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Effect of the atmospheric heat source on the development and eastward movement of the Tibetan Plateau vortices Cover

Effect of the atmospheric heat source on the development and eastward movement of the Tibetan Plateau vortices

By: ,  ,   and    
Open Access
|Dec 2014

References

  1. Chen B. M. , Qian Z. A. , Zhang L. S . Numerical simulation of formation and development of vortices over the Qinghai-Xizang Plateau in summer. Chin. J. Atmos. Sci. 1996; 20: 491502. (in Chinese).
  2. Dee D. P. , Uppala S. M. , Simmons A. J. , Berrisford P. , Poli P. , co-authors . The ERA-Interim reanalysis: configuration and performance of the data assimilation system. Q. J. Roy. Meteorol. Soc. 2011; 137: 553597.
  3. Dell'Osso L. , Chen S. J . Numerical experiments on the genesis of vortices over the Qinghai-Xizang Plateau. Tellus A. 1986; 38: 235250.
  4. Ding Y. H . The Diagnostic Analysis Methods of Synoptic Dynamics. (in Chinese).
  5. Ding Z. Y. , Lu J. N . A numerical experiment on the eastward movement of a Qinghai-Xizang Plateau low vortex. J. Nanjing Inst. Meteorol. 1990; 13: 426431. (in Chinese).
  6. Frank W. M . The structure and energetics of the tropical cyclone I: storm structure. Mon. Weather Rev. 1977; 105: 11191135.
  7. Gao W. L. , Yu S. H . Analyses on mean circulation field of the plateau low vortex moving out of the Tibetan Plateau. Plateau Meteorol. 2007; 26: 206212. (in Chinese).
  8. Gray W. M . Recent Advance in Tropical Cyclone Research from Rawinsonde Composite Analysis. 1981; Geneva, Switzerland: WMO Program on Research in Tropical Meteorology, World Meteorological Organization. p. 407.
  9. Gu Q. Y. , Shi R. , Xu H. M . Comparison analysis of the circulation characteristics of plateau vortex moving out of and not out of the plateau. Meteorol. Mon. 2010; 36: 715. (in Chinese).
  10. He G. B. , Gao W. L. , Tu N. N . The dynamic diagnosis on eastwards moving characteristics and developing mechanism of two Tibetan Plateau vortex processes. Acta Meteorol. Sin. 2009; 67: 599612. (in Chinese).
  11. Hoskins B. J. , McIntyre M. E. , Robertson A. W . On the use and significance of isentropic potential vorticity maps. Q. J. Roy. Meteorol. Soc. 1985; 111: 877946.
  12. Lhasa Group for Tibetan Plateau Meteorology Research. Research of 500 hPa Vortices and Shear Lines Over the Tibetan Plateau in Summer. (in Chinese).
  13. Li G. P . The Tibetan Plateau Dynamic Meteorology. 2002; Beijing: China Meteorological Press. 271. (in Chinese).
  14. Li G. P. , Zhao B. J . A dynamical study of the role of surface sensible heating in the structure and intensification of the Tibetan Plateau vortices. Chin. J. Atmos. Sci. 2002; 26: 519525. (in Chinese).
  15. Li L. , Zhang R. , Wen M . Diagnostic analysis of the evolution mechanism for a vortex over the Tibetan Plateau in June 2008. Adv. Atmos. Sci. 2011; 28: 797808.
  16. Li L. , Zhang R. , Wen M . Diurnal variation in the occurrence frequency of the Tibetan Plateau vortices. Meteorol. Atmos. Phys. 2014. 125, 135–144.
  17. Li Y. , Chen L. S. , Wang J. Z . The diagnostic analysis on the characteristics of large scale circulation corresponding to the sustaining and decaying of tropical cyclone after its landfall. Acta Meteorol. Sin. 2004; 62: 167197. (in Chinese).
  18. Liu F. M. , Fu M. J . A study on the moving eastward lows over Qinghai-Xizang Plateau. Plateau Meteorol. 1985; 5: 125134. (in Chinese).
  19. Luo S. W . Study on Some Kinds of Weather Systems Over and Around the Qinghai-Xizang Plateau.
  20. Luo S. W. , He M. L. , Liu X. D . Study on the vortex of the Qinghai-Xizang (Tibet) Plateau in summer. Sci. China B. 1994; 37: 601612.
  21. Luo S. W. , Yang Y. , Lu S. H . Diagnostic analyses of a summer vortex over Qinghai-Xizang Plateau for 29–30 June 1979. Plateau Meteorol. 1991; 10: 111. (in Chinese).
  22. Pan Y. , Yu R. C. , Li J. , Xu Y. P . A case study on the role of water vapor from southwest China in downstream heavy rainfall. Adv. Atmos. Sci. 2008; 25: 563576.
  23. Qiao Q. M. , Zhang Y. G . Synoptic Meteorology of the Tibetan Plateau and Its Effect on the Near Areas.
  24. Rienecker M. M. , Suarez M. J. , Gelaro R. , Todling R. , Bacmeister J. , co-authors . MERRA: NASA's modern-era retrospective analysis for research and applications. J. Clim. 2011; 24: 36243648.
  25. Saha S. , Moorthi S. , Pan H.-L. , Wu X. R. , Wang J. D. , co-authors . The NCEP climate forecast system reanalysis. Bull. Am. Meteorol. Soc. 2010; 91: 10151057.
  26. Shen R. J. , Reiter E. R. , Bresch J. F . Numerical simulation of the development of vortices over the Qinghai-Xizang (Tibet) Plateau. Meteorol. Atmos. Phys. 1986a; 35: 7095.
  27. Shen R. J. , Reiter E. R. , Bresch J. F . Some aspects of the effects of sensible heating on the development of summer weather system over the Qinghai-Xizang Plateau. J. Atmos. Sci. 1986b; 43: 22412260.
  28. Wang B . The development mechanism for Tibetan Plateau warm vortices. J. Atmos. Sci. 1987; 44: 29782994.
  29. Wang X. , Li Y. Q. , Yu S. H. , Jiang X. W . Statistical study on the plateau low vortex activities. Plateau Meteorol. 2009; 28: 6471. (in Chinese).
  30. Wu G. X . Comparison between the complete-form vorticity equation and the traditional vorticity equation. Acta Meteorol. Sin. 2001; 59: 386392. (in Chinese).
  31. Yanai M. , Steven E. , Chu J. H . Determination of bulk properties of tropical cloud clusters from large-scale heat and moisture budgets. J. Atmos. Sci. 1973; 30: 611627.
  32. Ye D. Z. , Gao Y. X . The Tibetan Plateau Meteorology. (in Chinese).
  33. Yu S. H . Water vapour imagery of vortex moving process over Qinghai-Xizang Plateau. Plateau Meteorol. 2002; 21: 199204. (in Chinese).
  34. Yu S. H. , Gao W. L. , Gu Q. Y . The middle-upper circulation analyses of the Plateau low vortex moving out of Plateau and influencing flood in east China in recent years. Plateau Meteorol. 2007a; 26: 466475. (in Chinese).
  35. Yu S. H. , Gao W. L. , Xiao Y. H . Analysis for the influence of cold air mass on two cases of plateau vortex moving out of the Tibetan Plateau. Plateau Meteorol. 2008; 27: 96103. (in Chinese).
  36. Yu S. H. , Xiao Y. H. , Gao W. L . Cold air influence on the Tibetan Plateau vortex moving out of the Plateau. J. Appl. Meteorol. Sci. 2007b; 18: 737747. (in Chinese).
Language: English
Page range: 24451 - 24451
Submitted on: Mar 26, 2014
Accepted on: Jul 15, 2014
Published on: Dec 1, 2014
Published by: Stockholm University Press
In partnership with: Paradigm Publishing Services

© 2014 Lun Li, Renhe Zhang, Min Wen, Liangke Liu, published by Stockholm University Press
This work is licensed under the Creative Commons Attribution 4.0 License.