期刊文献+

Effect of the Vertical Diffusion of Moisture in the Planetary Boundary Layer on an Idealized Tropical Cyclone

下载PDF
导出
摘要 Previous numerical studies have focused on the combined effect of momentum and scalar eddy diffusivity on the intensity and structure of tropical cyclones.The separate impact of eddy diffusivity estimated by planetary boundary layer(PBL)parameterization on the tropical cyclones has not yet been systematically examined.We have examined the impacts of eddy diffusion of moisture on idealized tropical cyclones using the Advanced Research Weather Research and Forecasting model with the Yonsei University PBL scheme.Our results show nonlinear effects of moisture eddy diffusivity on the simulation of idealized tropical cyclones.Increasing the eddy diffusion of moisture increases the moisture content of the PBL,with three different effects on tropical cyclones:(1)an decrease in the depth of the PBL;(2)an increase in convection in the inner rain band and eyewall;and(3)drying of the lowest region of the PBL and then increasing the surface latent heat flux.These three processes have different effects on the intensity and structure of the tropical cyclone through various physical mechanisms.The increased surface latent heat flux is mainly responsible for the decrease in pressure.Results show that moisture eddy diffusivity has clear effects on the pressure in tropical cyclones,but contributes little to the intensity of wind.This largely influences the wind-pressure relationship,which is crucial in tropical cyclones simulation.These results improve our understanding of moisture eddy diffusivity in the PBL and its influence on tropical cyclones,and provides guidance for interpreting the variation of moisture in the PBL for tropical cyclone simulations.
出处 《Advances in Atmospheric Sciences》 SCIE CAS CSCD 2021年第11期1889-1904,共16页 大气科学进展(英文版)
基金 This study was supported in part by the National Natural Science Foundation of China under Grant Nos.41905095,41730960 and 61827901 in part by the National Key R&D Program of China under Grant No.2017YFC1501602.
  • 相关文献

参考文献3

二级参考文献29

  • 1Zhang D L , Y Liu, and M K Yau, 2001: A multiscale numerical study of Hurricane Andrew (1992). Part IV:Unbalanced flows. Mon. Wea. Rev . 129. 92-107.
  • 2Zhang, D L , Y Liu, and M K Yau, 2002: A multiscale numerical study of Hurricane Andrew (1992). Part V: Inner-core thermodynamics. Mon. Wea. Rev , 130, 2745-2763.
  • 3Anthes, R. A., and D. Keyser, 1979: Tests of a fine-mesh model over Europe and the United States. Mon Wea. Rev., 107, 963-984.
  • 4Chou~ M.'-D., ]~975: A study of the effects of vertical res- olution and measurement errors on an iteratively in- verted temperature profile. J. Atmos. Sci., 32~ 419- 426.
  • 5Dudhia, J., 1989: Numerical study of convection ob- served during the winter monsoon experiment using.a mesoscale two-dimensional model., J. Atmos. Sci.,46~ 3077-3107.
  • 6Dudhia, J , 1993-A nonhydrostatic version of the Penn State-NCAR mesoscale model: Validation tests and simulation of an Atlantic cyclone and cold front. Mon. Wea. Rev , 121, 1493-1513.
  • 7Emanuel, K A , 1986:-Anair--sea interaction theory for tropical cyclones. Part I: Steady-state maintenance. J. Atmos. Sci . 43. 585-604.
  • 8Hamilton, K , R J Wilson, and R S Hemler, 1999: Mid dle atmosphere simulated with high vertical and horizontal resolution versions of a GCM: Improvements in the cold pole bias and generation of a QBO-like oscil- lation in the tropics. J. Atmos. Sci . 56. 3829-3946.
  • 9Lane, D E , R. C J Somerville, and S F Iacobellis.2000: Sensitivity of cloud and radiation paxameterizations to changes in vertical resolution. J. Climate, 13, 915- 922.
  • 10Lindzen, R S , and M S Fox-Rabinovitz, 1989: Consistent vertical and horizontal resolution. Mon. Wea. Rev , 117, 2575-2583.

共引文献24

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部