A linear,hemispheric and stationary spectral model with multilayers in the vertical was employed to simulate thevertical propagation of waves triggered by mountains.Results show that,in cooperation with the East Asia zonal meanflow,Tibetan Plateau can excite a strong wavenumber 1 perturbation in the stratosphere with its ridge and trough lo-cated over the Pacific and Atlantic Oceans respectively.On the other hand,the stratospheric wavenumber 1 perturbationcaused by the mechanical forcing of the Rocky Mountains in cooperation with the North America zonal mean flow isvery weak.Calculations from observational data of the vertical profile of critical wavenumber for vertically propagatingwaves imply that the tropospheric wavenumber 1 perturbation can hardly penetrate the North America tropopause up-wards,whereas it can freely propagate through the East Asia tropopause into the stratosphere.Two-dimensional E-Pcross-sections obtained from both observational data and simulated results also demonstrate that waves excited by theRocky Mountains are refracted towards low latitudes in the troposphere during their upward propagation:whereas,inaddition to the above mentioned equatorward leaning branch,the wavenumber 1 and 2 planetary waves excited by theTibetan Plateau possess another branch which is refracted to high latitudes during upward propagation and penetratesthe tropopause into the stratosphere.It is therefore concluded that the difference in the horizontal and vertical wavepropagations in the two hemispheres is a result of the different dynamical forcing induced by the two main mountains inthe Northern Hemisphere.
机构:
Department of Atmospheric and Oceanic Sciences, Institute of Atmospheric Sciences, Fudan University
College of Geography and Resources Science, Sichuan Normal University
CMA-FDU Joint Laboratory of Marine MeteorologyDepartment of Atmospheric and Oceanic Sciences, Institute of Atmospheric Sciences, Fudan University
Huan WANG
Zhiyan ZUO
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Department of Atmospheric and Oceanic Sciences, Institute of Atmospheric Sciences, Fudan University
National Observations and Research Station for Wetland Ecosystems of the Yangtze Estuary
Shanghai Frontiers Science Center of Atmosphere-Ocean InteractionDepartment of Atmospheric and Oceanic Sciences, Institute of Atmospheric Sciences, Fudan University
Zhiyan ZUO
Kaiwen ZHANG
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Department of Atmospheric and Oceanic Sciences, Institute of Atmospheric Sciences, Fudan University
Chinese Academy of Meteorological Sciences, China Meteorological AdministrationDepartment of Atmospheric and Oceanic Sciences, Institute of Atmospheric Sciences, Fudan University
Kaiwen ZHANG
Lulei BU
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Department of Atmospheric and Oceanic Sciences, Institute of Atmospheric Sciences, Fudan UniversityDepartment of Atmospheric and Oceanic Sciences, Institute of Atmospheric Sciences, Fudan University
Lulei BU
Dong XIAO
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Key Laboratory of Cites' Mitigation and Adaptation to Climate Change in Shanghai, China Meteorological AdministrationDepartment of Atmospheric and Oceanic Sciences, Institute of Atmospheric Sciences, Fudan University