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THE SEMI-GEOSTROPHIC ADAPTATION PROCESS WITH TWO-LAYER BAROCLINIC MODEL IN LOW LATITUDE ATMOSPHERE

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  • In this paper, the adaptation process in low latitude atmosphere is discussed by means of a two-layer baroclinic model on the equator β plane, showing that the adaptation process in low latitude is mainly dominated by the internal inertial gravity waves. The initial ageostrophic energy is dispersed by the internal inertial gravity waves, and as a result, the geostrophic motion is obtained in zonal direction while the ageostro-phic motion maintains in meridional direction, which can be called semi-geostrophic balance in barotropic model as well as semi-thermal-wind balance in baroclinic model. The vertical motion is determined both by the distribution of the initial vertical motion and that of the initial vertical motion tendency, but it is unrelated to the initial potential vorticity. Finally, the motion tends to be horizontal. The discussion of the physical mechanism of the semi-thermal-wind balance in low latitude atmosphere shows that the achievement of the semi-thermal-wind balance is due to the adjustment between the stream field and the temperature field through the horizontal convergence and divergence which is related to the vertical motion excited by the internal inertial gravity waves. The terminal adaptation state obtained shows that the adaptation direction between the mean temperature field and the shear flow field is determined by the ratio of the scale of the initial ageostrophic disturbance to the scale of one character scale related to the baroclinic Rossby radius of deformation. The shear stream field adapts to the mean temperature field when the ratio is greater than 1, and the mean temperature field adapts to the shear stream field when the ratio is smaller than 1.
  • [1] Chao J P,Lin Y H,1996.The foundation and movement of tropical semi-geostrophic adaptation,Acta.Meteor. Sin.,10:129-141.
    [2] Chen Qiushi,1963.On the formation and destruction of thermal wind in a simple baroclinic atmosphere(I)(in Chinese).Acta Meteor.Sin.,33:51-63.
    [3] Lin Yonghui,Chao J P,1963.Tropic semi-geostrophic adaptation process(in Chinese).Sci.Sin.(Series D), 27:566-573.
    [4] Liu S K,Sun Feng,Scale analysis and physical mechanism of geostrophic adaptation theory in tropic atmosphere(in Chinese).Chinese J.Atmos.Sci.(to be published).
    [5] Obouhov A M,1949.The problem of the geostrophic adaptation.Izverstiya,of academy of science USSE.Ser. Geography and Geophsics,13:281-289.
    [6] Rossby C G,1937.On the mutual adjustment of pressure and velocity distribution in certain simple current system I.J.Mar.Res.,1:15-28.
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DENG Lian-tang, SUN Feng, LIU Shi-kuo. THE SEMI-GEOSTROPHIC ADAPTATION PROCESS WITH TWO-LAYER BAROCLINIC MODEL IN LOW LATITUDE ATMOSPHERE [J]. Journal of Tropical Meteorology, 2000, 6(1): 15-28.
DENG Lian-tang, SUN Feng, LIU Shi-kuo. THE SEMI-GEOSTROPHIC ADAPTATION PROCESS WITH TWO-LAYER BAROCLINIC MODEL IN LOW LATITUDE ATMOSPHERE [J]. Journal of Tropical Meteorology, 2000, 6(1): 15-28.
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Manuscript History

Manuscript received: 14 May 1999
Manuscript revised: 25 January 2000
通讯作者: 陈斌, bchen63@163.com
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THE SEMI-GEOSTROPHIC ADAPTATION PROCESS WITH TWO-LAYER BAROCLINIC MODEL IN LOW LATITUDE ATMOSPHERE

Abstract: In this paper, the adaptation process in low latitude atmosphere is discussed by means of a two-layer baroclinic model on the equator β plane, showing that the adaptation process in low latitude is mainly dominated by the internal inertial gravity waves. The initial ageostrophic energy is dispersed by the internal inertial gravity waves, and as a result, the geostrophic motion is obtained in zonal direction while the ageostro-phic motion maintains in meridional direction, which can be called semi-geostrophic balance in barotropic model as well as semi-thermal-wind balance in baroclinic model. The vertical motion is determined both by the distribution of the initial vertical motion and that of the initial vertical motion tendency, but it is unrelated to the initial potential vorticity. Finally, the motion tends to be horizontal. The discussion of the physical mechanism of the semi-thermal-wind balance in low latitude atmosphere shows that the achievement of the semi-thermal-wind balance is due to the adjustment between the stream field and the temperature field through the horizontal convergence and divergence which is related to the vertical motion excited by the internal inertial gravity waves. The terminal adaptation state obtained shows that the adaptation direction between the mean temperature field and the shear flow field is determined by the ratio of the scale of the initial ageostrophic disturbance to the scale of one character scale related to the baroclinic Rossby radius of deformation. The shear stream field adapts to the mean temperature field when the ratio is greater than 1, and the mean temperature field adapts to the shear stream field when the ratio is smaller than 1.

DENG Lian-tang, SUN Feng, LIU Shi-kuo. THE SEMI-GEOSTROPHIC ADAPTATION PROCESS WITH TWO-LAYER BAROCLINIC MODEL IN LOW LATITUDE ATMOSPHERE [J]. Journal of Tropical Meteorology, 2000, 6(1): 15-28.
Citation: DENG Lian-tang, SUN Feng, LIU Shi-kuo. THE SEMI-GEOSTROPHIC ADAPTATION PROCESS WITH TWO-LAYER BAROCLINIC MODEL IN LOW LATITUDE ATMOSPHERE [J]. Journal of Tropical Meteorology, 2000, 6(1): 15-28.
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