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The Relationship between the Meridional Profile of Zonal- mean Geostrophic Wind and Station Wave at 500 hPa

500hPa场的纬向平均地转风的经向廓线分布与稳定波型的联系(英文)
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摘要 The sea-level pressure (SLP), 500 hPa height, zonal-mean 500 hPa height ([Z(500)]), stationary wave eddy component of the 500 hPa height (Z(500)*) and zonal-mean 500 hPa geostrophic wind [U-g] fields poleward of 20 degreesN are examined for the period 1958-1997, with emphasis on the winter season. The relationships between the Arctic Oscillation (AO)index and algebraic difference of the zonal-mean wind in 55 degreesN and 35 degreesN (Ut) index were investigated, making use the Monte Carlo procedure, Singular Value Decomposition (SVD), Empirical orthogonal function (EOF) and regression method. The leading modes of empirical orthogonal function (EOF's) of SLP are more robust than the 500 hPa height EOF's. not only in the ratio of the two largest eigenvalues, but in more zonally symmetric. Comparing the meridional profiles of zonal-mean wind amplitude associated with the AO and Ut index, the profiles for the two indexes are very similar, both with respect to amplitude and the placement of the maximum and minimum. Comparing the station wave component of 500 hPa height field regressed upon the AO and Ut index. there is one-to-one correspondence between all the major centers of action in the two maps, especially in the North Atlantic and Eurasian continent. The pattern is unlike the prominent teleconnection patterns, they have hemispheric extent and cannot be interpreted in term of the individual wavetrains. The sea-level pressure (SLP), 500 hPa height, zonal-mean 500 hPa height ([Z(500)]), stationary wave eddy component of the 500 hPa height (Z(500)*) and zonal-mean 500 hPa geostrophic wind [U-g] fields poleward of 20 degreesN are examined for the period 1958-1997, with emphasis on the winter season. The relationships between the Arctic Oscillation (AO)index and algebraic difference of the zonal-mean wind in 55 degreesN and 35 degreesN (Ut) index were investigated, making use the Monte Carlo procedure, Singular Value Decomposition (SVD), Empirical orthogonal function (EOF) and regression method. The leading modes of empirical orthogonal function (EOF's) of SLP are more robust than the 500 hPa height EOF's. not only in the ratio of the two largest eigenvalues, but in more zonally symmetric. Comparing the meridional profiles of zonal-mean wind amplitude associated with the AO and Ut index, the profiles for the two indexes are very similar, both with respect to amplitude and the placement of the maximum and minimum. Comparing the station wave component of 500 hPa height field regressed upon the AO and Ut index. there is one-to-one correspondence between all the major centers of action in the two maps, especially in the North Atlantic and Eurasian continent. The pattern is unlike the prominent teleconnection patterns, they have hemispheric extent and cannot be interpreted in term of the individual wavetrains.
作者 方之芳
出处 《Advances in Atmospheric Sciences》 SCIE CAS CSCD 2001年第5期692-700,共9页 大气科学进展(英文版)
基金 This work was supported by LASG, Institute of Atmospheric Physics, Chinese Academy of Sciencesin 2000 and the National Science
关键词 meridional profile station wave eddy component zonal-mean geostrophic wind Arctic Oscillation meridional profile station wave eddy component zonal-mean geostrophic wind Arctic Oscillation
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参考文献8

  • 1Cheng, X,,G Nitsche,J.M.Wallace.Robustness of low-frequency circulation pattern derived from EOFand rotated EOF analyses[].JClimato.1995
  • 2Kidson,J. W.Index cycles in the Northern Hemisphere during the Global Weather Experiment[].Monthly Weather Review.1985
  • 3Thompson D W. J. and J.M.Wallace, 2000: Annular modes in the extratropical circulation.Part 1:month-to-month variability[].Journal of Climate.
  • 4G Branstator.The relationship between zonal mean flow and quasi-stationary waves in the mid-troposphere[].Journal of the Atmospheric Sciences.1984
  • 5Barnston,A. and R E.Livezey, 1987: Classification, seasonality and persistence of low-frequency circulation pat-terns[].Monthly Weather Review.
  • 6M Ting,MP Hoerling,T Xu,A Kumar.Northern hemisphere teleconnection patterns during extreme phases of the zonal-mean circulation[].Journal of Climate.1996
  • 7Thompson D. W. J. and J.M.Wallace, 1998: The Arctic oscillation signature ji wintertime geopotential height andtemperature fields[].Geophysical Research Letters.
  • 8JM Wallace,DS Gutzler.Teleconnections in the geopotential height field during the Northern Hemisphere winter[].Monthly Weather Review.1981

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