stationary eddy AHT is compensated by hemispheric differences in other dynamic components of AHT so that total AHT is similar between hemispheres. In order to understand how AHT compensation occurs, we add mid-latitude mountain ranges in two different general circulation models that are otherwise configured as aquaplanets. Even when mid-latitude mountains are introduced, total AHT is nearly invariant. We explore the near invariance of total AHT in response to orography through dynamic, energetic, and diffusive perspectives. Dynamically, orographically induced changes to stationary eddy AHT are compensated by changes in both transient eddy and mean meridional circulation AHT. This creates an AHT system with three interconnected components that resist large changes to total AHT. Energetically, the total AHT can only change if the top-of-atmosphere net radiation changes at the equator-to-pole scale. Mid-latitude orography does not create large-enough changes in the equator-to-pole temperature gradient to alter outgoing longwave radiation enough to substantially change total AHT. In the zonal mean, changes to absorbed shortwave radiation also often compensate for changes in outgoing longwave radiation. Diffusively, the atmosphere smooths anomalies in temperature and humidity created by the addition of mid-latitude orography, such that total AHT is relatively invariant.
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关键词
Atmospheric circulation,Eddies,Fluxes,Stationary waves,Heat budgets/fluxes
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