EGU2020-1392
https://doi.org/10.5194/egusphere-egu2020-1392
EGU General Assembly 2020
© Author(s) 2020. This work is distributed under
the Creative Commons Attribution 4.0 License.

Topographic forcing from East Asia and North America in the northern winter stratosphere and their mutual interference

Rongcai Ren1, Xin Xia1, and Jian Rao2
Rongcai Ren et al.
  • 1Institute of Atmospheric Physics, CAS, Beijing, China (rrc@lasg.iap.ac.cn)
  • 2Nanjing University of Information and Scientific Technology, Nanjing, China

This study uses the stratosphere-resolved Whole Atmosphere Community Climate Model to demonstrate the “independent” and “dependent” topographic forcing from the topography of East Asia (EA) and North American (NA), and their “joint” forcing in the northern winter stratosphere. The mutual interference between the EA and NA forcing is also demonstrated. Specifically, without EA, an independent NA can also, like EA, induce a severe polar warming and weakening of the stratospheric polar vortex. While EA favors a displacement of the polar vortex toward Eurasia, NA favors a displacement toward the North America–Atlantic region. However, the independent-EA-forced weakening effect on the polar vortex can be largely decreased and changes to a location displacement when NA exists, and the interference the other way around is even more critical, being able to completely offset the independent-NA-forced effect, because EA can substantively obstruct NA’s effect on the tropospheric wave pattern over the Eurasia–Pacific region. The much stronger/weaker interference of EA/NA is associated with its stronger/weaker downstream weakening effect on the zonal flow that impinges on NA/EA. The mutual interference always tends to further destruct the upward wave fluxes over the eastern North Pacific and enhance the downward wave fluxes over NA. The overall changes in upward wave fluxes, as well as that in the Rossby stationary wavenumber responsible for the stratospheric changes, are related to changes in the zonal-mean flow pattern. The joint effects of EA and NA, rather than being a linear superimposition of their independent effects, are largely dominated by the effects of EA.

How to cite: Ren, R., Xia, X., and Rao, J.: Topographic forcing from East Asia and North America in the northern winter stratosphere and their mutual interference , EGU General Assembly 2020, Online, 4–8 May 2020, EGU2020-1392, https://doi.org/10.5194/egusphere-egu2020-1392, 2019

This abstract will not be presented.