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Topographic effects on polar low and tropical cyclone development in simple theoretical model

Topographic effects on polar low and tropical cyclone development in simple theoretical model
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摘要 The polar low and tropical cyclone type vortices over topography are assumed to be the axisymmetrical and thermal-wind balanced systems, which are solved as an initial value problem of a linearized vortex equation set in cylindrical coordinates. The roles of the sensible and latent heating, friction, and topography in the structure and intensification of the polar low and tropical cyclone type vortices are analyzed. The radial velocity, vertical velocity, azimuthal velocity, and the unstable growth rate including the topography effects are obtained. It is shown that the interaction between the flow and the topography plays a significant role in the structure and intensification of the polar low and tropical cyclone system. The analysis of the topography term indicates that, in the up-slope side of the mountain, the radial inflow and the vertical ascent forced by the mountain can intensify the polar low and tropical cyclone type vortex and increase the unstable growth rate. However, in the lee side of the mountain, the radial inflow and the vertical descent forced by the mountain can weaken the polar low and tropical cyclone type vortex and decrease the unstable growth rate of the polar low and tropical cyclone system. In addition, the evolutionary process and the spatial structure of the polar low observed over the Japan Sea on 19 December 2003 are investigated with the observational data to verify this theoretical result. The polar low and tropical cyclone type vortices over topography are assumed to be the axisymmetrical and thermal-wind balanced systems, which are solved as an initial value problem of a linearized vortex equation set in cylindrical coordinates. The roles of the sensible and latent heating, friction, and topography in the structure and intensification of the polar low and tropical cyclone type vortices are analyzed. The radial velocity, vertical velocity, azimuthal velocity, and the unstable growth rate including the topography effects are obtained. It is shown that the interaction between the flow and the topography plays a significant role in the structure and intensification of the polar low and tropical cyclone system. The analysis of the topography term indicates that, in the up-slope side of the mountain, the radial inflow and the vertical ascent forced by the mountain can intensify the polar low and tropical cyclone type vortex and increase the unstable growth rate. However, in the lee side of the mountain, the radial inflow and the vertical descent forced by the mountain can weaken the polar low and tropical cyclone type vortex and decrease the unstable growth rate of the polar low and tropical cyclone system. In addition, the evolutionary process and the spatial structure of the polar low observed over the Japan Sea on 19 December 2003 are investigated with the observational data to verify this theoretical result.
出处 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI 2009年第10期1271-1282,共12页 应用数学和力学(英文版)
基金 supported by the National Natural Science Foundation of China (Nos. 40775069 and 40675060) the Science Foundation of Shanghai Typhoon Institute (No. 2006STB03) the Science Foundation of State Key Laboratory of Satellite Ocean Environment Dynamics (No. SOED0904) the Ministry of Science and Technology of the People’s Republic of China (Nos. 2009CB421504 and 2006AA09Z151) the China Meteorological Administration (No. GYHY200706031) the State Oceanic Administration (No. 908020310)
关键词 TOPOGRAPHY analytical solutions polar low tropical cyclone topography, analytical solutions, polar low, tropical cyclone
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参考文献11

  • 1李子良.三维分层流动过双山脉地形激发的大气船舶重力波动力学理论和数值试验[J].地球物理学报,2007,50(1):34-42. 被引量:7
  • 2Ninomiya,K.Polar/comma-cloud lows over the Japan Sea and the northwestern Pacific in winter[].Journal of the Meteorological Society of Japan.1989 被引量:1
  • 3Tsuboki, K.,Wakahama, G.Mesoscale cyclogenesis in winter monsoon air streams: quasi- geostrophic baroclinic instability as a mechanism of the cyclogenesis o? the west coast of Hokkaido Island, Japan[].Journal of the Meteorological Society of Japan.1992 被引量:1
  • 4Lee, T. Y.,Park, Y. Y.,Lin, Y. L.A numerical modeling study of mesoscale cyclogenesis to the east of Korean Peninsula[].Monthly Weather Review.1998 被引量:1
  • 5Li,Z. L.Solitary wave and periodic wave solutions for the thermally forced gravity waves in atmosphere[].J Phys A: Math Theor.2008 被引量:1
  • 6Li, Z. L.,Fu, G.,Chen, J.Periodic structures of atmospheric internal gravity wave under the in?uence of air-sea interaction[].Chaos Solitons Fractals.2009 被引量:1
  • 7Guo, J. T.,Fu. G.,Li, Z. L.,Shao, L. M,,Duan, Y. H.,Wang, J. G.Analyses and numerical modeling of a polar low over the Japan Sea on 19 December 2003[].Atmospheric Research.2007 被引量:1
  • 8Reale, O.,Atlas, R.Tropical cyclone-like vortices in the extratropics: observational evidence and synoptic analysis[].Weather and Forecasting.2001 被引量:1
  • 9Martin, R.,Moore, G. W. K.Transition of a synoptic system to a polar low via interaction with the orography of Greenland[].Tellus A.2006 被引量:1
  • 10Mansfield,D. A.Polar lows: the development of baroclinic disturbances in cold air outbreaks[].Quarterly Journal of the Royal Meteorological Society.1974 被引量:1

二级参考文献13

  • 1Smith R B.The influence of mountains on the atmosphere.Advances in Geophysics,1979,29:87 ~ 230 被引量:1
  • 2Smith R B.Stratified Flow over Topography,Environment Stratified Flows.London:Kluwer Academic Publishers,2002 被引量:1
  • 3Dunan D R.Mountain waves and down-slope flows.Atmospheric processes over complex terrain.Metero.Monographs.W.Blumen,Ed.,Amer.Met.Soc,1990,23:59~81 被引量:1
  • 4Baines P G.Topography Effects in Stratified Flows.London:Cambridge University Press,1995 被引量:1
  • 5Wurtele M G,Sharman R D,Data A.Atmospheric lee waves,Annual Rev.Fluid Mech.,1996,28:429~ 476 被引量:1
  • 6Sharman R D.Three-dimensional structures of forced gravity waves and lee waves.J.Atmos.,Sci.,2004,61:664 ~ 681 被引量:1
  • 7Scorer R S,Wilkinson M.Waves in the lee of an isolated hill.Quart.J.Roy.Meteor.Soc.,1956,82:419~427 被引量:1
  • 8Wurtele M G.The three-dimensional lee wave.Beitr.Phys.Frei.Atmos.,1957,29:242~ 252 被引量:1
  • 9Crapper G D.Waves in the lee of a mountain with elliptical contours.Philos.Trans.Roy.Soc.London,A,1962,254:601~623 被引量:1
  • 10Sawyer J S.Gravity waves in the atmosphere as a three dimensional problem.Quart.J.Roy.Meteor.Soc.,1962,88:412~427 被引量:1

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